Horwood Nicole J, Smith Clive, Andreakos Evangelos, Quattrocchi Emilia, Brennan Fionula M, Feldmann Marc, Foxwell Brian M J
Kennedy Institute of Rheumatology Division, Imperial College Faculty of Medicine, London, UK.
Arthritis Res. 2002;4 Suppl 3(Suppl 3):S215-25. doi: 10.1186/ar560. Epub 2002 May 9.
The elucidation of the signalling pathways involved in inflammatory diseases, such as rheumatoid arthritis, could provide long sought after targets for therapeutic intervention. Gene regulation is complex and varies depending on the cell type, as well as the signal eliciting gene activation. However, cells from certain lineages, such as macrophages, are specialised to degrade exogenous material and consequently do not easily transfect. Methods for high-efficiency gene transfer into primary cells of various lineages and disease states are desirable, as they remove the uncertainties associated with using transformed cell lines. Significant research has been undertaken into the development of nonviral and viral vectors for basic research, and as vehicles for gene therapy. We briefly review the current methods of gene delivery and the difficulties associated with each system. Adenoviruses have been used extensively to examine the role of various cytokines and signal transduction molecules in the pathogenesis of rheumatoid arthritis. This review will focus on the involvement of different signalling molecules in the production of tumour necrosis factor alpha by macrophages and in rheumatoid synovium. While the NF-kappaB pathway has proven to be a major mediator of tumour necrosis factor alpha production, it is not exclusive and work evaluating the involvement of other pathways is ongoing.
阐明类风湿关节炎等炎症性疾病所涉及的信号通路,可为长期以来寻求的治疗干预靶点提供依据。基因调控很复杂,并且因细胞类型以及引发基因激活的信号而异。然而,某些谱系的细胞,如巨噬细胞,专门用于降解外源物质,因此不容易转染。高效基因转移到各种谱系和疾病状态的原代细胞中的方法是可取的,因为它们消除了使用转化细胞系相关的不确定性。为了基础研究以及作为基因治疗的载体,人们对非病毒和病毒载体的开发进行了大量研究。我们简要回顾一下当前的基因递送方法以及与每个系统相关的困难。腺病毒已被广泛用于研究各种细胞因子和信号转导分子在类风湿关节炎发病机制中的作用。本综述将重点关注不同信号分子在巨噬细胞产生肿瘤坏死因子α以及类风湿滑膜中的作用。虽然核因子κB途径已被证明是肿瘤坏死因子α产生的主要介质,但它并非唯一的介质,评估其他途径参与情况的工作正在进行中。