部分脱细胞作为改善心脏组织植入物生物相容性的一种方法。

Current health sciences journal Pub Date : 2023-07-01 Epub Date: 2023-09-30 DOI:10.12865/CHSJ.49.03.07
Mihai Meșină, Ion Mîndrilă, Mihaela Iustina Meșină-Botoran, Laura Andreea Mîndrilă, Ionica Pirici
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引用次数: 0

摘要

通过组织工程提高一些生物植入物的生物相容性对于再生医学来说非常重要,而再生医学近来发展迅速。在这项研究中,我们分别使用十二烷基硫酸钠(SLS)、脱氧胆酸钠(SD)和生理盐水(Sa)三种不同的清洗方案,对 Wistar 大鼠心脏 2-3 毫米厚的横截面进行了部分脱细胞处理。对心脏组织切片进行组织学分析以评估脱细胞过程,或将其植入 9 天大的小鸡胚胎绒毛膜(CAM)上 5 天,然后进行组织学分析以评估 CAM 与植入物之间的相互作用。对 SLS 或 SD 水洗组织的组织学分析显示了脱细胞过程的不同显微特征,SLS 水洗导致心脏组织外围形成完全脱细胞的 ECM 层。两种洗涤剂都会导致心脏组织胶原纤维的空间排列发生变化。对 CAM 植入物的组织学分析表明,SLS 诱导的完全脱细胞外围区域有利于血管新生和细胞迁移,从而提高了心脏组织植入物的生物相容性。这些结果表明,心脏组织植入物的生物相容性可以通过适当使用基于 SLS 的脱细胞方案来调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Partial Decellularization as a Method to Improve the Biocompatibility of Heart Tissue Implants.

Increasing the biocompatibility of some biological implants through tissue engineering is important for regenerative medicine, which recently has a rapid development dynamic. In this study we used tree different washing protocols, respectively with Sodium Lauryl Sulfate (SLS), with Sodium Deoxycholate (SD), and with saline (Sa) to achieve partial decellularization of 2-3mm thick cross-sections through Wistar rat hearts. Pieces of the heart tissue were either histologically analyzed to evaluate the decellularization processes or implanted for 5 days on 9-day-old chick embryo chorioallantoic membrane (CAM) and then histologically analyzed to evaluate CAM-implant interactions. Histological analysis of SLS or SD washed tissues showed different microscopic features of the decellularization processes, SLS-washing leading to the formation of a completely decellularized ECM layer at the periphery of the heart tissue. Both detergents induced changes in the spatial arrangement of collagen fibers of the heart tissue. Histological analysis of the CAM implants shoved that the peripheral zone with complete decellularization induced by SLS increased the biocompatibility of heart tissue implants by favoring neovascularization and cell migration. These results suggested that the biocompatibility of the heart tissue implant can be modulated by the appropriate use of a SLS-based decellularization protocol.

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