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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Inhibition of the tissue reaction to a biodegradable biomaterial by monoclonal antibodies to IFN-gamma.
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Inhibition of the tissue reaction to a biodegradable biomaterial by monoclonal antibodies to IFN-gamma.

机译:IFN-γ单克隆抗体抑制组织对可生物降解生物材料的反应。

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Biomaterials are increasingly used for clinical applications. However, loss of function may occur owing to tissue reactions, which are mainly caused by a variety of inflammatory reactions. Recently, we demonstrated that macrophages (MO) and T cells play key roles in these reactions. Since immunological studies showed that the T cell-derived cytokine interferon-gamma (IFN-gamma) activates MO, the aim of this study was to investigate the possibility of modulating tissue reactions to biodegradable biomaterials by inactivating IFN-gamma. Dermal sheep collagen (DSC) was used as a test biomaterial. DSC impregnated with anti-IFN-gamma or phosphate-buffered saline (control) was implanted in rats. The results showed that cellular ingrowth and formation and function of giant cells were strongly delayed by anti-IFN-gamma. Also, MHC class II expression was strongly inhibited. In the treated DSC, some huge giant cells were formed at the interface but association with the DSC bundles did not occur. Finally, in both the control and treated DSC, T cells and NK cells were rarely detected. This study demonstrates that IFN-gamma plays an important role in the inflammatory reaction to biomaterials. This reaction can be modulated by anti-IFN-gamma, which warrants further studies of anti-IFN-gamma for clinical application to prevent unwanted tissue reactions to biomaterials.
机译:生物材料越来越多地用于临床。但是,由于组织反应可能会导致功能丧失,这主要是由各种炎症反应引起的。最近,我们证明了巨噬细胞(MO)和T细胞在这些反应中起关键作用。由于免疫学研究表明,源自T细胞的细胞因子干扰素-γ(IFN-γ)激活了MO,因此本研究的目的是研究通过使IFN-γ失活来调节组织对可生物降解生物材料反应的可能性。真皮绵羊胶原蛋白(DSC)被用作测试生物材料。将用抗IFN-γ或磷酸盐缓冲盐水(对照)浸渍的DSC植入大鼠。结果显示,抗-IFN-γ强烈延迟了细胞向内生长以及巨细胞的形成和功能。同样,II类MHC表达也被强烈抑制。在处理过的DSC中,在界面处形成了一些巨大的巨细胞,但未与DSC束缔合。最后,在对照和处理的DSC中,很少检测到T细胞和NK细胞。这项研究表明,IFN-γ在对生物材料的炎症反应中起重要作用。该反应可通过抗IFN-γ调节,这有必要进一步研究抗IFN-γ的临床应用,以防止不必要的组织对生物材料的反应。

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