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Shravya MS, Girisha KM, Nayak SS. Comprehensive phenotyping of fetuses with trisomy 18: a perinatal center experience. Clin Dysmorphol 2024; 33:16-26. [PMID: 38038141 DOI: 10.1097/mcd.0000000000000481] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/02/2023]
Abstract
Trisomy 18 is the second most common aneuploidy after trisomy 21. It presents with varying degrees of heterogeneous clinical phenotypes involving multiple organ systems, with a high mortality rate. Clinical assessment of fetal trisomy 18 is always challenging. In this study, we describe the phenotypes of the fetuses with trisomy 18 from a perinatal cohort. We reviewed fetuses with trisomy 18 in referrals for perinatal autopsy over the period of 15 years. A detailed phenotyping of the fetuses with trisomy 18 was executed by perinatal autopsy. Appropriate fetal tissues were obtained to perform genomic testing. We observed trisomy 18 in 16 fetuses (2%) in our cohort of 784 fetal/neonatal losses and a perinatal autopsy was performed on all of them. Abnormal facial profile was the most frequent anomaly (10/16, 62%) followed by anomalies of the extremities (9/16, 56%), and cardiac defects (6/16, 37%). We also observed esophageal atresia, diaphragmatic hernia, and neural tube defect. The study represents one of the largest cohorts of trisomy 18 from a perinatal center from a developing country and highlights the clinical heterogeneity attributed to trisomy 18. We also report a recurrence of trisomy 18 in a family.
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Affiliation(s)
- Mangalore S Shravya
- Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, India
| | - Katta M Girisha
- Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, India
- Department of Genetics, College of Medicine and Health Sciences, Sultan Qaboos University, Muscat, Sultanate of Oman
| | - Shalini S Nayak
- Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, India
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Kim S, Pistawka C, Langlois S, Osiovich H, Virani A, Kitchin V, Elliott AM. Genetic counselling considerations with genetic/genomic testing in Neonatal and Pediatric Intensive Care Units: A scoping review. Clin Genet 2024; 105:13-33. [PMID: 37927209 DOI: 10.1111/cge.14446] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/28/2023] [Revised: 09/23/2023] [Accepted: 10/15/2023] [Indexed: 11/07/2023]
Abstract
Genetic and genomic technologies can effectively diagnose numerous genetic disorders. Patients benefit when genetic counselling accompanies genetic testing and international guidelines recommend pre- and post-test genetic counselling with genome-wide sequencing. However, there is a gap in knowledge regarding the unique genetic counselling considerations with different types of genetic testing in the Neonatal Intensive Care Unit (NICU) and the Pediatric Intensive Care Unit (PICU). This scoping review was conducted to identify the gaps in care with respect to genetic counselling for infants/pediatric patients undergoing genetic and genomic testing in NICUs and PICUs and understand areas in need of improvement in order to optimize clinical care for patients, caregivers, and healthcare providers. Five databases (MEDLINE [Ovid], Embase [Ovid], PsycINFO [Ebsco], CENTRAL [Ovid], and CINHAL [Ebsco]) and grey literature were searched. A total of 170 studies were included and used for data extraction and analysis. This scoping review includes descriptive analysis, followed by a narrative account of the extracted data. Results were divided into three groups: pre-test, post-test, and comprehensive (both pre- and post-test) genetic counselling considerations based on indication for testing. More studies were conducted in the NICU than the PICU. Comprehensive genetic counselling was discussed in only 31% of all the included studies demonstrating the need for both pre-test and post-test genetic counselling for different clinical indications in addition to the need to account for different cultural aspects based on ethnicity and geographic factors.
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Affiliation(s)
- Sunu Kim
- Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia, Canada
| | - Carly Pistawka
- Department of Microbiology and Immunology, University of British Columbia, Vancouver, British Columbia, Canada
| | - Sylvie Langlois
- Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia, Canada
- BC Children's Hospital Research Institute, Vancouver, British Columbia, Canada
- Women's Health Research Institute, Vancouver, British Columbia, Canada
| | - Horacio Osiovich
- BC Children's Hospital Research Institute, Vancouver, British Columbia, Canada
- Women's Health Research Institute, Vancouver, British Columbia, Canada
- Department of Pediatrics, University of British Columbia, Vancouver, British Columbia, Canada
| | - Alice Virani
- Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia, Canada
- Ethics Service, Provincial Health Services Authority, Vancouver, British Columbia, Canada
| | - Vanessa Kitchin
- Woodward Library, University of British Columbia, Vancouver, British Columbia, Canada
| | - Alison M Elliott
- Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia, Canada
- BC Children's Hospital Research Institute, Vancouver, British Columbia, Canada
- Women's Health Research Institute, Vancouver, British Columbia, Canada
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Rittler M, Campaña H, Heisecke S, Ratowiecki J, Elias D, Gimenez L, Poletta FA, Gili J, Pawluk M, Santos MR, Uranga R, Cosentino V, Camelo JL. Lethality of Birth Defects in Live Born Infants Categorized by Gestational Age and Birth Weight. Am J Perinatol 2023; 40:1406-1412. [PMID: 34634830 DOI: 10.1055/s-0041-1735867] [Citation(s) in RCA: 1] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 10/20/2022]
Abstract
OBJECTIVE This study aimed to describe lethality of birth defects (BDs) in newborns categorized by gestational age and birth weight and to identify BDs associated with prematurity. STUDY DESIGN Live born infants (n = 16,452) with isolated BDs classified by severity, and 42,511 healthy controls were assigned to categories: adequate growth, preterm, or small for gestational age (SGA). Proportion of cases and BDs' lethality rates were obtained by category and compared with controls. RESULTS Overall fewer malformed than nonmalformed infants were of adequate growth, while the opposite occurred in the preterm and SGA categories where gastroschisis and esophageal atresia were among the most outstanding defects. For most severe BDs, the early neonatal death rate was higher than control values in all categories; for mild defects, except cleft lip in the preterm category, they did not differ. Diaphragmatic hernia showed the highest lethality values, while those of spina bifida were among the lowest. Talipes, hypospadias, and septal heart defects were mild defects significantly associated with prematurity. CONCLUSION Although reasons, such as induced preterm delivery of fetuses with certain anomalies, could partially account for their high prematurity rates, susceptibility to preterm birth might exist through underlying mechanisms related with the defects. The identification of BDs associated with prematurity should serve to improve measures that prevent preterm birth especially of fetuses at risk. KEY POINTS · Some BDs predispose to prematurity.. · Prematurity is an additional risk factor for mortality in infants with mild defects.. · Lethality values should be adjusted by gestational age and birth weight..
