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采用可生物降解聚酯设计 3D 排列心肌组织构建体。

Design of a 3D aligned myocardial tissue construct from biodegradable polyesters.

机构信息

METU, BIOMAT, Department of Biological Sciences, Biotechnology Research Unit, 06531, Ankara, Turkey.

出版信息

J Mater Sci Mater Med. 2010 Mar;21(3):989-97. doi: 10.1007/s10856-009-3917-8. Epub 2009 Oct 29.

Abstract

The heart does not regenerate new functional tissue when myocardium dies following coronary artery occlusion, or if it is defective. Ventricular restoration involves excising the infarct and replacing it with a cardiac patch to restore the heart to a more healthy condition. The goal of this study was to design and develop a clinically applicable myocardial patch to replace myocardial infarcts and improve long-term heart function. A basic design composed of 3D microfibrous mats that house mesenchymal stem cells (MSCs) was developed from human umbilical cord matrix (Wharton's Jelly) cells aligned in parallel to each other mimicking the native myocardium. Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV), poly(L-D,L-lactic acid) (P(L-D,L)LA) and poly(glycerol sebacate) (PGS) were blended and electrospun into aligned fiber mats with fiber diameter ranging between 1.10 and 1.25 microm. The micron-sized parallel fibers of the polymer blend were effective in cell alignment and cells have penetrated deep within the mat through the fiber interstices, occupying the whole structure; 8-9 cell layers were obtained. Biodegradable macroporous tubings were introduced to serve as nutrient delivery route. It was possible to create a thick myocardial patch with structure similar to the native tissue and with a capability to grow.

摘要

当心肌梗塞后或存在缺陷时,心脏不会再生新的功能组织。心室修复术包括切除梗塞部位并用心脏补片来修复心脏,使其恢复到更健康的状态。本研究旨在设计和开发一种临床应用的心肌补片,以替代心肌梗塞并改善长期心脏功能。一种由 3D 微纤维垫组成的基本设计,其中包含排列成与天然心肌相似的平行纤维的人脐带基质(Wharton's Jelly)细胞来源的间充质干细胞(MSCs)。聚(3-羟基丁酸-co-3-羟基戊酸)(PHBV)、聚(L-丙交酯-co-乙交酯)(P(L-D,L)LA)和聚(甘油琥珀酸酯)(PGS)被混合并电纺成具有 1.10 至 1.25 微米纤维直径的纤维排列的纤维垫。聚合物共混物的微米级平行纤维可有效排列细胞,细胞通过纤维间隙深入到垫子内部,占据整个结构;获得了 8-9 个细胞层。可生物降解的大孔管被引入作为营养输送途径。有可能创建具有类似于天然组织的结构且具有生长能力的厚心肌补片。

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