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胶原诱导性关节炎猴模型中的关节退变:基于生化标志物和组织学评估的组织蛋白酶K的作用

Joint Degradation in a Monkey Model of Collagen-Induced Arthritis: Role of Cathepsin K Based on Biochemical Markers and Histological Evaluation.

作者信息

Tanaka Makoto, Yamada Hiroyuki, Nishikawa Satoshi, Mori Hiroshi, Ochi Yasuo, Horai Naoto, Li Minqi, Amizuka Norio

机构信息

Research Promotion, Ono Pharmaceutical Co., Ltd., Shimamoto, Osaka 618-8585, Japan.

Discovery Research Laboratories, Ono Pharmaceutical Co., Ltd., Shimamoto, Osaka 618-8585, Japan.

出版信息

Int J Rheumatol. 2016;2016:8938916. doi: 10.1155/2016/8938916. Epub 2016 Feb 2.

Abstract

The role of cathepsin K in joint degradation in a model of collagen-induced arthritis (CIA) in cynomolgus monkey was examined using biochemical markers and histology. Joint swelling, urinary C-telopeptide of type II collagen (CTX-II), deoxypyridinoline (DPD), and N- and C-telopeptides of type I collagen (NTX and CTX-I, resp.) were analyzed. Immunohistochemistry of type II collagen, cathepsin K, and CTX-II were performed using joints. Joint swelling reached peak on day 42 and continued at this level. The CTX-II level peaked on day 28 and declined thereafter, while CTX-I, NTX, and DPD reached plateau on day 43. Joint swelling was positively correlated with CTX-II increases on days 20 and 42/43, with increases in CTX-I and NTX/Cr on days 42/43 and 84, and with DPD increases throughout the study period. Intense cathepsin K staining was observed in osteoclasts and in articular cartilage and synovial tissue in arthritic joints. CTX-II was present in the superficial layer of articular cartilage in CIA monkeys. Evidence from biochemical markers suggests that matrix degradation in the CIA model starts with degradation of cartilage, rather than bone resorption. Cathepsin K expressed in osteoclasts, articular cartilage, and synovial tissue may contribute to degradation of cartilage.

摘要

利用生化标志物和组织学方法,研究了组织蛋白酶K在食蟹猴胶原诱导性关节炎(CIA)模型关节退变中的作用。分析了关节肿胀、II型胶原的尿C末端肽(CTX-II)、脱氧吡啶啉(DPD)以及I型胶原的N末端肽和C末端肽(分别为NTX和CTX-I)。使用关节进行了II型胶原、组织蛋白酶K和CTX-II的免疫组织化学检测。关节肿胀在第42天达到峰值并维持在该水平。CTX-II水平在第28天达到峰值,此后下降,而CTX-I、NTX和DPD在第43天达到平台期。关节肿胀在第20天和第42/43天与CTX-II升高呈正相关,在第42/43天和第84天与CTX-I和NTX/Cr升高呈正相关,并且在整个研究期间与DPD升高呈正相关。在破骨细胞以及关节炎关节的关节软骨和滑膜组织中观察到强烈的组织蛋白酶K染色。CTX-II存在于CIA猴关节软骨的表层。生化标志物的证据表明,CIA模型中的基质降解始于软骨降解,而非骨吸收。在破骨细胞、关节软骨和滑膜组织中表达的组织蛋白酶K可能导致软骨降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f71/4754492/9997d499f04b/IJR2016-8938916.001.jpg

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