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Affiliation(s)
- Monica Rittler
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Sección Genética Médica, Dpto. Neonatología, Hospital Materno Infantil Ramón Sardá, Buenos Aires, Argentina
| | - Hebe Campaña
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Comisión de Investigaciones Científicas, Buenos Aires, Argentina
| | - Silvina Heisecke
- Dirección de Investigación, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
| | - Julia Ratowiecki
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
| | - Dario Elias
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
| | - Lucas Gimenez
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Instituto Nacional de Genética Médica Populacional (INAGEMP), CEMIC-CONICET, Ciudad Autónoma de Buenos Aires, Argentina
| | - Fernando A Poletta
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Instituto Nacional de Genética Médica Populacional (INAGEMP), CEMIC-CONICET, Ciudad Autónoma de Buenos Aires, Argentina
| | - Juan Gili
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Instituto Nacional de Genética Médica Populacional (INAGEMP), CEMIC-CONICET, Ciudad Autónoma de Buenos Aires, Argentina
- Instituto Académico Pedagógico de Ciencias Humanas, Universidad Nacional de Villa María, Córdoba, Argentina
| | - Mariela Pawluk
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
| | - Maria Rita Santos
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Comisión de Investigaciones Científicas, Buenos Aires, Argentina
- Instituto Multidisciplinario de Biología Celular, Buenos Aires, Argentina
| | - Rocio Uranga
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Consultorios externos, Servicio de Cirugía Maxilofacial y Odontología, Hospital San Juan de Dios, Buenos Aires, Argentina
| | - Viviana Cosentino
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Servicio de Pediatría, Hospital Interzonal General de Agudos Luisa C. de Gandulfo, Buenos Aires, Argentina
| | - Jorge Lopez Camelo
- Laboratorio de Epidemiología Genética, Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Estudio Colaborativo Latino Americano de Malformaciones Congénitas (ECLAMC), Centro de Educación Médica e Investigaciones Clínicas-Consejo Nacional de Investigaciones Científicas y Técnicas (CEMIC-CONICET), Ciudad Autónoma de Buenos Aires, Argentina
- Instituto Nacional de Genética Médica Populacional (INAGEMP), CEMIC-CONICET, Ciudad Autónoma de Buenos Aires, Argentina
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Hafezi N, Jensen AR, Saenz ZM, Collings AT, Colgate CL, Inanc Salih ZN, Geddes GC, Gray BW. Surgical history and outcomes in trisomy 13 and 18: A thirty-year review. J Pediatr Surg 2022:S0022-3468(22)00676-5. [PMID: 36402594 DOI: 10.1016/j.jpedsurg.2022.10.010] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/31/2022] [Revised: 09/22/2022] [Accepted: 10/12/2022] [Indexed: 11/06/2022]
Abstract
BACKGROUND Patients with Trisomy 13(T13) and 18(T18) have many comorbidities that may require surgical intervention. However, surgical care and outcomes are not well described, making patient selection and family counseling difficult. Here the surgical history and outcomes of T13/ T18 patients are explored. METHODS A retrospective review of patients with T13 or T18 born between 1990 and 2020 and cared for at a tertiary children's hospital (Riley Hospital for Children, Indianapolis IN) was conducted, excluding those with insufficient records. Primary outcomes of interest were rates of mortality overall and after surgery. Factors that could predict mortality outcomes were also assessed. RESULTS One-hundred-seventeen patients were included, with 65% T18 and 35% T13. More than half of patients(65%) had four or more comorbidities. Most deaths occurred by three months at median 42.0 days. Variants of classic trisomies (mosaicism, translocation, partial duplication; p = 0.001), higher birth weight(p = 0.002), and higher gestational age(p = 0.01) were associated with lower overall mortality, while cardiac(p = 0.002) disease was associated with higher mortality. Over half(n = 64) underwent surgery at median age 65 days at time of first procedure. The most common surgical procedures were general surgical. Median survival times were longer in surgical rather than nonsurgical patients(p<0.001). Variant trisomy genetics(p = 0.002) was associated with lower mortality after surgery, while general surgical comorbidities(p = 0.02), particularly tracheoesophageal fistula/esophageal atresia(p = 0.02), were associated with increased mortality after surgery. CONCLUSIONS Trisomy 13 and 18 patients have vast surgical needs. Variant trisomy was associated with lower mortality after surgery while general surgical comorbidities were associated with increased mortality after surgery. Those who survived to undergo surgery survived longer overall. LEVEL OF EVIDENCE III.
