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Klein MJ. Non-neoplastic bone, joint, and soft tissue pathology: What every pathologist should know. Hum Pathol 2024; 147:15-57. [PMID: 38237872 DOI: 10.1016/j.humpath.2024.01.001] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 12/19/2023] [Revised: 01/11/2024] [Accepted: 01/12/2024] [Indexed: 02/12/2024]
Abstract
The diagnosis of bone and soft tissue tumors is a skill which requires experience across multiple disciplines while their incidence is small. By contrast, the numbers of patients with non-tumorous diseases of bones, soft tissues, and joints dwarfs primary tumors by several orders of magnitude. The ability to successfully diagnose non-neoplastic diseases requires a knowledge of bone development, structure, remodeling, imaging, and tissue processing. This review summarizes the alterations of bones, joints, and to a lesser extent soft tissues that are encountered in the practice of everyday surgical pathology.
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Affiliation(s)
- Michael J Klein
- Professor of Pathology and Laboratory Medicine, Weill Cornell Medical College. Pathologist-in-Chief Emeritus and Attending Pathologist, Hospital for Special Surgery, USA.
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Koroneos ZA, Ptasinski A, Stauch C, King TS, Fanburg-Smith JC, Aynardi M. Establishment of a Neurodegenerative Charcot Mouse Model. Foot Ankle Int 2023; 44:1278-1286. [PMID: 37818993 PMCID: PMC10717181 DOI: 10.1177/10711007231198822] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 10/13/2023]
Abstract
BACKGROUND This study aimed to mimic the changes from Charcot neuropathic arthropathy in humans by examining the effects of exposing diet-induced obese (DIO) mice to neurotrauma through a regimented running protocol. METHODS Forty-eight male wild-type C57BL/6J mice were obtained at age 6 weeks and separated into 2 groups for diet assignment. After a 1-week acclimation period, half of the mice consumed a high-fat diet (60% fat by kcal) ad libitum to facilitate neuropathic diet-induced obesity whereas the other half were control mice and consumed an age-matched standard low-fat control diet (10% fat by kcal). At age 12 weeks, half of the animals from each group were subjected to a high-intensity inclined treadmill running protocol, which has been previously demonstrated to induce neurotrauma. Sensory testing and radiographic analyses were periodically performed. Histopathologic analyses were performed post killing. RESULTS DIO mice had significantly higher bodyweights, higher body fat percentages, and lower bone mineral density than wildtype control mice that were fed a normal diet throughout the experiment (P < .001 for each). DIO mice displayed significantly reduced sensory function in week 1 (P = .005) and this worsened over time, requiring 20.6% more force for paw withdrawal by week 10 (P < .001). DIO mice that ran demonstrated greater midfoot subluxation and tarsal instability over all time points compared with normal-diet mice that ran (P < .001). Histopathologic analyses revealed that DIO mice that ran demonstrated significant changes compared with controls that ran (P < .001 for each parameter). CONCLUSION Changes akin to the earliest changes observed in or before joint destruction identified in diabetic Charcot neuropathic arthropathy in humans were observed. CLINICAL RELEVANCE There is currently no standard of treatment for patients with Charcot neuropathic arthropathy. This study establishes a protocol for an animal model that can be used to study and compare interventions to treat this disease.
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Affiliation(s)
- Zachary A. Koroneos
- Center for Orthopaedic Research and Translational Science, The Pennsylvania State University, Hershey, PA, USA
| | - Anna Ptasinski
- Penn State College of Medicine, The Pennsylvania State University, Hershey, PA, USA
| | - Christopher Stauch
- Penn State College of Medicine, The Pennsylvania State University, Hershey, PA, USA
| | - Tonya S. King
- Department of Public Health Sciences, Division of Biostatistics and Bioinformatics, The Pennsylvania State University, Hershey, PA, USA
| | - Julie C. Fanburg-Smith
- Departments of Pathology, Orthopaedics, Pediatrics, Center for Orthopaedic Research and Translational Science, Penn State College of Medicine, The Pennsylvania State University, Hershey, PA, USA
| | - Michael Aynardi
- Center for Orthopaedic Research and Translational Science, The Pennsylvania State University, Hershey, PA, USA
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Stauch CM, Fanburg-Smith JC, Walley KC, King JL, Murie B, Kim M, Koroneos Z, Waning D, Elfar JC, Aynardi MC. Animal model detects early pathologic changes of Charcot neuropathic arthropathy. Ann Diagn Pathol 2022; 56:151878. [PMID: 34953234 DOI: 10.1016/j.anndiagpath.2021.151878] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/07/2021] [Accepted: 12/09/2021] [Indexed: 11/01/2022]
Abstract
Charcot neuropathic arthropathy is a degenerative, debilitating disease that affects the foot and ankle in patients with diabetes and peripheral neuropathy, often resulting in destruction, amputation. Proposed etiologies include neurotraumatic, inflammatory, and neurovascular. There has been no previous animal model for Charcot. This study proposes a novel rodent model of induced neuropathic arthropathy to understand the earliest progressive pathologic changes of human Charcot. High-fat-diet-induced obese (DIO) Wild-type C57BL/6J mice (n = 8, diabetic) and age-matched low-fat-diet controls (n = 6) were run on an inclined high-intensity treadmill protocol four times per week for 7 weeks to induce mechanical neurotrauma to the hind-paw, creating Charcot neuropathic arthropathy. Sensory function and radiologic correlation were assessed; animals were sacrificed to evaluate hindpaw soft tissue and joint pathology. With this model, Charcot-DIO mice reveals early pathologic features of Charcot neuropathic arthropathy, a distinctive subchondral microfracture callus, perichondral/subchondral osseous hypertrophy/osteosclerosis, that precedes fragmentation/destruction observed in human surgical pathology specimens. There is intraneural vacuolar-myxoid change and arteriolosclerosis. The DIO mice demonstrated significant hot plate sensory neuropathy compared (P < 0.01), radiographic collapse of the longitudinal arch in DIO mice (P < 0.001), and diminished bone density in DIO, compared with normal controls. Despite exercise, high-fat-DIO mice increased body weight and percentage of body fat (P < 0.001). This murine model of diet-induced obesity and peripheral neuropathy, combined with repetitive mechanical trauma, simulates the earliest changes observed in human Charcot neuropathic arthropathy, of vasculopathic-neuropathic etiology. An understanding of early pathophysiology may assist early diagnosis and intervention and reduce patient morbidity and mortality in Charcot neuropathic arthropathy.
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Affiliation(s)
- Christopher M Stauch
- Penn State College of Medicine, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - Julie C Fanburg-Smith
- Penn State College of Medicine, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Pathology, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Pediatrics, Milton S. Hershey Medical Center in Hershey, PA, United States of America.
| | - Kempland C Walley
- Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - Jesse L King
- Penn State College of Medicine, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - Benjamin Murie
- Department of Pathology, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - Morgan Kim
- Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - Zachary Koroneos
- Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - David Waning
- Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - John C Elfar
- Penn State College of Medicine, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
| | - Michael C Aynardi
- Penn State College of Medicine, Milton S. Hershey Medical Center in Hershey, PA, United States of America; Department of Orthopedics, Milton S. Hershey Medical Center in Hershey, PA, United States of America
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