Johnston Jessica M, Connizzo Brianne K, Shetye Snehal S, Robinson Kelsey A, Huegel Julianne, Rodriguez Ashley B, Sun Mei, Adams Sheila M, Birk David E, Soslowsky Louis J
University Laboratory Animal Resources, Department of Pathobiology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
McKay Orthopaedic Research Laboratory, University of Pennsylvania, Philadelphia, Pennsylvania.
J Orthop Res. 2017 Dec;35(12):2707-2715. doi: 10.1002/jor.23571. Epub 2017 Apr 24.
Classic Ehlers-Danlos syndrome (EDS) patients suffer from connective tissue hyperelasticity, joint instability, skin hyperextensibility, tissue fragility, and poor wound healing due to heterozygous mutations in COL5a1 or COL5a2 genes. This study investigated the roles of collagen V in establishing structure and function in uninjured patellar tendons as well as in the injury response using a Col5a1 mouse, a model for classic EDS. These analyses were done comparing tendons from a classic EDS model (Col5a1 ) with wild-type controls. Tendons were subjected to mechanical testing, histological, and fibril analysis before injury as well as 3 and 6 weeks after injury. We found that Col5a1 tendons demonstrated diminished recovery of mechanical competency after injury as compared to normal wild-type tendons, which recovered their pre-injury values by 6 weeks post injury. Additionally, the Col5a1 tendons demonstrated altered fibril morphology and diameter distributions compared to the wild-type tendons. This study indicates that collagen V plays an important role in regulating collagen fibrillogenesis and the associated recovery of mechanical integrity in tendons after injury. In addition, the dysregulation with decreased collagen V expression in EDS is associated with a diminished injury response. The results presented herein have the potential to direct future targeted therapeutics for classic EDS patients. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:2707-2715, 2017.
典型的埃勒斯-当洛综合征(EDS)患者由于COL5a1或COL5a2基因的杂合突变,患有结缔组织弹性亢进、关节不稳定、皮肤过度伸展、组织脆弱和伤口愈合不良。本研究使用经典EDS模型Col5a1小鼠,研究了胶原蛋白V在未受伤髌腱的结构和功能建立以及损伤反应中的作用。这些分析是将经典EDS模型(Col5a1)的肌腱与野生型对照进行比较。在损伤前以及损伤后3周和6周,对肌腱进行力学测试、组织学和原纤维分析。我们发现,与正常野生型肌腱相比,Col5a1肌腱在损伤后的力学能力恢复减弱,野生型肌腱在损伤后6周恢复到损伤前的值。此外,与野生型肌腱相比,Col5a1肌腱的原纤维形态和直径分布发生了改变。本研究表明,胶原蛋白V在调节肌腱损伤后胶原纤维形成及相关力学完整性恢复中起重要作用。此外,EDS中胶原蛋白V表达降低导致的失调与损伤反应减弱有关。本文给出的结果有可能为典型EDS患者指导未来的靶向治疗。© 2017骨科研究协会。由威利期刊公司出版。《骨科研究杂志》35:2707 - 2715,2017年。