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Affiliation(s)
- Niloufar Hafezi
- Department of Surgery, Division of Pediatric Surgery, Indiana University School of Medicine, 705 Riley Hospital Drive, Suite 2500, Indianapolis, IN 46202, United States
| | - Amanda R Jensen
- Department of Surgery, Division of Pediatric Surgery, Indiana University School of Medicine, 705 Riley Hospital Drive, Suite 2500, Indianapolis, IN 46202, United States
| | - Zoe M Saenz
- Department of Surgery, Division of Pediatric Surgery, Indiana University School of Medicine, 705 Riley Hospital Drive, Suite 2500, Indianapolis, IN 46202, United States
| | - Amelia T Collings
- Department of Surgery, Division of Pediatric Surgery, Indiana University School of Medicine, 705 Riley Hospital Drive, Suite 2500, Indianapolis, IN 46202, United States
| | - Cameron L Colgate
- Center for Outcomes Research in Surgery, Indiana University School of Medicine, 545 Barnhill Drive, Emerson Hall, Indianapolis, IN 46202, United States
| | - Zeynep N Inanc Salih
- Fetal Center at Riley Children's Health, Indiana University Health, 705 Riley Hospital Drive, Indianapolis, IN 46202, United States; Department of Pediatrics, Division of Neonatal Perinatal Medicine, Indiana University School of Medicine, 705 Riley Hospital Drive, RT 4600, Indianapolis, IN 46202, United States
| | - Gabrielle C Geddes
- Fetal Center at Riley Children's Health, Indiana University Health, 705 Riley Hospital Drive, Indianapolis, IN 46202, United States; Department of Molecular Genetics, Indiana University School of Medicine, 1002 Wishard Blvd, Indianapolis, IN 46202, United States
| | - Brian W Gray
- Department of Surgery, Division of Pediatric Surgery, Indiana University School of Medicine, 705 Riley Hospital Drive, Suite 2500, Indianapolis, IN 46202, United States; Fetal Center at Riley Children's Health, Indiana University Health, 705 Riley Hospital Drive, Indianapolis, IN 46202, United States.
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Wang J, Chen Z, He F, Lee T, Cai W, Chen W, Miao N, Zeng Z, Hussain G, Yang Q, Guo Q, Sun T. Single-Cell Transcriptomics of Cultured Amniotic Fluid Cells Reveals Complex Gene Expression Alterations in Human Fetuses With Trisomy 18. Front Cell Dev Biol 2022; 10:825345. [PMID: 35392164 PMCID: PMC8980718 DOI: 10.3389/fcell.2022.825345] [Citation(s) in RCA: 2] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/30/2021] [Accepted: 02/24/2022] [Indexed: 12/12/2022] Open
Abstract
Trisomy 18, commonly known as Edwards syndrome, is the second most common autosomal trisomy among live born neonates. Multiple tissues including cardiac, abdominal, and nervous systems are affected by an extra chromosome 18. To delineate the complexity of anomalies of trisomy 18, we analyzed cultured amniotic fluid cells from two euploid and three trisomy 18 samples using single-cell transcriptomics. We identified 6 cell groups, which function in development of major tissues such as kidney, vasculature and smooth muscle, and display significant alterations in gene expression as detected by single-cell RNA-sequencing. Moreover, we demonstrated significant gene expression changes in previously proposed trisomy 18 critical regions, and identified three new regions such as 18p11.32, 18q11 and 18q21.32, which are likely associated with trisomy 18 phenotypes. Our results indicate complexity of trisomy 18 at the gene expression level and reveal genetic reasoning of diverse phenotypes in trisomy 18 patients.
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Affiliation(s)
- Jing Wang
- Center for Precision Medicine, School of Medicine and School of Biomedical Sciences, Huaqiao University, Xiamen, China
- College of Materials Science and Engineering, Huaqiao University, Xiamen, China
| | - Zixi Chen
- Shenzhen Key Laboratory of Marine Bioresource and Eco- Environmental Science, Shenzhen Engineering Laboratory for Marine Algal Biotechnology, Guangdong Provincial Key Laboratory for Plant Epigenetics, College of Life Sciences and Oceanography, Shenzhen University, Shenzhen, China
| | - Fei He
- Genergy Bio-Technology (Shanghai) Co., Ltd, Shanghai, China
| | - Trevor Lee
- Department of Cell and Developmental Biology, Cornell University Weill Medical College, New York, NY, United States
| | - Wenjie Cai
- Department of Radiation Oncology, First Hospital of Quanzhou, Fujian Medical University, Quanzhou, China
| | - Wanhua Chen
- Department of Clinical Laboratory, First Hospital of Quanzhou, Fujian Medical University, Quanzhou, China
| | - Nan Miao
- Center for Precision Medicine, School of Medicine and School of Biomedical Sciences, Huaqiao University, Xiamen, China
| | - Zhiwei Zeng
- Center for Precision Medicine, School of Medicine and School of Biomedical Sciences, Huaqiao University, Xiamen, China
| | - Ghulam Hussain
- Neurochemical Biology and Genetics Laboratory, Department of Physiology, Faculty of Life Sciences, Government College University, Faisalabad, Pakistan
| | - Qingwei Yang
- Department of Neurology, School of Medicine, Zhongshan Hospital, Xiamen University, Xiamen, China
| | - Qiwei Guo
- United Diagnostic and Research Center for Clinical Genetics, School of Medicine and School of Public Health, Women and Children’s Hospital, Xiamen University, Xiamen, China
- *Correspondence: Qiwei Guo, ; Tao Sun,
| | - Tao Sun
- Center for Precision Medicine, School of Medicine and School of Biomedical Sciences, Huaqiao University, Xiamen, China
- *Correspondence: Qiwei Guo, ; Tao Sun,
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Clinical and molecular cytogenetic description of a female patient with de novo 18q inversion duplication/deletion. GENE REPORTS 2021. [DOI: 10.1016/j.genrep.2021.101386] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
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A visual tool inclusive of fetal ultrasound and autopsy findings to reach a balanced approach to counseling on trisomy 18 in early second trimester. Arch Gynecol Obstet 2021; 304:1115-1125. [PMID: 34159403 DOI: 10.1007/s00404-021-06130-7] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/27/2022]
Abstract
Identified by the eponym "Edwards' Syndrome," trisomy 18 (T18) represents the second most common autosomal trisomy after T21. The pathophysiology underlying the extra chromosome 18 is a nondisjunction error, mainly linked with the advanced maternal age. More frequent in female fetuses, the syndrome portends high mortality, reaching a rate of 80% of miscarriages or stillbirths. The three-step evaluation includes first trimester screening for fetal aneuploidy using a combination of maternal age, fetal nuchal translucency thickness, fetal heart rate and maternal serum free ß-hCG and PAPP-A; followed by the research for fragments of fetal DNA in maternal blood; and, finally, invasive techniques leave to the established diagnosis. Starting with the first trimester scan, selected ultrasound findings should be investigated to define not only the impact of the genetic problem on the fetus, but also to address the prenatal counseling. Previous series underline that T18 is not uniformly lethal. An active dialogue on the choices in the management of infants with T18 has emerged, sustained by the transition from the comfort care to the intervention attitude. Survival rates for individuals with supposedly fatal conditions have increased. In this novel scenario, an ad hoc counseling is pivotal. To support it, a comparative analysis by pictorial assays between ultrasound and autopsy findings could be beneficial. We provide an illustrative tool from a clinical case managed in early second trimester, with the purpose to strive a balanced approach in the hard choice faced by couples of fetuses with T18.
