我们的网站为什么显示成这样?

可能因为您的浏览器不支持样式,您可以更新您的浏览器到最新版本,以获取对此功能的支持,访问下面的网站,获取关于浏览器的信息:

|本期目录/Table of Contents|

体外构建工程化心肌组织的实验研究(PDF)

《心脏杂志》[ISSN:1009-7236/CN:61-1268/R]

期数:
2007年第4期
页码:
421-423/427
栏目:
基础研究
出版日期:
2007-08-01

文章信息/Info

Title:
Experimental study of engineered myocardial tissue in vitro
作者:
李军杰吕安林 刁繁荣苑媛张荣庆胡小菁
第四军医大学西京医院心内科,陕西 西安 710032
Author(s):
LI Junjie L Anlin DIAO Fanrong YUAN Yuan ZHANG Rongqing HU Xiaojing
Department of Cardiology, Xijing Hospital, Fourth Military Medical University, Xi′an 710032, Shaanxi, China
关键词:
新生大鼠原代心肌细胞胶原海绵工程化心肌组织
Keywords:
Neonatal rat primary cardiocytescollagen spongeengineered myocardial tissue
分类号:
R540.27
DOI:
-
文献标识码:
A
摘要:
目的 探索以胶原海绵为支架,新生大鼠原代心肌细胞为种子细胞,于体外构建工程化心肌组织。 方法 用胰酶消化法分离新生大鼠心肌细胞,经初步纯化,然后接种于长方形片状胶原海绵中,将此细胞/胶原复合物置于细胞培养箱中,培养25 d,采用常规苏木精-伊红(HE)染色、免疫组织化学染色和透射电子显微镜等方法评价该工程化心肌组织片的形态和功能。 结果 构建的工程化心肌组织片先是出现局部自发收缩,随时间延长,自发收缩区域增多、强度增大,整个心肌片出现同步收缩,此收缩活动可持续25 d。检测结果显示,工程化心肌组织内细胞间连接广泛存在,细胞多呈纵向分布,胞核呈长圆形;多数细胞胞浆内α肌节肌动蛋白阳性;细胞间连接清晰可辨,细胞内的肌原纤维排列整齐,可见到肌小节结构和Z线。 结论 用新生大鼠原代心肌细胞作为种子细胞、胶原海绵为支架,于体外可构建组织形态与生理功能类似于成熟大鼠心肌组织的工程化心肌组织。
Abstract:
AIM To construct engineered myocardial tissue (EMT) using collagen sponge and neonatal rat primary cardiomyocytes. METHODS Neonatal rat cardiocytes were isolated using 2.5 g/L trypsin solution, purified, added to the collagen sponge segment placed in the rectanglar well made of glass and cultured in the incubator. Microscopy, routine HE staining, immunohistochemical staining and transmission electron microscopy were applied to assess the EMTs. RESULTS Spontaneous beating areas in the EMTs were seen not long after seeding. More beating areas could be seen afterwards with beats becoming stronger and stronger. Synchronously beating of the EMTs were finally observed. HE staining and immunohistochemical analyses showed that cardiocytes distributed equally within the 3dimensional matrix, that intercellular contacts were very widespread and that the majority of the cardiocytes stretched in the EMTs. Immunohistochemical staining showed that αactins in most cardiocytes were positive. Transmission electron microscopy showed that intercellular contacts were tight, that the cells in the EMTs contained well arranged myofibrils paralleled to the longitudinal cell axis and that clearly defined sarcomeres and Z lines were observed. CONCLUSION Using collagen sponge and neonatal rat cardiocytes EMTs can successfully be constructed in vitro, the histological and physiological properties of which resemble native cardiac tissue.

参考文献/References

[1]Leor J, Amsalem Y, Cohen S. Cells, scaffolds, and molecules for myocardial tissue engineering[J]. Pharmacol Ther, 2005,105(2):151-163.

[2]Zimmermann WH, Didie M, Doker S, et al. Heart muscle engineering: an update on cardiac muscle replacement therapy[J]. Cardiovasc Res, 2006,71(3):419-429.

[3]Leor J, Landa N, Cohen S. Renovation of the injured heart with myocardial tissue engineering[J]. Expert Rev Cardiovasc Ther, 2006,4(2):239-252.

[4]常海霞,郑强荪. 体外构建工程化心肌片层的实验研究[J]. 心脏杂志, 2006,18(4):400-403.

[5]Zimmermann WH, Didie M, Wasmeier GH, et al. Cardiac grafting of engineered heart tissue in syngenic rats[J]. Circulation, 2002,106(12 suppl 1):I151-I157.

[6]Shimizu T, Sekine H, Isoi Y, et al. Longterm survival and growth of pulsatile myocardial tissue grafts engineered by the layering of cardiomyocyte sheets[J]. Tissue Eng, 2006,12(3):499-507.

[7]Eschenhagen T, Zimmermann WH. Engineering myocardial tissue[J]. Circ Res, 2005,97(12):1220-1231.

[8]Zimmermann WH, Melnychenko I, Wasmeier G, et al. Engineered heart tissue grafts improve systolic and diastolic function in infarcted rat hearts[J]. Nat Med, 2006,12(4):452-458.

[9]Guo XM, Zhao YS, Chang HX, et al. Creation of engineered cardiac tissue in vitro from mouse embryonic stem cells[J]. Circulation, 2006,113(18):2229-2237.

[10]Kofidis T, Akhyari P, Wachsmann B, et al. Clinically established hemostatic scaffold (tissue fleece) as biomatrix in tissue and organengineering research[J]. Tissue Eng, 2003,9(3):517-523.

备注/Memo

备注/Memo:
收稿日期:2006-12-07.通讯作者:吕安林,副主任医师,主要从事冠心病介入治疗研究Email: luanlin@fmmu.edu.cn 作者简介:李军杰,硕士生,医师Email:ltjie5@126.com
更新日期/Last Update: