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首页> 外文期刊>International Journal of Molecular Sciences >In Situ Forming Gelatin Hydrogels-Directed Angiogenic Differentiation and Activity of Patient-Derived Human Mesenchymal Stem Cells
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In Situ Forming Gelatin Hydrogels-Directed Angiogenic Differentiation and Activity of Patient-Derived Human Mesenchymal Stem Cells

机译:原位形成明胶水凝胶定向血管生成的分化和患者源性人间充质干细胞的活性。

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摘要

Directing angiogenic differentiation of mesenchymal stem cells (MSCs) still remains challenging for successful tissue engineering. Without blood vessel formation, stem cell-based approaches are unable to fully regenerate damaged tissues due to limited support for cell viability and desired tissue/organ functionality. Herein, we report in situ cross-linkable gelatin?hydroxyphenyl propionic acid (GH) hydrogels that can induce pro-angiogenic profiles of MSCs via purely material-driven effects. This hydrogel directed endothelial differentiation of mouse and human patient-derived MSCs through integrin-mediated interactions at the cell-material interface, thereby promoting perfusable blood vessel formation in vitro and in vivo. The causative roles of specific integrin types (α 1 and α v β 3 ) in directing endothelial differentiation were verified by blocking the integrin functions with chemical inhibitors. In addition, to verify the material-driven effect is not species-specific, we confirmed in vitro endothelial differentiation and in vivo blood vessel formation of patient-derived human MSCs by this hydrogel. These findings provide new insight into how purely material-driven effects can direct endothelial differentiation of MSCs, thereby promoting vascularization of scaffolds towards tissue engineering and regenerative medicine applications in humans.
机译:指导间充质干细胞(MSCs)的血管生成分化仍然是成功的组织工程挑战。没有血管形成,基于干细胞的方法由于对细胞活力和所需组织/器官功能的支持有限而无法完全再生受损的组织。在这里,我们报告原位可交联的明胶?羟苯基丙酸(GH)水凝胶,可以通过纯粹的材料驱动作用诱导MSCs的促血管生成特性。这种水凝胶通过整合素介导的细胞-材料界面相互作用,指导小鼠和人类患者来源的MSC的内皮分化,从而促进了体内和体外灌注血管的形成。通过用化学抑制剂阻断整联蛋白功能,证实了特定整联蛋白类型(α1和αvβ3)在指导内皮细胞分化中的原因。另外,为了验证材料驱动的作用不是物种特异性的,我们证实了这种水凝胶对患者来源的人类MSCs的体外内皮细胞分化和体内血管形成的作用。这些发现为纯物质驱动的作用如何指导MSC的内皮细胞分化,从而促进支架的血管形成向组织工程和人类再生医学的应用提供了新的见解。

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