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Birmingham EE, Stucke AG, Diaz CD. Anesthesia for children with complete trisomy 18 (Edwards syndrome): A cohort review of 84 anesthesia encounters in nine patients. Paediatr Anaesth 2021; 31:419-428. [PMID: 33644930 DOI: 10.1111/pan.14131] [Citation(s) in RCA: 4] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/16/2020] [Revised: 12/30/2020] [Accepted: 01/05/2021] [Indexed: 11/28/2022]
Abstract
BACKGROUND Trisomy 18 or Edwards syndrome is the second most common aneuploidy with a prevalence between 1/3000 and 1/10 000 live births. The syndrome encompasses malformations of the central nervous, cardiac, respiratory, gastrointestinal, and genitourinary systems. Trisomy 18 carries a poor prognosis with 90% of patients not surviving beyond 1 year of age; however, the current trend toward more aggressive supportive care may prolong survival. The limited anesthesia literature highlights the abnormal airway anatomy but generally describes uneventful airway management and perioperative course. AIM Our goal was to review all anesthesia encounters recorded for eleven trisomy 18 patients treated at Children's Wisconsin during the study period to explore the frequency of anesthesia encounters and to improve our understanding of the perioperative risks. METHODS We performed a retrospective chart review of all patients with trisomy 18 who were treated at our institution between 2012 and 2017. Records were screened for anesthesia encounters, perioperative critical events and complications, enrollment in palliative care, code status, and time of death. RESULTS Eleven children were identified. Children were born between 2001 and 2016. Two children never required anesthesia care. Nine patients had a total of 84 anesthesia encounters for 121 surgical or diagnostic procedures or emergent intubations. Critical events and perioperative complications included difficult mask ventilation (n = 7), difficult intubation (n = 15), and mechanical or pharmacological cardiopulmonary resuscitation (n = 6). Five patients presented with difficult peripheral intravenous access. One patient died in the immediate postoperative period. On five occasions, patients required emergent intubation outside of the operating room. CONCLUSION Difficult airway management and respiratory compromise were critical concerns during the perioperative period in our patient population, and the inability to ventilate could lead to cardiorespiratory arrest. This case series provides a comprehensive, longitudinal view of complete trisomy 18 patients in the perioperative period and adds information for counseling families and care providers.
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Affiliation(s)
- Erin E Birmingham
- Department of Pediatric Anesthesiology, Medical College of Wisconsin, Milwaukee, WI, USA
| | - Astrid G Stucke
- Department of Pediatric Anesthesiology, Medical College of Wisconsin, Milwaukee, WI, USA.,Department of Pediatric Anesthesiology, Children's Wisconsin, Milwaukee, WI, USA
| | - Christina D Diaz
- Department of Pediatric Anesthesiology, Medical College of Wisconsin, Milwaukee, WI, USA.,Department of Pediatric Anesthesiology, Children's Wisconsin, Milwaukee, WI, USA
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Kepple JW, Fishler KP, Peeples ES. Surveillance guidelines for children with trisomy 18. Am J Med Genet A 2021; 185:1294-1303. [PMID: 33527722 DOI: 10.1002/ajmg.a.62097] [Citation(s) in RCA: 17] [Impact Index Per Article: 5.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/01/2020] [Revised: 01/06/2021] [Accepted: 01/12/2021] [Indexed: 12/31/2022]
Abstract
Trisomy 18 is the second most common aneuploidy syndromes in live born infants. It is associated with high mortality rates, estimated to be 75%-95% in the first year of life, as well as significant morbidity in survivors. The low survival is largely due to the high prevalence of severe congenital anomalies in infants with this diagnosis. However, interventions to repair or palliate those life-threatening anomalies are being performed at a higher rate for these infants, resulting in increased rates of survival beyond the first year of life. While it is well documented that trisomy 18 is associated with several cardiac malformations, these patients also have respiratory, neurological, neoplastic, genitourinary, abdominal, otolaryngologic, and orthopedic complications that can impact their quality of life. The goal of this review is to present a comprehensive description of complications in children with trisomy 18 to aid in the development of monitoring and treatment guidelines for the increasing number of providers who will be caring for these patients throughout their lives. Where the evidence is available, this review presents screening recommendations to allow for more rapid detection and documentation of these complications.
