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PMID: 24496821 Published · ppublish English

Comparison of multipotency and molecular profile of MSCs between CKD and healthy rats.

Human cell ·Vol. 27 ·No. 2 ·2014-09-25

Yamada Akifumi, Yokoo Takashi, Yokote Shinya, Yamanaka Shuichiro, Izuhara Luna, Katsuoka Yuichi, Shimada Yohta, Shukuya Akinori, Okano Hirotaka James, Ohashi Toya, Ida Hiroyuki

Abstract

We previously showed that mesenchymal stem cells (MSCs) can differentiate into a functional miniature kidney, suggesting that MSCs may be a cell source for kidney regeneration. However, MSCs from long-term dialysis patients, which have been exposed to uremic toxin, can exhibit reduced viability. Therefore, the aim of this study was to examine the gene expression profiles and differentiation capabilities of bone marrow- and adipose-derived MSCs from chronic kidney disease (CKD) model rats. CKD was induced in rats by adenine feeding, and then MSCs were isolated from bone marrow (BMSCs) and adipose tissue (ASCs). After confirming MSC surface marker expression, comprehensive gene expression profiles were obtained by RT-PCR array. MSCs were differentiated into adipocytes, osteoblasts, and chondrocytes, and histological and/or functional assays were performed. Tgfb3 expression was up-regulated, while Bmp6, Gdf15, Mmp2, and Vegfa were down-regulated in CKD-ASCs compared with Control-ASCs. There were no significant differences in the gene expression of stemness markers, and the morphology of cells that underwent adipogenesis, osteogenesis, and chondrogenesis, or GPDH activity between CKD and control groups. Comparing BMSCs with ASCs, gene expression of Bglap, Bmp4, Igf1, Itgax, Pparg, Ptprc, and Tnf were up-regulated, while Col1a1, Mmp2, Sox9, and Vegfa were down-regulated in both CKD and control groups. Uremic toxin in CKD rats had a small effect on the gene expression and differentiation of MSCs. However, long-term exposure to uremic toxin and the differences in gene expression of MSCs derived from bone marrow or adipose tissue may affect renal regeneration.

Article Info
Journal
Human cell
Abbr.
Hum Cell
Published
2014-09-25
Indexed
2014-03-25
Updated
2014-03-25
Language
English
Country/Region
Japan
NLM ID
8912329
Analysis Services
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