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Tangella AV, Peta RK, Yadlapalli DC, Raghunadha Rao D, M MS. Ethylene Diamine Tetra Acetate-Induced Pseudo Thrombocytopenia (EDTA-PTCP) in an Adolescent: A Case Report. Cureus 2023; 15:e38545. [PMID: 37273366 PMCID: PMC10239273 DOI: 10.7759/cureus.38545] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 05/04/2023] [Indexed: 06/06/2023] Open
Abstract
Ethylene diamine tetra acetate-induced pseudo thrombocytopenia (EDTA-PTCP) is a fictitious laboratory condition that is associated with platelet clumping, leading to falsely low platelet counts. This fictitious occurrence can lead to expensive, time-consuming, and invasive diagnostic procedures. It may also result in the application of unnecessary therapies, although it is not linked to any hemorrhagic symptoms or platelet malfunction. This emphasizes the necessity of verifying laboratory results from automated analyzers in every patient with thrombocytopenia with a peripheral smear, particularly when they are out of proportion when compared to the clinical features. When using hematology analyzers, EDTA-induced pseudo thrombocytopenia can be missed. In cases of isolated thrombocytopenia, this can be easily avoided by performing a simple visual peripheral blood smear check, hence making it an important differential for thrombocytopenia on an automatic analyzer report, which has to be ruled out. Here, we present the case of an adolescent who presented to us with low platelet counts and was diagnosed with EDTA-PTCP after proper evaluation.
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Affiliation(s)
- Adarsh Vardhan Tangella
- Internal Medicine, Andhra Medical College, Visakhapatnam, IND
- Internal Medicine, King George Hospital, Visakhapatnam, IND
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Layssol-Lamour CJ, Granat FA, Sahal AM, Braun JPD, Trumel C, Bourgès-Abella NH. Improving the Quality of EDTA-treated Blood Specimens from Mice. JOURNAL OF THE AMERICAN ASSOCIATION FOR LABORATORY ANIMAL SCIENCE : JAALAS 2022; 61:188-194. [PMID: 35022109 PMCID: PMC8956217 DOI: 10.30802/aalas-jaalas-21-000093] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 07/28/2021] [Revised: 09/13/2021] [Accepted: 09/21/2021] [Indexed: 06/14/2023]
Abstract
Nonterminal blood sampling in laboratory mice is a very common procedure. With the goal of improving animal welfare, different sampling sites and methods have been compared but have not achieved a consensus. Moreover, most of these studies overlooked the quality of blood specimens collected. The main preanalytical concern with EDTA-treated blood specimens for hematology analyses is platelet aggregation, which is known to cause analytical errors. Our objective was to find a nonterminal blood sampling method with minimal adverse effects on mice and few or no platelet aggregates. We tested and compared 2 collection sites, 4 sampling methods, and 3 antithrombotic drugs in 80 C57BL6/j male and female mice by evaluating platelet aggregates on blood smears and platelet, WBC, and RBC counts. In addition, the blood collection process was carefully evaluated, and adverse effects were recorded. Platelet aggregation was lower in specimens collected from the jugular vein than from the facial vein, with no effect of the sampling device or the presence of an antithrombotic additive. Highly aggregated specimens were significantly associated with lower platelet counts, whereas aggregation had no effect on WBC or RBC counts. Adverse events during sampling were significantly associated with more numerous platelet aggregates. The jugular vein is thus a satisfactory sampling site in mice in terms of both animal welfare and low platelet aggregation. Using antithrombotic agents appears to be unnecessary, whereas improving sampling conditions remains a key requirement to ensure the quality of EDTA-treated blood specimens from mice.
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Affiliation(s)
- Catherine J Layssol-Lamour
- Centre Régional d’Exploration Fonctionnelle et de Ressources Expérimentales (CREFRE), Université de Toulouse, UMR 1037,INSERM, UPS, ENVT
| | - Fanny A Granat
- Centre de Recherches en Cancérologie de Toulouse, INSE=RM, Université de Toulouse; and
| | - Ambrine M Sahal
- Centre de Recherches en Cancérologie de Toulouse, INSE=RM, Université de Toulouse; and
| | | | - Catherine Trumel
- Centre Régional d’Exploration Fonctionnelle et de Ressources Expérimentales (CREFRE), Université de Toulouse, UMR 1037,INSERM, UPS, ENVT
| | - Nathalie H Bourgès-Abella
- Centre Régional d’Exploration Fonctionnelle et de Ressources Expérimentales (CREFRE), Université de Toulouse, UMR 1037,INSERM, UPS, ENVT
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Lardinois B, Favresse J, Chatelain B, Lippi G, Mullier F. Pseudothrombocytopenia-A Review on Causes, Occurrence and Clinical Implications. J Clin Med 2021; 10:594. [PMID: 33557431 PMCID: PMC7915523 DOI: 10.3390/jcm10040594] [Citation(s) in RCA: 24] [Impact Index Per Article: 8.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/31/2020] [Revised: 01/29/2021] [Accepted: 02/01/2021] [Indexed: 02/06/2023] Open
Abstract
Pseudothrombocytopenia (PTCP), a relative common finding in clinical laboratories, can lead to diagnostic errors, overtreatment, and further (even invasive) unnecessary testing. Clinical consequences with potential life-threatening events (e.g., unnecessary platelet transfusion, inappropriate treatment including splenectomy or corticosteroids) are still observed when PTCP is not readily detected. The phenomenon is even more complex when occurring with different anticoagulants. In this review we present a case of multi-anticoagulant PTCP, where we studied different parameters including temperature, amikacin supplementation, measurement methods, and type of anticoagulant. Prevalence, clinical risk factors, pre-analytical and analytical factors, along with clinical implications, will be discussed. The detection of an anticoagulant-dependent PTCP does not necessarily imply the presence of specific disorders. Conversely, the incidence of PTCP seems higher in patients receiving low molecular weight heparin, during hospitalization, or in men aged 50 years or older. New analytical technologies, such as fluorescence or optical platelet counting, will be soon overturning traditional algorithms and represent valuable diagnostic aids. A practical laboratory approach, based on current knowledge of PTCP, is finally proposed for overcoming spuriously low platelet counts.
