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首页> 外文期刊>Cell and tissue banking: An international journal of banking, engineering & transplantation of cells and tissues >The role of macrophages in the tissues regeneration stimulated by the biomaterials
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The role of macrophages in the tissues regeneration stimulated by the biomaterials

机译:巨噬细胞在生物材料刺激的组织再生中的作用

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Allogenic grafted tissues are subjected to biodegradation and replaced by the regenerate. To minimize the immune response and improve the rebuilding of tissues there was developed a technology to treat tissues with a cells elimination and dosed out extraction of proteoglycanes (Alloplant?). With aim to clarify the role of macrophages in the tissues regeneration resulting implantation the biomaterials 112 rats were injected the allogenic and xenogenic (rabbits) pulverized biomaterials in the form of suspension. Injections were performed subcutaneously into the animals back by the base of the tail. The control group (14 rats) were injected a physiologic saline. Animals were killed by ether inhalation on day 2, 4, 7, 14, 30, 90 and 180 and tissue sections were studied by light and electron microscopy. The study showed the key role of the macrophages in resorption of the allogenic biomaterial and formation of the newly-formed tissue. Implantation of the biomaterial induced activity a great number of the mature macrophages, which completely lysed and resorbed the biomaterial particles. Expression TNF was significantly higher whereas expression TGF-1 was significantly lower. With xenogenic biomaterial implantation there were less macrophages, their activity was restricted. Macrophages containing large vacuoles with an active endo- and exocytosis were revealed in the allogenic biomaterial implantation and were named matrix-forming macrophages. We may suppose that these macrophages synthesize (or re-synthesize) proteoglycan component of the newly-formed collagen fibers. There was put forward a hypothesis about the two component mechanism of the collagen fibers formation.
机译:同种异体移植组织经过生物降解,并被再生所替代。为了使免疫反应最小化并改善组织的重建,开发了一种通过消除细胞和定量提取蛋白聚糖(Alloplant?)来处理组织的技术。为了阐明巨噬细胞在组织再生导致的植入中的作用,将生物材料112只大鼠以悬浮液形式注射了同种异体和异种(兔)粉碎的生物材料。通过尾巴的皮基向动物皮下注射。对照组(14只大鼠)注射生理盐水。在第2、4、7、14、30、90和180天通过吸入乙醚杀死动物,并通过光学和电子显微镜研究组织切片。研究表明巨噬细胞在同种异体生物材料的吸收和新形成的组织形成中的关键作用。生物材料的植入诱导了许多成熟的巨噬细胞的活性,这些巨噬细胞完全溶解并吸收了生物材料颗粒。表达TNF显着较高,而表达TGF-1显着较低。异种生物材料植入后,巨噬细胞减少,其活性受到限制。在同种异体生物材料的植入过程中发现了具有大的液泡并具有活跃的胞吞作用和胞吐作用的巨噬细胞,并将其称为基质形成巨噬细胞。我们可以假设这些巨噬细胞合成(或重新合成)新形成的胶原纤维的蛋白聚糖成分。提出了关于胶原纤维形成的两个成分机制的假说。

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