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缺氧预处理间充质干细胞构建的 PLGA 基生物人工肝血管化用于皮下异种胰岛移植。

Vascularization of PLGA-based bio-artificial beds by hypoxia-preconditioned mesenchymal stem cells for subcutaneous xenogeneic islet transplantation.

机构信息

Xenotransplantation Research Center, Seoul National University College of Medicine, Seoul, Korea.

Department of Microbiology and Immunology, Seoul National University College of Medicine, Seoul, Korea.

出版信息

Xenotransplantation. 2019 Jan;26(1):e12441. doi: 10.1111/xen.12441. Epub 2018 Jul 28.

Abstract

BACKGROUND

Subcutaneous tissue is an attractive extra-hepatic heterotopic site for islet transplantation; however, poor oxygen tension and blood supply during early engraftment of implanted islets have limited the use of this site in clinical applications.

METHODS

This study investigated the vascularization potential of hypoxia-preconditioned mesenchymal stem cells (3% O ; hypo-MSCs) in PLGA-based bio-artificial beds for subsequent subcutaneous islet transplantation. Sheet-typed polymeric PLGA scaffolds coated with hypo-MSCs or normo-MSCs (MSCs cultured under normoxia conditions, 21% O ) were implanted subcutaneously in mice.

RESULTS

Compared to normo-MSCs, hypo-MSCs significantly enhanced vasculogenesis, both on the interior and exterior surfaces of the implanted PLGA devices, which peaked 4 weeks after implantation. Further, infusion of porcine islets inside the prevascularized PLGA bed restored normal glycemic control in 6 of 6 STZ-induced diabetic mice. The mass of the marginal islet was approximately 2000 IEQs, which is comparable to that required for the renal subcapsular space, a highly vascularized site.

CONCLUSIONS

Therefore, PLGA-based bio-artificial devices prevascularized with hypo-MSCs could be a useful modality for successful subcutaneous islet transplantation, which is of high clinical relevance.

摘要

背景

皮下组织是胰岛移植的一种有吸引力的肝外异位部位;然而,植入的胰岛早期在移植时氧气张力和血液供应较差,限制了该部位在临床应用中的使用。

方法

本研究探讨了缺氧预处理间充质干细胞(3% O ;hypo-MSCs)在基于 PLGA 的生物人工床中的血管生成潜力,用于随后的皮下胰岛移植。将涂有 hypo-MSCs 或 normo-MSCs(在常氧条件下培养的 MSC,21% O )的片状聚合物 PLGA 支架植入小鼠皮下。

结果

与 normo-MSCs 相比,hypo-MSCs 显著增强了植入 PLGA 装置内外表面的血管生成,在植入后 4 周达到峰值。此外,在血管化的 PLGA 床内输注猪胰岛可使 6 只 STZ 诱导的糖尿病小鼠中的 6 只恢复正常血糖控制。边缘胰岛的质量约为 2000IEQs,与高度血管化的肾被膜下空间所需的质量相当。

结论

因此,用 hypo-MSCs 预血管化的基于 PLGA 的生物人工装置可能是成功进行皮下胰岛移植的有效方法,这具有很高的临床相关性。

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