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Affiliation(s)
| | - Kristen P Fishler
- Munroe-Meyer Institute for Genetics and Rehabilitation, University of Nebraska Medical Center, Omaha, Nebraska, USA
| | - Eric S Peeples
- Department of Pediatrics, University of Nebraska Medical Center, Omaha, Nebraska, USA
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10
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Kosiv KA, Long J, Lee HC, Collins RT. A validated model for prediction of survival to 6 months in patients with trisomy 13 and 18. Am J Med Genet A 2021; 185:806-813. [PMID: 33403783 DOI: 10.1002/ajmg.a.62044] [Citation(s) in RCA: 11] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/18/2020] [Revised: 11/10/2020] [Accepted: 12/14/2020] [Indexed: 11/06/2022]
Abstract
Congenital heart disease is exceedingly prevalent in trisomy 13 and 18. Improved survival following congenital heart surgery has been reported, however, mortality remains significantly elevated. Utilizing inpatient data on trisomy 13 and 18 from the 2003-2016 Pediatric Health Information System database, a survival model was developed and validated using data from the California Perinatal Quality Care Collaborative and the California Office of Statewide Health Planning and Development. The study cohort included 1,761 infants with trisomy 13 and 18. Two models predicting survival to 6 months of age were developed and tested. The initial model performed excellently, with a c-statistic of 0.87 and a c-statistic of 0.76 in the validation cohort. After excluding procedures performed on the day of death, the revised model's c-statistic was 0.76. Certain variables, including cardiac surgery, gastrostomy, parenteral nutrition, and mechanical ventilation, are predictive of survival to 6 months of age. This study presents a model, which potentially can inform decision-making regarding congenital heart surgery.
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Affiliation(s)
- Katherine A Kosiv
- Department of Pediatrics, Yale University School of Medicine, New Haven, Connecticut, USA
| | - Jin Long
- Department of Pediatrics, Stanford University School of Medicine, Palo Alto, California, USA
| | - Henry C Lee
- Department of Pediatrics, Stanford University School of Medicine, Palo Alto, California, USA
| | - R Thomas Collins
- Department of Pediatrics, Stanford University School of Medicine, Palo Alto, California, USA.,Department of Internal Medicine, Stanford University School of Medicine, Palo Alto, California, USA
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11
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Alshami A, Douedi S, Guida M, Ajam F, Desai D, Zales V, Calderon DM. Unusual Longevity of Edwards Syndrome: A Case Report. Genes (Basel) 2020; 11:genes11121466. [PMID: 33297534 PMCID: PMC7762407 DOI: 10.3390/genes11121466] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/07/2020] [Revised: 11/29/2020] [Accepted: 12/04/2020] [Indexed: 11/16/2022] Open
Abstract
BACKGROUND Trisomy 18, also known as Edwards syndrome, was first described in the 1960s and is now defined as the second most common trisomy. While this genetic disease has been attributed to nondisjunction during meiosis, the exact mechanism remains unknown. Trisomy 18 is associated with a significantly increased mortality rate of about 5-10% of patients surviving until 1 year of age. We present a case of a 26-year-old female diagnosed with trisomy 18, well outliving her life expectancy, maintaining a stable state of health. CASE PRESENTATION A 26-year-old female with non-mosaic Edwards syndrome presented to the clinic for follow up after recent hospitalization for aspiration pneumonia. The definitive diagnosis of trisomy 18 was made prenatally utilizing chromosomal analysis and G-banding and fluorescence in situ hybridization (FISH) on cells obtained via amniocentesis. Her past medical history is characterized by severe growth and intellectual limitations; recurrent history of infections, especially respiratory system infections; and a ventricular septal defect (VSD) that was never surgically repaired. She remains in good, stable health and is under close follow-up and monitoring. CONCLUSIONS Despite the fact that Edwards syndrome carries a significantly high mortality rate due to several comorbidities, recent literature including this case report has identified patients surviving into adulthood. Advancements in early detection and parent education have likely allowed for these findings. We aim to present a case of an adult with trisomy 18, living in stable condition, with an importance on medical follow-up.
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Affiliation(s)
- Abbas Alshami
- Department of Medicine, Jersey Shore University Medical Center, Neptune, NJ 07753, USA;
| | - Steven Douedi
- Department of Medicine, Jersey Shore University Medical Center, Neptune, NJ 07753, USA;
- Correspondence:
| | - Melissa Guida
- Department of Biology, Ramapo College of New Jersey, Mahwah, NJ 07430, USA;
| | - Firas Ajam
- Department of Cardiology, Jersey Shore University Medical Center, Neptune, NJ 07753, USA; (F.A.); (D.D.); (D.MC.)
| | - Dhaval Desai
- Department of Cardiology, Jersey Shore University Medical Center, Neptune, NJ 07753, USA; (F.A.); (D.D.); (D.MC.)
| | - Vincent Zales
- Department of Pediatrics, Jersey Shore University Medical Center, Neptune, NJ 07753, USA;
| | - Dawn M Calderon
- Department of Cardiology, Jersey Shore University Medical Center, Neptune, NJ 07753, USA; (F.A.); (D.D.); (D.MC.)
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12
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Yamada H, Ohno K, Shiota M, Togawa M, Utsunomiya Y, Akaboshi S, Tsuchie H, Okada T, Oguri M, Higami S, Noma H, Maegaki Y. Prevalence and clinical characteristics of children with medical complexity in Tottori Prefecture, Japan: A population-based longitudinal study. Brain Dev 2020; 42:747-755. [PMID: 32622762 DOI: 10.1016/j.braindev.2020.06.008] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/21/2020] [Revised: 06/15/2020] [Accepted: 06/16/2020] [Indexed: 10/23/2022]
Abstract
OBJECTIVES To investigate the prevalence and background of children with medical complexity (CMC) and its secular trend in Japan. METHODS CMC were defined as patients under the age of 20 years requiring medical care and devices. The patients were enrolled using the national health insurance claims data of three hospitals and two rehabilitation centers in Tottori Prefecture. The study period was divided into three periods: Period 1, 2007-2010; Period 2, 2011-2014; and Period 3, 2015-2018. RESULTS A total of 378 CMC were enrolled. The prevalence of CMC was 1.88 per 1000 population among subjects aged <20 years in 2018, and it increased by approximately 1.9 times during the study period. The number of CMC who presented with severe motor and intellectual disabilities did not change from Period 1 to Period 3. Meanwhile, the number of CMC who had relatively preserved motor and intellectual abilities increased from 58 to 98. The proportion of CMC who required respiratory management and oxygen therapy increased by 1.3 and 1.8 times, respectively. By contrast, the proportion of CMC who need tube feeding decreased significantly between periods 1 and 3 (P < 0.05). CONCLUSIONS The prevalence of CMC increased almost twice during the 12-year study period; however, the increase in the number of patients with relatively preserved motor and intellectual abilities was pronounced. This study showed that the need for medical care and devices differed based on the underlying disorders and severity of CMC; therefore, individualized medical, welfare, and administrative services and education about the various types of CMC must be provided.
