绵羊心脏祖细胞的分离、表征和空间分布。

X. Hou, N. Appleby, Tania I. Fuentes, L. Longo, L. Bailey, N. Hasaniya, M. Kearns-Jonker
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引用次数: 31

摘要

背景:实验室大型动物模型对于建立干细胞疗法的有效性非常重要,可能会转化为临床应用。绵羊和人类心血管系统的相似性为利用羊作为大型动物模型来优化基于细胞的心脏治疗提供了机会。最近在人类中使用内源性心血管祖细胞的临床试验报告了干细胞治疗后心功能的显著改善。然而,到目前为止,内源性心血管祖细胞尚未从羊心脏中分离出来。方法采用流式细胞术分离表达SSEA-4、CD105和c-kit的新生绵羊右心房血管细胞,并进行克隆。通过PCR检测克隆细胞中GATA-4、c-kit和Isl1的表达。采用免疫组化染色法比较胎羊、新生羊和成年羊的右耳、右心房、左心室和心尖组织中SSEA-4阳性细胞的数量。并比较了胎羊、妊娠羊和非妊娠羊中SSEA4+细胞的数量。结果绵羊心脏祖细胞亚群为CD105+SSEA-4+c-kit+Isl1+GATA-4+细胞、CD105+SSEA-4+c-kit+Isl1+GATA-4细胞、CD105+SSEA-4-c-kit-Isl1+GATA-4细胞和CD105+SSEA-4-c-kit+Isl1+GATA-4细胞。SSEA-4的免疫组化染色显示,标记细胞在胎心右心房最丰富,在右心房可以发现祖细胞的龛位。结论测定了绵羊心脏祖细胞的表型和分布。绵羊内源性心脏祖细胞克隆的可行性将为优化绵羊心脏修复模型的条件提供宝贵的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation, Characterization, and Spatial Distribution of Cardiac Progenitor Cells in the Sheep Heart.
BACKGROUND Laboratory large animal models are important for establishing the efficacy of stem cell therapies that may be translated into clinical use. The similarity of ovine and human cardiovascular systems provides an opportunity to use the sheep as a large animal model in which to optimize cell-based treatments for the heart. Recent clinical trials in humans using endogenous cardiovascular progenitor cells report significant improvement in cardiac function following stem cell-based therapy. To date, however, endogenous cardiovascular progenitor cells have not been isolated from the sheep heart. METHODS Cardiovascular cells expressing SSEA-4, CD105 and c-kit were isolated by flow cytometry and cloned from the right atrium of neonatal sheep. The expression of GATA-4, c-kit, and Isl1 was identified by PCR in the cloned cells. Immunohistochemical staining was used to compare the number of SSEA-4 positive cells in the right auricle, right atrium, left ventricle and the apex of the heart of fetal, neonatal and adult sheep. The number of SSEA4+cells was also compared in fetal, pregnant and non-pregnant adult sheep. RESULTS Four distinct cardiac progenitor cell sub-populations were identified in sheep, including CD105+SSEA-4+c-kit+Isl1+GATA-4+cells, CD105+SSEA-4+c-kit+Isl1+GATA-4-cells, CD105+SSEA-4-c-kit-Isl1+GATA-4-cells, and CD105+SSEA-4-c-kit+Isl1+GATA-4-cells. Immunohistochemical staining for SSEA-4 showed that labeled cells were most abundant in the right atrium of fetal hearts where niches of progenitor cells could be identified. CONCLUSION We determined the phenotype and distribution of cardiac progenitor cells in the sheep heart. The availability of cloned endogenous cardiac progenitor cells from sheep will provide a valuable resource for optimizing the conditions for cardiac repair in the ovine model.
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