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在基于兔子的关节挛缩模型中,促进后膝关节囊内富含胶原蛋白沉积物形成的辅助蛋白。

Auxiliary proteins that facilitate formation of collagen-rich deposits in the posterior knee capsule in a rabbit-based joint contracture model.

作者信息

Steplewski Andrzej, Fertala Jolanta, Beredjiklian Pedro K, Abboud Joseph A, Wang Mark L Y, Namdari Surena, Barlow Jonathan, Rivlin Michael, Arnold William V, Kostas James, Hou Cheryl, Fertala Andrzej

机构信息

Department of Orthopaedic Surgery, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania.

Rothman Institute of Orthopaedics, Thomas Jefferson University Hospital, Philadelphia, Pennsylvania.

出版信息

J Orthop Res. 2016 Mar;34(3):489-501. doi: 10.1002/jor.23007. Epub 2015 Aug 18.

Abstract

Post-traumatic joint contracture is a debilitating consequence of trauma or surgical procedures. It is associated with fibrosis that develops regardless of the nature of initial trauma and results from complex biological processes associated with inflammation and cell activation. These processes accelerate production of structural elements of the extracellular matrix, particularly collagen fibrils. Although the increased production of collagenous proteins has been demonstrated in tissues of contracted joints, researchers have not yet determined the complex protein machinery needed for the biosynthesis of collagen molecules and for their assembly into fibrils. Consequently, the purpose of our study was to investigate key enzymes and protein chaperones needed to produce collagen-rich deposits. Using a rabbit model of joint contracture, our biochemical and histological assays indicated changes in the expression patterns of heat shock protein 47 and the α-subunit of prolyl 4-hydroxylase, key proteins in processing nascent collagen chains. Moreover, our study shows that the abnormal organization of collagen fibrils in the posterior capsules of injured knees, rather than excessive formation of fibril-stabilizing cross-links, may be a key reason for observed changes in the mechanical characteristics of injured joints. This result sheds new light on pathomechanisms of joint contraction, and identifies potentially attractive anti-fibrotic targets.

摘要

创伤后关节挛缩是创伤或外科手术导致的一种使人衰弱的后果。它与纤维化相关,这种纤维化的发展与初始创伤的性质无关,是由与炎症和细胞活化相关的复杂生物学过程引起的。这些过程加速了细胞外基质结构成分的产生,尤其是胶原纤维。尽管在挛缩关节的组织中已证实胶原蛋白质的产量增加,但研究人员尚未确定胶原分子生物合成及其组装成纤维所需的复杂蛋白质机制。因此,我们研究的目的是调查产生富含胶原蛋白沉积物所需的关键酶和蛋白质伴侣。使用关节挛缩的兔模型,我们的生化和组织学分析表明,热休克蛋白47和脯氨酰4-羟化酶α亚基(处理新生胶原链的关键蛋白质)的表达模式发生了变化。此外,我们的研究表明,受伤膝关节后囊膜中胶原纤维的异常排列,而非纤维稳定交联的过度形成,可能是受伤关节力学特性发生变化的关键原因。这一结果为关节挛缩的发病机制提供了新的线索,并确定了潜在有吸引力的抗纤维化靶点。

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