Xue Jiao-jie, Wang Ye-song, Ma Hong, Hu Yuan, Cheng Kang-lin
Department of Cardiology, Sixth Affiliated Hospital of Sun Yat-sen University, Guangzhou 510655, China.
Zhonghua Xin Xue Guan Bing Za Zhi. 2010 Jul;38(7):638-43.
To observe the effects of mutant hypoxia-inducible factor-1α (HIF-1α) adenovirus (Adeno-HIF-1α-Ala402-Ala564) on cardiomyocytes (CMCs) differentiation from the mesenchymal stem cells (MSCs) co-cultured with CMCs.
Following groups were studied: HIF-1α group (MSCs + CMCs + Ad-HIF-1α), LacZ group (MSCs + CMCs + Ad-LacZ), Sham group (MSCs + CMCs + PBS) and MSC + HIF-1α Group (MSCs + Ad-HIF-1α). MSCs were co-cultured with myocardial cells in proportion of MSCs:CMCs 1:2, after 24 hours, cells were infect with virus (MOI = 100) or treated with PBS, cardiac troponin (cTnT) expression in MSCs was detected 7 days post infection by immunochemical analysis, mRNA expression of HIF-1α, TGF-β(1), Smad4, NKx2.5, GATA-4 was also detected by RT-PCR.
HIF-1α increased MSCs differentiation to myocardial cells (differentiation rate 32.68% ± 6.52% vs. 8.28% ± 0.09% in the LacZ group and 10.25% ± 2.20% in the Sham group and 0.32% ± 0.05% in the MSC group (all P < 0.05 vs. HIF-1α group). mRNA expression of HIF, TGF-β(1), Smad4, NKx2.5 and GATA-4 was also significantly upregulated in HIF-1α group all P < 0.05 vs. Sham group).
HIF-1α promoted MSCs, co-cultured with myocardial cells, differentiating to cardiomyocytes via upregulating TGF-β(1)/Smad4 signaling pathway.
观察突变型缺氧诱导因子-1α(HIF-1α)腺病毒(腺病毒-HIF-1α-Ala402-Ala564)对与心肌细胞共培养的间充质干细胞(MSCs)向心肌细胞分化的影响。
研究以下几组:HIF-1α组(MSCs+心肌细胞+腺病毒-HIF-1α)、LacZ组(MSCs+心肌细胞+腺病毒-LacZ)、假手术组(MSCs+心肌细胞+PBS)和MSC+HIF-1α组(MSCs+腺病毒-HIF-1α)。将MSCs与心肌细胞按MSCs:心肌细胞1:2的比例共培养,24小时后,细胞用病毒(MOI=100)感染或用PBS处理,感染后7天通过免疫化学分析检测MSCs中肌钙蛋白(cTnT)的表达,同时通过RT-PCR检测HIF-1α、TGF-β(1)、Smad4、NKx2.5、GATA-4的mRNA表达。
HIF-1α增加了MSCs向心肌细胞的分化(分化率为32.68%±6.52%,LacZ组为8.28%±0.09%,假手术组为10.25%±2.20%,MSC组为0.32%±0.05%(与HIF-1α组相比,均P<0.05)。HIF-1α组中HIF、TGF-β(1)、Smad4、NKx2.5和GATA-4的mRNA表达也显著上调(与假手术组相比,均P<0.05)。
HIF-1α通过上调TGF-β(1)/Smad4信号通路促进与心肌细胞共培养的MSCs向心肌细胞分化。