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Affiliation(s)
- Hiroyuki Yamada
- Division of Child Neurology, Department of Brain and Neurosciences, Faculty of Medicine, Tottori University, Yonago, Japan.
| | - Koyo Ohno
- Department of Pediatrics, Tottori Prefectural Rehabilitation Center for Children with Disabilities, Yonago, Japan
| | - Madoka Shiota
- Department of Pediatrics, Tottori Prefectural Rehabilitation Center for Children with Disabilities, Yonago, Japan
| | - Masami Togawa
- Department of Pediatrics, Tottori Prefectural Central Hospital, Tottori, Japan
| | - Yasushi Utsunomiya
- Department of Pediatrics, Tottori Prefectural Central Hospital, Tottori, Japan
| | | | - Hirokazu Tsuchie
- Department of Pediatrics, Tottori Prefectural Central Hospital, Tottori, Japan; Department of Pediatrics, Tottori Prefectural Kousei Hospital, Kurayoshi, Japan
| | - Takayoshi Okada
- Department of Pediatrics, Tottori Prefectural Kousei Hospital, Kurayoshi, Japan
| | - Masayosi Oguri
- Division of Child Neurology, Department of Brain and Neurosciences, Faculty of Medicine, Tottori University, Yonago, Japan; Clinical Examination Department, Faculty of Health Sciences, Kagawa Prefectural University of Health Sciences, Takamatsu, Japan
| | - Shigeru Higami
- Higami Ear-Nose-Throat, Snore and Sleep Clinic, Yonago, Japan
| | - Hisashi Noma
- Department of Data Science, The Institute of Statistical Mathematics, Tokyo, Japan
| | - Yoshihiro Maegaki
- Division of Child Neurology, Department of Brain and Neurosciences, Faculty of Medicine, Tottori University, Yonago, Japan
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13
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Kawasaki H, Yamada T, Takahashi Y, Nakayama T, Wada T, Kosugi S. The short-term mortality and morbidity of very low birth weight infants with trisomy 18 or trisomy 13 in Japan. J Hum Genet 2020; 66:273-285. [PMID: 32943740 DOI: 10.1038/s10038-020-00825-6] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/24/2020] [Revised: 08/04/2020] [Accepted: 08/05/2020] [Indexed: 11/09/2022]
Abstract
Trisomy 18 (T18) and trisomy 13 (T13) are major concerns in prenatal genetic testing due to their poor prognosis; very low birth weight (VLBW) is also a concern in neonatology. The aim of this study was to investigate the mortality and morbidity of VLBW infants diagnosed with T18/T13 in Japan, compared with those with no birth defects (BD-). Maternal and neonatal data were collected prospectively from infants weighing <1501 g and were admitted to centers of the Neonatal Research Network of Japan during 2003 to 2016. Among 60,136 infants, 563 and 60 was diagnosed with T18 and T13, respectively. Although the age of mothers of infants with T18/T13 was higher, the frequency of maternal complications was lower than those with BD-. With maternal and neonatal characteristic adjustments, T18/T13 had a higher incidence of each morbidity when compared with BD-. Mortality rates in the NICU were 70, 77, and 5.8% for T18, T13, and BD-, respectively, while the survival discharge rates of T18 and T13 were 29.5 and 23.3%, respectively, which was significantly higher than previous reports. This was the first nationwide survey for VLBW infants with T18/T13 in Japan; this novel data will be relevant and useful for prenatal genetic counseling and perinatal management. Although T18/T13 were considered to be fatal in the past, with proper epidemiological information, discussions with affected families, and compassionate patient care, the mortality rate of T18/T13 can be improved.
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Affiliation(s)
- Hidenori Kawasaki
- Department of Medical Ethics and Medical Genetics, Kyoto University School of Public Health, Kyoto, Japan
| | - Takahiro Yamada
- Department of Medical Ethics and Medical Genetics, Kyoto University School of Public Health, Kyoto, Japan.
| | - Yoshimitsu Takahashi
- Department of Health Informatics, Kyoto University School of Public Health, Kyoto, Japan
| | - Takeo Nakayama
- Department of Health Informatics, Kyoto University School of Public Health, Kyoto, Japan
| | - Takahito Wada
- Department of Medical Ethics and Medical Genetics, Kyoto University School of Public Health, Kyoto, Japan
| | - Shinji Kosugi
- Department of Medical Ethics and Medical Genetics, Kyoto University School of Public Health, Kyoto, Japan
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14
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Alore EA, Fallon SC, Thomas JA, Vogel AM. Outcomes After Extracorporeal Life Support Cannulation in Pediatric Patients With Trisomy 13 and Trisomy 18. J Surg Res 2020; 257:260-266. [PMID: 32862054 DOI: 10.1016/j.jss.2020.07.036] [Citation(s) in RCA: 8] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/28/2020] [Revised: 07/08/2020] [Accepted: 07/18/2020] [Indexed: 12/13/2022]
Abstract
BACKGROUND Indications for extracorporeal life support (ECLS) have evolved and expanded, yet its use in trisomy 13 (T13) and trisomy 18 (T18) patients remains controversial. We reviewed the experience of the Extracorporeal Life Support Organization with ECLS in these patients to inform practice at our institution. METHODS The Extracorporeal Life Support Organization registry was queried for all patients younger than 18 y with an International Classification of Diseases, Ninth Edition/Tenth Edition code for T13 or T18 from 2000 to 2018. Basic demographics, ECLS details, and clinical outcomes were recorded. Descriptive statistics were performed. RESULTS Twenty-eight patients were identified (15 with T13; 13 with T18), representing 0.06% (28 of 46,901) of pediatric ECLS cannulations. The median weight was 3.5 kg (range, 1.4-13), and age at cannulation was 52 d (range, 0 d-6.8 y). Time on ECLS ranged from 13 to 478 h (median, 114). Cardiac defects were diagnosed in 19 (68%) patients, of which 13 (46%) underwent surgical repair. Median oxygenation index pre-ECLS was 45. Venoarterial cannulations accounted for 82% of patients, whereas 14% underwent venovenous cannulation. Overall survival to hospital discharge was 46% with 86% of patients experiencing one or more complications. There were no survivors when cannulation continued past 12 d. CONCLUSIONS Although complications are frequent, the mortality rate in patients with T13 and T18 remains within the reported range for the general pediatric population. T13 and T18 alone should not be viewed as absolute contraindications to ECLS within the pediatric population but rather considered during the evaluation of a patient's potential candidacy.
