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通过心肌细胞片层堆叠构建的搏动性心肌组织移植物的长期存活与生长

Long-term survival and growth of pulsatile myocardial tissue grafts engineered by the layering of cardiomyocyte sheets.

作者信息

Shimizu Tatsuya, Sekine Hidekazu, Isoi Yuki, Yamato Masayuki, Kikuchi Akihiko, Okano Teruo

机构信息

Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University, Tokyo, Japan.

出版信息

Tissue Eng. 2006 Mar;12(3):499-507. doi: 10.1089/ten.2006.12.499.

Abstract

Recently researchers have attempted to bioengineer three-dimensional (3-D) myocardial tissues using cultured cells in order to repair damaged hearts. In contrast to the conventional approach of seeding cells onto 3-D biodegradable scaffolds, we have explored a novel technology called cell sheet engineering, which layers cell sheets to construct functional tissue grafts. In this study, in vivo survival, function, and morphology of myocardial tissue grafts were examined. Neonatal rat cardiomyocytes were noninvasively harvested as contiguous cell sheets from temperature-responsive culture dishes simply by reducing the culture temperature. Cardiomyocyte sheets were then layered and transplanted into the subcutaneous tissues of athymic rats. The microvasculature of the grafts was rapidly organized within a few days with macroscopic graft beatings observed 3 days after transplantation and preserved up to one year. Size, conduction velocity, and contractile force of transplanted grafts increased in proportion to the host growth. Histological studies showed characteristic structures of heart tissue, including elongated cardiomyocytes, well-differentiated sarcomeres, and gap junctions within the grafts. In conclusion, long-term survival and growth of pulsatile myocardial tissue grafts fabricated by layering cell sheets were confirmed, demonstrating that myocardial tissue regeneration based on cell sheet engineering may prove useful for permanent myocardial tissue repair.

摘要

最近,研究人员试图利用培养的细胞对三维(3-D)心肌组织进行生物工程改造,以修复受损心脏。与将细胞接种到3-D可生物降解支架上的传统方法不同,我们探索了一种名为细胞片工程的新技术,该技术通过堆叠细胞片来构建功能性组织移植物。在本研究中,对心肌组织移植物的体内存活、功能和形态进行了检查。仅通过降低培养温度,就可从温度响应培养皿中无创收获新生大鼠心肌细胞,形成连续的细胞片。然后将心肌细胞片堆叠起来,移植到无胸腺大鼠的皮下组织中。移植后3天可观察到移植物出现宏观搏动,且在几天内迅速形成微血管系统,并维持长达一年。移植移植物的大小、传导速度和收缩力随宿主生长而增加。组织学研究显示移植物内具有心脏组织的特征结构,包括伸长的心肌细胞、分化良好的肌节和缝隙连接。总之,证实了通过堆叠细胞片制造的搏动性心肌组织移植物能够长期存活和生长,表明基于细胞片工程的心肌组织再生可能对永久性心肌组织修复有用。

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