Furman Bridgette D, Kent Collin L, Huebner Janet L, Kraus Virginia B, McNulty Amy L, Guilak Farshid, Olson Steven A
Department of Orthopaedic Surgery, Duke University Medical Center, Durham, 27710, North Carolina.
Duke Molecular Physiology Institute, Durham, 27701, North Carolina.
J Orthop Res. 2018 Apr;36(4):1220-1227. doi: 10.1002/jor.23735. Epub 2017 Nov 20.
The objective of this study was to investigate the expression of the chemokine CXCL10 and its role in joint tissues following articular fracture. We hypothesized that CXCL10 is upregulated following articular fracture and contributes to cartilage degradation associated with post-traumatic arthritis (PTA). To evaluate CXCL10 expression following articular fracture, gene expression was quantified in synovial tissue from knee joints of C57BL/6 mice that develop PTA following articular fracture, and MRL/MpJ mice that are protected from PTA. CXCL10 protein expression was assessed in human cartilage in normal, osteoarthritic (OA), and post-traumatic tissue using immunohistochemistry. The effects of exogenous CXCL10, alone and in combination with IL-1, on porcine cartilage explants were assessed by quantifying the release of catabolic mediators. Synovial tissue gene expression of CXCL10 was upregulated by joint trauma, peaking one day in C57BL/6 mice (25-fold) versus 3 days post-fracture in MRL/MpJ mice (15-fold). CXCL10 protein in articular cartilage was most highly expressed following trauma compared with normal and OA tissue. In a dose dependent manner, exogenous CXCL10 significantly reduced total matrix metalloproteinase (MMP) and aggrecanase activity of culture media from cartilage explants. CXCL10 also trended toward a reduction in IL-1α-stimulated total MMP activity (p = 0.09) and S-GAG (p = 0.09), but not NO release. In conclusion, CXCL10 was upregulated in synovium and chondrocytes following trauma. However, exogenous CXCL10 did not induce a catabolic response in cartilage. CXCL10 may play a role in modulating the chondrocyte response to inflammatory stimuli associated with joint injury and the progression of PTA. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:1220-1227, 2018.
本研究的目的是调查趋化因子CXCL10的表达及其在关节骨折后关节组织中的作用。我们假设CXCL10在关节骨折后上调,并导致与创伤后关节炎(PTA)相关的软骨降解。为了评估关节骨折后CXCL10的表达,对C57BL/6小鼠(关节骨折后发生PTA)和MRL/MpJ小鼠(免受PTA影响)膝关节滑膜组织中的基因表达进行了定量分析。使用免疫组织化学方法评估了正常、骨关节炎(OA)和创伤后组织中人类软骨的CXCL10蛋白表达。通过定量分解代谢介质的释放,评估了外源性CXCL10单独以及与白细胞介素-1联合对猪软骨外植体的影响。关节创伤使CXCL10的滑膜组织基因表达上调,在C57BL/6小鼠中于骨折后1天达到峰值(25倍),而在MRL/MpJ小鼠中于骨折后3天达到峰值(15倍)。与正常和OA组织相比,创伤后关节软骨中的CXCL10蛋白表达最高。外源性CXCL10以剂量依赖的方式显著降低了软骨外植体培养基中的总基质金属蛋白酶(MMP)和聚集蛋白聚糖酶活性。CXCL10还倾向于降低白细胞介素-1α刺激的总MMP活性(p = 0.09)和硫酸化糖胺聚糖(p = 0.09),但不影响一氧化氮的释放。总之,创伤后滑膜和软骨细胞中的CXCL10上调。然而,外源性CXCL10并未在软骨中诱导分解代谢反应。CXCL10可能在调节软骨细胞对与关节损伤和PTA进展相关的炎症刺激的反应中发挥作用。©2017骨科研究协会。由威利期刊公司出版。《矫形外科学研究》36:1220 - 1227,2018年。