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Affiliation(s)
- Elizabeth A Alore
- Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas
| | - Sara C Fallon
- Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas; Department of Pediatric Surgery, Texas Children's Hospital, Houston, Texas
| | - James A Thomas
- Division of Pediatric Critical Care, Department of Pediatrics, Texas Children's Hospital, Houston, Texas
| | - Adam M Vogel
- Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas; Department of Pediatric Surgery, Texas Children's Hospital, Houston, Texas.
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15
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Janvier A, Farlow B, Barrington KJ, Bourque CJ, Brazg T, Wilfond B. Building trust and improving communication with parents of children with Trisomy 13 and 18: A mixed-methods study. Palliat Med 2020; 34:262-271. [PMID: 31280664 DOI: 10.1177/0269216319860662] [Citation(s) in RCA: 28] [Impact Index Per Article: 7.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 01/03/2023]
Abstract
BACKGROUND Trisomy 13 and trisomy 18 are common life-limiting conditions associated with major disabilities. Many parents have described conflictual relationships with clinicians, but positive and adverse experiences of families with healthcare providers have not been well described. AIM (1) To investigate parental experiences with clinicians and (2) to provide practical recommendations and behaviors clinicians could emulate to avoid conflict. DESIGN Participants were asked to describe their best and worse experiences, as well as supportive clinicians they met. The results were analyzed using mixed methods. SETTING/PARTICIPANTS Parents of children with trisomy 13 and 18 who were part of online social support networks. A total of 503 invitations were sent, and 332 parents completed the questionnaire about 272 children. RESULTS The majority of parents (72%) had met a supportive clinician. When describing clinicians who changed their lives, the overarching theme, present in 88% of answers, was trust. Parents trusted clinicians when they felt he or she cared and valued their child, their family, and made them feel like good parents (69%), had appropriate knowledge (66%), and supported them and gave them realistic hope (42%). Many (42%) parents did not want to make-or be part of-life-and-death decisions. Parents gave specific examples of supportive behaviors that can be adopted by clinicians. Parents also described adverse experiences, generally leading to conflicts and lack of trust. CONCLUSION Realistic and compassionate support of parents living with children with trisomy 13 and 18 is possible. Adversarial interactions that lead to distrust and conflicts can be avoided. Many supportive behaviors that inspire trust can be emulated.
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Affiliation(s)
- Annie Janvier
- Department of Pediatrics, University of Montreal, Montreal, QC, Canada.,Neonatology, Sainte-Justine Hospital, Montreal, QC, Canada.,Clinical Ethics Unit and Palliative Care Unit, Sainte-Justine Hospital, Montreal, QC, Canada.,Unité de Recherche en Éthique Clinique et Partenariat Famille, Centre de Recherche, Hôpital Sainte-Justine, Montréal, QC, Canada
| | - Barbara Farlow
- The deVeber Institute for Bioethics and Social Research, North York, ON, Canada.,Patients for Patient Safety Canada, Edmonton, AB, Canada
| | - Keith J Barrington
- Department of Pediatrics, University of Montreal, Montreal, QC, Canada.,Neonatology, Sainte-Justine Hospital, Montreal, QC, Canada
| | - Claude Julie Bourque
- Department of Pediatrics, University of Montreal, Montreal, QC, Canada.,Unité de Recherche en Éthique Clinique et Partenariat Famille, Centre de Recherche, Hôpital Sainte-Justine, Montréal, QC, Canada
| | - Tracy Brazg
- Ethics Consultation Service, University of Washington Medical Center, Washington, DC, USA
| | - Benjamin Wilfond
- Truman Katz Center for Pediatric Bioethics, Seattle Children's Research Institute and Department of Pediatrics, University of Washington School of Medicine, Seattle, WA, USA
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16
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Kalish JM, Doros L, Helman LJ, Hennekam RC, Kuiper RP, Maas SM, Maher ER, Nichols KE, Plon SE, Porter CC, Rednam S, Schultz KAP, States LJ, Tomlinson GE, Zelley K, Druley TE. Surveillance Recommendations for Children with Overgrowth Syndromes and Predisposition to Wilms Tumors and Hepatoblastoma. Clin Cancer Res 2018; 23:e115-e122. [PMID: 28674120 DOI: 10.1158/1078-0432.ccr-17-0710] [Citation(s) in RCA: 109] [Impact Index Per Article: 18.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/11/2017] [Revised: 04/23/2017] [Accepted: 05/09/2017] [Indexed: 12/13/2022]
Abstract
A number of genetic syndromes have been linked to increased risk for Wilms tumor (WT), hepatoblastoma (HB), and other embryonal tumors. Here, we outline these rare syndromes with at least a 1% risk to develop these tumors and recommend uniform tumor screening recommendations for North America. Specifically, for syndromes with increased risk for WT, we recommend renal ultrasounds every 3 months from birth (or the time of diagnosis) through the seventh birthday. For HB, we recommend screening with full abdominal ultrasound and alpha-fetoprotein serum measurements every 3 months from birth (or the time of diagnosis) through the fourth birthday. We recommend that when possible, these patients be evaluated and monitored by cancer predisposition specialists. At this time, these recommendations are not based on the differential risk between different genetic or epigenetic causes for each syndrome, which some European centers have implemented. This differentiated approach largely represents distinct practice environments between the United States and Europe, and these guidelines are designed to be a broad framework within which physicians and families can work together to implement specific screening. Further study is expected to lead to modifications of these recommendations. Clin Cancer Res; 23(13); e115-e22. ©2017 AACRSee all articles in the online-only CCR Pediatric Oncology Series.
