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利用体外培养的胎儿肾细胞再生肾组织。

Regeneration of kidney tissue using in vitro cultured fetal kidney cells.

作者信息

Kim Sang Soo, Gwak So Jung, Han Joungho, Park Moon Hyang, Song Kang Won, Kim Byung Soo

机构信息

Department of Bioengineering, Hanyang University, Seoul 133-791, Korea.

出版信息

Exp Mol Med. 2008 Aug 31;40(4):361-9. doi: 10.3858/emm.2008.40.4.361.

Abstract

Transplanting fetal kidney cells (FKCs) can regenerate kidney. This requires in vitro expansion in cell number to acquire enough cells for transplantation. However, FKCs may change their cellular characteristics during expansion and, thus, may not regenerate kidney tissue upon transplantation. We investigated how cell culture period affects cellular characteristics and in vivo regenerative potential of FKCs. As the passage number increased, cell growth rate and colony forming ability decreased while senescence and apoptosis increased. To examine in vivo regenerative potential, FKCs cultured through different numbers of passages were implanted into the parenchyma of kidneys of immunodeficient mice using fibrin gel for 4 wk. Histological analyses showed passage-dependent kidney tissue regeneration, and the regeneration was better when cells from lower number of passages were implanted. This result shows that in vitro culture of FKCs significantly affects the cell characteristics and in vivo tissue regenerative potential.

摘要

移植胎肾细胞(FKCs)可使肾脏再生。这需要在体外扩增细胞数量,以获得足够的细胞用于移植。然而,FKCs在扩增过程中可能会改变其细胞特性,因此在移植后可能无法再生肾组织。我们研究了细胞培养时间如何影响FKCs的细胞特性和体内再生潜力。随着传代次数的增加,细胞生长速率和集落形成能力下降,而衰老和凋亡增加。为了检测体内再生潜力,将经过不同传代次数培养的FKCs用纤维蛋白凝胶植入免疫缺陷小鼠肾脏实质中4周。组织学分析显示了传代依赖性的肾组织再生,植入传代次数较少的细胞时再生效果更好。这一结果表明,FKCs的体外培养显著影响细胞特性和体内组织再生潜力。

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本文引用的文献

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Improvement of kidney failure with fetal kidney precursor cell transplantation.胎儿肾前体细胞移植改善肾衰竭
Transplantation. 2007 May 15;83(9):1249-58. doi: 10.1097/01.tp.0000261712.93299.a6.
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Developmental approaches to kidney tissue engineering.
Am J Physiol Renal Physiol. 2004 Jan;286(1):F1-7. doi: 10.1152/ajprenal.00167.2003.
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The serial cultivation of human diploid cell strains.人二倍体细胞株的连续培养。
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