Lee Sang Hun, Lee Jun Hee, Han Yong-Seok, Ryu Jung Min, Yoon Yeo Min, Han Ho Jae
Medical Science Research Institute, Soonchunhyang University Seoul Hospital, Seoul, 140-743, Republic of Korea.
Department of Biochemistry, Soonchunhyang University College of Medicine, Cheonan, 330-930, Republic of Korea.
Stem Cell Res Ther. 2015 Jul 29;6(1):139. doi: 10.1186/s13287-015-0128-8.
Endothelial colony-forming cells (ECFCs) significantly improve tissue repair by providing regeneration potential within injured cardiovascular tissue. However, ECFC transplantation into ischemic tissue exhibits limited therapeutic efficacy due to poor engraftment in vivo. We established an adequate ex vivo expansion protocol and identified novel modulators that enhance functional bioactivities of ECFCs.
To augment the regenerative potential of ECFCs, functional bioactivities of hypoxia-preconditioned ECFCs (hypo-ECFCs) were examined.
Phosphorylations of the JAK2/STAT3 pathway and clonogenic proliferation were enhanced by short-term ECFC culturing under hypoxia, whereas siRNA-targeting of STAT3 significantly reduced these activities. Expression of BCL3, a target molecule of STAT3, was increased in hypo-ECFCs. Moreover, siRNA inhibition of BCL3 markedly reduced survival of ECFCs during hypoxic stress in vitro and ischemic stress in vivo. In a hindlimb ischemia model of ischemia, hypo-ECFC transplantation enhanced blood flow ratio, capillary density, transplanted cell proliferation and survival, and angiogenic cytokine secretion at ischemic sites.
Hypoxia preconditioning facilitates functional bioactivities of ECFCs by mediating regulation of the STAT3-BCL3 axis. Thus, a hypoxic preconditioned ex vivo expansion protocol triggers expansion and functional bioactivities of ECFCs via modulation of the hypoxia-induced STAT3-BCL3 axis, suggesting that hypo-ECFCs offer a therapeutic strategy for accelerated neovasculogenesis in ischemic diseases.
内皮祖细胞(ECFCs)通过为受损心血管组织提供再生潜能,显著改善组织修复。然而,由于在体内植入效果不佳,将ECFCs移植到缺血组织中的治疗效果有限。我们建立了一种合适的体外扩增方案,并鉴定出可增强ECFCs功能生物活性的新型调节剂。
为增强ECFCs的再生潜能,检测了缺氧预处理的ECFCs(hypo-ECFCs)的功能生物活性。
在缺氧条件下短期培养ECFCs可增强JAK2/STAT3信号通路的磷酸化和克隆增殖,而靶向STAT3的小干扰RNA(siRNA)显著降低了这些活性。STAT3的靶分子BCL3在hypo-ECFCs中的表达增加。此外,siRNA抑制BCL3显著降低了体外缺氧应激和体内缺血应激期间ECFCs的存活率。在缺血后肢模型中,hypo-ECFCs移植提高了缺血部位的血流比率、毛细血管密度、移植细胞的增殖和存活以及血管生成细胞因子的分泌。
缺氧预处理通过介导STAT3-BCL3轴的调节促进ECFCs的功能生物活性。因此,缺氧预处理的体外扩增方案通过调节缺氧诱导的STAT3-BCL3轴触发ECFCs的扩增和功能生物活性,提示hypo-ECFCs为缺血性疾病中加速新生血管形成提供了一种治疗策略。