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首页> 外文期刊>Biomacromolecules >Blended Nanostructured Degradable Mesh with Endometrial Mesenchymal Stem Cells Promotes Tissue Integration and Anti-Inflammatory Response in Vivo for Pelvic Floor Application
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Blended Nanostructured Degradable Mesh with Endometrial Mesenchymal Stem Cells Promotes Tissue Integration and Anti-Inflammatory Response in Vivo for Pelvic Floor Application

机译:具有子宫内膜间充质干细胞的混合纳米结构可降解网状物促进体内组织积分和抗炎反应用于骨盆底

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摘要

The current urogynecological clinical meshes trigger unfavorable foreign body response which leads to graft failure in the long term. To overcome the present challenge, we applied a tissue engineering strategy using endometrial SUSD2+ mesenchymal stem cells (eMSCs) with high regenerative properties. This study delves deeper into foreign body response to SUSD2+ eMSC based degradable PLACL/gelatin nanofiber meshes using a mouse model targeted at understanding immunomodulation and mesh integration in the long term. Delivery of cells with nanofiber mesh provides a unique topography that enables entrapment of therapeutic cells for up to 6 weeks that promotes substantial cellular infiltration of host anti-inflammatory macrophages. As a result, degradation rate and tissue integration are highly impacted by eMSCs, revealing an unexpected level of implant integration over 6 weeks in vivo. From a clinical perspective, such immunomodulation may aid in overcoming the current challenges and provide an alternative to an unmet women's urogynecological health need.
机译:目前的尿合术临床网格引发了不利的异物反应,从长远来看导致移植物失效。为了克服目前的挑战,我们使用具有高再生性能的子宫内膜SUSD2 +间充质干细胞(EMSCs)来应用组织工程策略。本研究深入地利用在长期理解免疫调节和网格集成上的小鼠模型对Susd2 + Emsc基于基于Dropable Plasl / Gelatin纳米纤维网的异物反应。用纳米纤维网递送细胞提供独特的形貌,其能够捕获治疗细胞长达6周,促进宿主抗炎巨噬细胞的大量细胞渗透。结果,降解率和组织积分受到EMSCs的高度影响,在体内揭示了6周内植入物整合的意外水平。从临床的角度来看,这种免疫调节可能有助于克服目前的挑战,并为未满足的女性胞质健康状况提供替代方案。

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