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Affiliation(s)
- Benjamin Lardinois
- Namur Thrombosis and Hemostasis Center (NTHC), CHU UCL Namur, Université Catholique de Louvain, 5530 Yvoir, Belgium; (B.L.); (J.F.); (B.C.)
| | - Julien Favresse
- Namur Thrombosis and Hemostasis Center (NTHC), CHU UCL Namur, Université Catholique de Louvain, 5530 Yvoir, Belgium; (B.L.); (J.F.); (B.C.)
| | - Bernard Chatelain
- Namur Thrombosis and Hemostasis Center (NTHC), CHU UCL Namur, Université Catholique de Louvain, 5530 Yvoir, Belgium; (B.L.); (J.F.); (B.C.)
| | - Giuseppe Lippi
- Section of Clinical Biochemistry, University of Verona, 37134 Verona, Italy;
| | - François Mullier
- Namur Thrombosis and Hemostasis Center (NTHC), CHU UCL Namur, Université Catholique de Louvain, 5530 Yvoir, Belgium; (B.L.); (J.F.); (B.C.)
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Čížková J, Erbanová M, Sochor J, Jindrová A, Strnadová K, Horák V. Relationship between haematological profile and progression or spontaneous regression of melanoma in the Melanoma-bearing Libechov Minipigs. Vet J 2019; 249:1-9. [PMID: 31239158 DOI: 10.1016/j.tvjl.2019.04.016] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/10/2018] [Revised: 04/29/2019] [Accepted: 04/29/2019] [Indexed: 12/22/2022]
Abstract
Haematological parameters, plasma iron concentration, and bodyweight were monitored in Melanoma-bearing Libechov Minipigs (MeLiM) from 5 to 18 weeks old. Animals with melanoma progression (P group) and spontaneous regression (SR group) were compared. The P group showed the lowest median values of red blood cell counts (RBC), haematocrit (HCT), haemoglobin concentration (HGB), and bodyweight, whereas the control white (tumour-free) pigs (C group) revealed the highest mean values of these parameters. The mean values of pigs with SR fell between the P and C groups. In addition, a stable concentration of plasma iron was found in the C group, while iron deficiency that increases with age was observed in the MeLiM groups. These results indicate that MeLiM are affected by cancer-related microcytic hypochromic anaemia. The lowest values of HGB, RBC, and HCT, together with the highest number of platelets (PLT) in the P group correspond to melanoma progression. Higher values of these parameters and lower PLT in the MeLiM pigs with SR reflected health improvement due to the destruction of melanoma cells during spontaneous regression. Monitoring of these haematological parameters can help distinguish MeLiM piglets with progression and spontaneous regression of melanoma in the early stages of postnatal development. The findings of this study correspond to findings in human patients in which cancer-related anaemia, thrombocytosis, and iron deficiency are often diagnosed.
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Affiliation(s)
- J Čížková
- Czech Academy of Sciences, Institute of Animal Physiology and Genetics,v.v.i., Laboratory of Applied Proteome Analyses, and Laboratory of Tumour Biology, Rumburska 89, CZ-277 21 Libechov, Czech Republic; Czech University of Life Sciences Prague, Faculty of Agrobiology, Food and Natural Resources, Department of Veterinary Sciences, Kamycka 129, CZ-165 00 Prague, Czech Republic
| | - M Erbanová
- Czech Academy of Sciences, Institute of Animal Physiology and Genetics,v.v.i., Laboratory of Applied Proteome Analyses, and Laboratory of Tumour Biology, Rumburska 89, CZ-277 21 Libechov, Czech Republic
| | - J Sochor
- Mendel University in Brno, Department of Viticulture and Enology, Valticka 337, CZ-691 44 Lednice, Czech Republic; Department of Chemistry and Biochemistry, Zemedelska 1, CZ-613 00 Brno, Czech Republic
| | - A Jindrová
- Czech University of Life Sciences Prague, Faculty of Economics and Management, Department of Statistics, Prague, Czech Republic
| | - K Strnadová
- Czech Academy of Sciences, Institute of Animal Physiology and Genetics,v.v.i., Laboratory of Applied Proteome Analyses, and Laboratory of Tumour Biology, Rumburska 89, CZ-277 21 Libechov, Czech Republic; Czech University of Life Sciences Prague, Faculty of Agrobiology, Food and Natural Resources, Department of Veterinary Sciences, Kamycka 129, CZ-165 00 Prague, Czech Republic
| | - V Horák
- Czech Academy of Sciences, Institute of Animal Physiology and Genetics,v.v.i., Laboratory of Applied Proteome Analyses, and Laboratory of Tumour Biology, Rumburska 89, CZ-277 21 Libechov, Czech Republic.
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