Department of Surgery, Asahikawa Medical University, 2-1 Midorigaoka-Higashi, Asahikawa, Hokkaido, Japan.
Antioxid Redox Signal. 2011 Oct 15;15(8):2109-20. doi: 10.1089/ars.2010.3714. Epub 2011 Jun 14.
Angiogenesis is regulated by the local balance between angiogenic stimulators and inhibitors and is maintained by muscle-derived angiogenic factors in ischemic tissues.
Our objectives were to investigate the effect of cold shock domain protein A (CSDA) as an endogenous angiogenesis inhibitor and to develop a novel strategy of therapeutic angiogenesis by blocking CSDA expression.
In human skeletal muscle cells, CSDA was upregulated during hypoxia when cells were damaged and apoptosis was induced. CSDA expression could repress the activity of hypoxia inducible factor-1α and nuclear factor κB, because CSDA can competitively bind the hypoxia response element and the nuclear factor κB-binding element. As a result, vascular endothelial growth factor-A, interleukin-6, and interleukin-8 secretions from skeletal muscle cells were decreased. Further, CSDA depletion increased the secretion level of these angiogenic factors. In a hindlimb ischemia model, transfer of short-hairpin RNA targeting CSDA ameliorated ischemia without direct transfer of angiogenic factors. In this ischemic tissue, vascular endothelial growth factor-A, interleukin-6, and CXCL2 protein levels were increased.
CSDA appears to play a critical role as an endogenous angiogenesis inhibitor in skeletal muscle, and RNA interference targeting of CSDA is a promising gene therapy strategy for treating peripheral arterial disease.
血管生成受局部促血管生成刺激物和抑制剂之间的平衡调节,并由缺血组织中肌源性血管生成因子维持。
我们的目的是研究冷休克结构域蛋白 A(CSDA)作为内源性血管生成抑制剂的作用,并通过阻断 CSDA 表达开发新的治疗性血管生成策略。
在人类骨骼肌细胞中,当细胞受到损伤并诱导凋亡时,CSDA 在缺氧时上调。CSDA 表达可以抑制缺氧诱导因子-1α和核因子 κB 的活性,因为 CSDA 可以竞争性结合缺氧反应元件和核因子 κB 结合元件。结果,来自骨骼肌细胞的血管内皮生长因子-A、白细胞介素-6 和白细胞介素-8 的分泌减少。此外,CSDA 耗竭增加了这些血管生成因子的分泌水平。在下肢缺血模型中,针对 CSDA 的短发夹 RNA 的转移改善了缺血,而没有直接转移血管生成因子。在这种缺血组织中,血管内皮生长因子-A、白细胞介素-6 和 CXCL2 蛋白水平增加。
CSDA 似乎在骨骼肌中作为内源性血管生成抑制剂发挥关键作用,针对 CSDA 的 RNA 干扰是治疗外周动脉疾病的有前途的基因治疗策略。