Le Maitre Christine L, Hoyland Judith A, Freemont Anthony J
Tissue Injury and Repair Group, Research School of Clinical and Laboratory Sciences, The School of Medicine, University of Manchester, Manchester M13 9PT, UK.
Arthritis Res Ther. 2007;9(4):R83. doi: 10.1186/ar2282.
Data implicate IL-1 in the altered matrix biology that characterizes human intervertebral disc (IVD) degeneration. In the current study we investigated the enzymic mechanism by which IL-1 induces matrix degradation in degeneration of the human IVD, and whether the IL-1 inhibitor IL-1 receptor antagonist (IL-1Ra) will inhibit degradation. A combination of in situ zymography (ISZ) and immunohistochemistry was used to examine the effects of IL-1 and IL-1Ra on matrix degradation and metal-dependent protease (MDP) expression in explants of non-degenerate and degenerate human IVDs. ISZ employed three substrates (gelatin, collagen, casein) and different challenges (IL-1beta, IL-1Ra and enzyme inhibitors). Immunohistochemistry was undertaken for MDPs. In addition, IL-1Ra was introduced into degenerate IVD explants using genetically engineered constructs. The novel findings from this study are: IL-1Ra delivered directly onto explants of degenerate IVDs eliminates matrix degradation as assessed by multi-substrate ISZ; there is a direct relationship between matrix degradation assessed by ISZ and MDP expression defined by immunohistochemistry; single injections of IVD cells engineered to over-express IL-1Ra significantly inhibit MDP expression for two weeks. Our findings show that IL-1 is a key cytokine driving matrix degradation in the degenerate IVD. Furthermore, IL-1Ra delivered directly or by gene therapy inhibits IVD matrix degradation. IL-1Ra could be used therapeutically to inhibit degeneration of the IVD.
数据表明,白细胞介素-1(IL-1)参与了表征人类椎间盘(IVD)退变的基质生物学改变。在本研究中,我们调查了IL-1诱导人类IVD退变中基质降解的酶促机制,以及IL-1抑制剂IL-1受体拮抗剂(IL-1Ra)是否会抑制降解。采用原位酶谱法(ISZ)和免疫组织化学相结合的方法,研究IL-1和IL-1Ra对非退变和退变人类IVD外植体中基质降解和金属依赖性蛋白酶(MDP)表达的影响。ISZ使用了三种底物(明胶、胶原蛋白、酪蛋白)和不同的刺激因素(IL-1β、IL-1Ra和酶抑制剂)。对MDP进行免疫组织化学检测。此外,使用基因工程构建体将IL-1Ra导入退变的IVD外植体。本研究的新发现是:通过多底物ISZ评估,直接将IL-1Ra施加于退变IVD外植体可消除基质降解;ISZ评估的基质降解与免疫组织化学定义的MDP表达之间存在直接关系;单次注射经基因工程改造以过表达IL-1Ra的IVD细胞可在两周内显著抑制MDP表达。我们的研究结果表明,IL-1是驱动退变IVD中基质降解的关键细胞因子。此外,直接或通过基因治疗递送的IL-1Ra可抑制IVD基质降解。IL-1Ra可用于治疗性抑制IVD退变。