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丁酸和视黄酸的透明质酸混合酯可驱动足月胎盘人间充质干细胞向心脏和内皮细胞命运分化,并增强梗死大鼠心脏的心脏修复能力。

Hyaluronan mixed esters of butyric and retinoic Acid drive cardiac and endothelial fate in term placenta human mesenchymal stem cells and enhance cardiac repair in infarcted rat hearts.

作者信息

Ventura Carlo, Cantoni Silvia, Bianchi Francesca, Lionetti Vincenzo, Cavallini Claudia, Scarlata Ignazio, Foroni Laura, Maioli Margherita, Bonsi Laura, Alviano Francesco, Fossati Valentina, Bagnara Gian Paolo, Pasquinelli Gianandrea, Recchia Fabio A, Perbellini Alberto

机构信息

Laboratory of Molecular Biology and Stem Cell Engineering, Institute of Cardiology, National Institute of Biostructures and Biosystems, University of Bologna, Bologna, Italy.

出版信息

J Biol Chem. 2007 May 11;282(19):14243-52. doi: 10.1074/jbc.M609350200. Epub 2007 Mar 15.

Abstract

We have developed a mixed ester of hyaluronan with butyric and retinoic acid (HBR) that acted as a novel cardiogenic/vasculogenic agent in human mesenchymal stem cells isolated from bone marrow, dental pulp, and fetal membranes of term placenta (FMhMSCs). HBR remarkably enhanced vascular endothelial growth factor (VEGF), KDR, and hepatocyte growth factor (HGF) gene expression and the secretion of the angiogenic, mitogenic, and antiapoptotic factors VEGF and HGF, priming stem cell differentiation into endothelial cells. HBR also increased the transcription of the cardiac lineage-promoting genes GATA-4 and Nkx-2.5 and the yield of cardiac markerexpressing cells. These responses were notably more pronounced in FMhMSCs. FMhMSC transplantation into infarcted rat hearts was associated with increased capillary density, normalization of left ventricular function, and significant decrease in scar tissue. Transplantation of HBR-preconditioned FMhM-SCs further enhanced capillary density and the yield of human vWF-expressing cells, additionally decreasing the infarct size. Some engrafted, HBR-pretreated FMhMSCs were also positive for connexin 43 and cardiac troponin I. Thus, the beneficial effects of HBR-exposed FMhMSCs may be mediated by a large supply of angiogenic and antiapoptotic factors, and FMhMSC differentiation into vascular cells. These findings may contribute to further development in cell therapy of heart failure.

摘要

我们研发了一种透明质酸与丁酸和视黄酸的混合酯(HBR),它在从骨髓、牙髓和足月胎盘胎膜(FMhMSCs)分离的人间充质干细胞中作为一种新型的心脏发生/血管发生剂发挥作用。HBR显著增强血管内皮生长因子(VEGF)、KDR和肝细胞生长因子(HGF)基因表达以及血管生成、促有丝分裂和抗凋亡因子VEGF和HGF的分泌,促使干细胞分化为内皮细胞。HBR还增加了促进心脏谱系的基因GATA - 4和Nkx - 2.5的转录以及表达心脏标志物的细胞产量。这些反应在FMhMSCs中尤为明显。将FMhMSCs移植到梗死的大鼠心脏中可增加毛细血管密度、使左心室功能正常化并显著减少瘢痕组织。移植经HBR预处理的FMhM - SCs可进一步提高毛细血管密度和表达人血管性血友病因子(vWF)的细胞产量,还可减小梗死面积。一些植入的、经HBR预处理的FMhMSCs对连接蛋白43和心肌肌钙蛋白I也呈阳性。因此,暴露于HBR的FMhMSCs的有益作用可能由大量血管生成和抗凋亡因子以及FMhMSC向血管细胞的分化介导。这些发现可能有助于心力衰竭细胞治疗的进一步发展。

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