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The Body’s Cellular and Molecular Response to Protein-Coated Medical Device Implants: A Review Focused on Fibronectin and BMP Proteins

机译:身体对蛋白质涂层医疗器械植入物的细胞和分子反应:综合症们聚焦纤维素和BMP蛋白质

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摘要

Recent years have seen a marked rise in implantation into the body of a great variety of devices: hip, knee, and shoulder replacements, pacemakers, meshes, glucose sensors, and many others. Cochlear and retinal implants are being developed to restore hearing and sight. After surgery to implant a device, adjacent cells interact with the implant and release molecular signals that result in attraction, infiltration of the tissue, and attachment to the implant of various cell types including monocytes, macrophages, and platelets. These cells release additional signaling molecules (chemokines and cytokines) that recruit tissue repair cells to the device site. Some implants fail and require additional revision surgery that is traumatic for the patient and expensive for the payer. This review examines the literature for evidence to support the possibility that fibronectins and BMPs could be coated on the implants as part of the manufacturing process so that the proteins could be released into the tissue surrounding the implant and improve the rate of successful implantation.
机译:近年来,植入中的植入体升高了各种各样的装置:臀部,膝盖和肩部替代,起搏器,网格,葡萄糖传感器以及许多其他人。正在开发耳蜗和视网膜植入物以恢复听力和视线。在手术后植入装置后,相邻的细胞与植入物相互作用并释放导致组织的吸引力,渗透的分子信号,以及与各种细胞类型的植入物附着,包括单核细胞,巨噬细胞和血小板。这些细胞释放出额外的信号分子(趋化因子和细胞因子),其将组织修复细胞募集到装置部位。一些植入物失败,需要额外的修订手术,这些手术是患者的创伤,并且对于付款人昂贵。本综述审查了证据支持纤维素和BMPS可以作为制造过程的一部分涂覆植入物的可能性的文献,使得蛋白质可以释放到植入物周围的组织中,提高成功植入速度。

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