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首页> 外文期刊>Journal of biomedical materials research, Part A >The effect of adherens junction components on keratinocyte adhesion in vitro: Potential implications for sealing the skin-implant interface of intraosseous transcutaneous amputation prostheses
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The effect of adherens junction components on keratinocyte adhesion in vitro: Potential implications for sealing the skin-implant interface of intraosseous transcutaneous amputation prostheses

机译:粘附连接成分对体外角质形成细胞粘附的影响:封闭骨内经皮截肢假体的皮肤-植入物界面的潜在影响

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摘要

Amputation places a significant burden on healthcare systems worldwide as patients suffer life-long complications associated with the stump-socket interface. Skin penetrating, osseointegrated implants like intraosseous transcutaneous amputation prostheses, could overcome this, however, they rely on the formation and maintenance of an infection-free seal at the skin-implant interface. Epithelial cell migration around transcutaneous implants creates downgrowth, which leads to infection and implant failure. Epithelial cells form cell-cell attachments via adherens junctions and desmosomes that prevent cell migration via contact inhibition. If epithelial cells formed cell-cell attachments with an implant surface, it could facilitate stronger cell attachment and prevent downgrowth. In adherens junctions, E-cadherin is essential in homotypic cell attachment. In this study, we have demonstrated that cell-cell adherens junctions can be formed on substrates adsorbed with E-cadherin. We have assessed the effects of two E-cadherin peptides and determined an optimal concentration for increasing cell attachment via adherens junctions. We have demonstrated that adsorption of 15 μg/mL of the full extracellular domain of E-cadherin to titanium alloy significantly increases metabolic activity, cell area, and attachment of murine keratinocytes in vitro, with a fourfold increase in attachment via adherens junctions at 24, 48, and 72 h.
机译:截肢术给全世界的医疗保健系统带来了沉重负担,因为患者会遭受与树桩-插槽接口相关的终生并发症。诸如骨内经皮截肢假体这样的穿透皮肤的骨整合植入物可以克服这一问题,但是,它们依赖于在皮肤-植入物界面处形成和维持无感染的密封。经皮植入物周围的上皮细胞迁移会导致生长下降,从而导致感染和植入物失效。上皮细胞通过粘附连接和桥粒形成细胞-细胞附着,从而阻止细胞通过接触抑制迁移。如果上皮细胞与植入物表面形成细胞-细胞附着,则可以促进更牢固的细胞附着并防止下垂。在粘附连接中,E-钙粘着蛋白在同型细胞附着中必不可少。在这项研究中,我们已经证明可以在吸附有E-cadherin的基质上形成细胞-细胞粘附连接。我们已经评估了两种E-钙粘蛋白肽的作用,并确定了通过粘附连接增加细胞附着的最佳浓度。我们已经证明,在钛合金中吸附15μg/ mL的E-钙粘蛋白的完整细胞外结构域会显着增加体外的代谢活性,细胞面积和鼠角质形成细胞的附着,并且在24, 48和72小时。

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