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Affiliation(s)
- Jennifer M Kalish
- Division of Human Genetics, Children's Hospital of Philadelphia and the Department of Pediatrics at the Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
| | - Leslie Doros
- Cancer Genetics Clinic, Children's National Medical Center, Washington, DC
| | - Lee J Helman
- Center for Cancer Research and Pediatric Oncology Branch, National Cancer Institute, Rockville, Maryland
| | - Raoul C Hennekam
- Department of Pediatrics, University of Amsterdam, Amsterdam, the Netherlands
| | - Roland P Kuiper
- Princess Máxima Center for Pediatric Oncology, Utrecht, the Netherlands
| | - Saskia M Maas
- Department of Clinical Genetics, Academic Medical Center, Amsterdam, the Netherlands
| | - Eamonn R Maher
- Department of Medical Genetics, University of Cambridge, and Cambridge NIHR Biomedical Research Centre, Cambridge, United Kingdom
| | - Kim E Nichols
- Department of Oncology, St. Jude Children's Research Hospital, Memphis, Tennessee
| | - Sharon E Plon
- Department of Pediatrics/Hematology-Oncology, Baylor College of Medicine, Texas Children's Hospital, Houston, Texas
| | | | - Surya Rednam
- Department of Pediatrics/Hematology-Oncology, Baylor College of Medicine, Texas Children's Hospital, Houston, Texas
| | - Kris Ann P Schultz
- Division of Cancer and Blood Disorders, Children's Hospitals and Clinics of Minnesota, Minneapolis, Minnesota
| | - Lisa J States
- Division of Radiology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania
| | - Gail E Tomlinson
- Division of Pediatric Hematology-Oncology and Greehey Children's Cancer Research Institute, The University of Texas Health Science Center at San Antonio, San Antonio, Texas
| | - Kristin Zelley
- Division of Oncology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania
| | - Todd E Druley
- Division of Pediatric Hematology and Oncology, Washington University, St. Louis, Missouri
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17
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Matsubasa T, Mitsubuchi H, Kimura A, Shinohara M, Endo F. Medically dependent severe motor and intellectual disabilities: Time study of medical care. Pediatr Int 2017; 59:714-719. [PMID: 28164411 DOI: 10.1111/ped.13256] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/10/2016] [Revised: 01/11/2017] [Accepted: 01/31/2017] [Indexed: 11/30/2022]
Abstract
BACKGROUND Improvements in neonatal medicine and pediatric emergency medicine have led to an increasing number of children with severe disabilities requiring medical care, such as tracheal suction, on a daily basis. Most of these children, discharged directly from hospitals to their parents' homes, need home medical support. To provide data for the establishment of appropriate support systems, we analyzed the care for such children in a time study conducted at an institution. METHODS A minute-by-minute time study of the work of 33 staff members in a ward for patients (medically dependent severe motor and intellectual disabilities [SMID]) requiring frequent medical care was carried out over 48 h. Data were compared with those from a ward for ordinary non-medically dependent SMID patients. RESULTS Time of life care for medically dependent SMID and ordinary SMID was almost identical, but the time for medical care for the former was 10-fold longer than that of the latter. Also, tasks involving information exchange and recording of the time of care were performed fourfold more frequently in the medically dependent SMID than in the ordinary SMID ward. CONCLUSIONS Medically dependent SMID children and adults, predominantly with tracheostomies, needed much more medical care and more concentrated involvement of the staff compared with ordinary SMID. This study provides valuable data for the development of support systems for medically dependent SMID children being cared for at home. In addition, it sheds light on the situation faced by non-SMID children requiring frequent medical care.
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Affiliation(s)
- Tadashi Matsubasa
- Department of Pediatrics, Kumamoto University Hospital, Kumamoto, Japan.,Kumamoto-Ashikita Institution for Developmental Disabilities, Kumamoto, Japan
| | - Hiroshi Mitsubuchi
- Department of Neonatology, Kumamoto University Hospital, Kumamoto, Japan
| | - Akihiko Kimura
- Kumamoto-Ashikita Institution for Developmental Disabilities, Kumamoto, Japan
| | - Makoto Shinohara
- Kumamoto-Ashikita Institution for Developmental Disabilities, Kumamoto, Japan
| | - Fumio Endo
- Department of Pediatrics, Graduate School of Medical Sciences, Kumamoto University, Kumamoto, Japan
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18
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Roberts W, Zurada A, Zurada-ZieliŃSka A, Gielecki J, Loukas M. Anatomy of trisomy 18. Clin Anat 2016; 29:628-32. [DOI: 10.1002/ca.22725] [Citation(s) in RCA: 14] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/30/2016] [Accepted: 03/31/2016] [Indexed: 11/08/2022]
Affiliation(s)
- Wallisa Roberts
- Department of Anatomical Sciences; St George's University; Grenada
| | - Anna Zurada
- Department of Anatomy; Varmia and Mazury Medical School; Olsztyn Poland
| | | | - Jerzy Gielecki
- Department of Anatomy; Varmia and Mazury Medical School; Olsztyn Poland
| | - Marios Loukas
- Department of Anatomical Sciences; St George's University; Grenada
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