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An important step towards a prevascularized islet microencapsulation device: in vivo prevascularization by combination of mesenchymal stem cells on micropatterned membranes

机译:建立血管前胰岛微囊化装置的重要步骤:通过在微图案化膜上结合间充质干细胞进行体内血管前血管化

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摘要

Extrahepatic transplantation of islets of Langerhans could aid in better survival of islets after transplantation. When islets are transfused into the liver 60-70% of them are lost immediately after transplantation. An important factor for a successful extrahepatic transplantation is a well-vascularized tissue surrounding the implant. There are many strategies known for enhancing vessel formation such as adding cells with endothelial potential, the combination with angiogenic factors and / or applying surface topography at the exposed surface of the device. Previously we developed porous, micropatterned membranes which can be applied as a lid for an islet encapsulation device and we showed that the surface topography induces human umbilical vein endothelial cell (HUVEC) alignment and interconnection. This was achieved without the addition of hydrogels, often used in angiogenesis assays. In this work, we went one step further towards clinical implementation of the device by combining this micropatterned lid with Mesenchymal Stem Cells (MSCs) to facilitate prevascularization in vivo. As for HUVECs, the micropatterned membranes induced MSC alignment and organization in vitro, an important contributor to vessel formation, whereas in vivo (subcutaneous rat model) they contributed to improved implant prevascularization. In fact, the combination of MSCs seeded on the micropatterned membrane induced the highest vessel formation score in 80% of the sections.
机译:胰岛的肝外移植可以帮助胰岛更好的存活。将胰岛输注到肝脏后,其中的60-70%会在移植后立即消失。成功进行肝外移植的重要因素是植入物周围血管良好的组织。已知有许多用于增强血管形成的策略,例如添加具有内皮潜能的细胞,与血管生成因子的结合和/或在设备的暴露表面施加表面形貌。以前,我们开发了多孔的,微图案的膜,可以用作胰岛封装设备的盖子,并且我们发现表面形貌诱导了人脐静脉内皮细胞(HUVEC)的排列和相互连接。无需添加通常用于血管生成分析的水凝胶即可实现这一目标。在这项工作中,我们通过将该微图案化的盖子与间充质干细胞(MSC)结合以促进体内的预血管形成,进一步朝着该装置的临床实施迈进了一步。至于HUVEC,微图案膜在体外诱导MSC排列和组织,这是血管形成的重要因素,而在体内(皮下大鼠模型),它们有助于改善植入物的血管形成。实际上,播种在微图案膜上的MSC组合在80%的切片中诱导了最高的血管形成评分。

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