Effects of STAT3 on aging-dependent neovascularization impairment following limb ischemia: from bedside to bench

W. Chang, You-Cheng Lin, C. Hong, Po-Sen Huang, Yu‐Wen Lin, Zhih-Cherng Chen, Tsung-Hsien Lin, T. Chao
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引用次数: 3

Abstract

Aging is a major risk factor for ischemic hypoxia-related diseases, including peripheral artery diseases (PADs). Signal transducer and activator of transcription 3 (STAT3) is a critical transcription activator in angiogenesis. Nevertheless, the effect of aging on endothelial cells and their responses to hypoxia are not well studied. Using a hindlimb hypoxic/ischemic model of aged mice, we found that aged mice (80-100-week-old) expressed significantly lower levels of angiogenesis than young mice (10-week-old). In our in vitro study, aged endothelial cells (≥30 passage) showed a significant accumulation of β-galactosidase and a high expression of aging-associated genes, including p16, p21, and hTERT compared with young cells (<10 passage). After 24 hours of hypoxia exposure, proliferation, migration and tube formation were significantly impaired in aged cells compared with young cells. Notably, STAT3 and angiogenesis-associated proteins such as PI3K/AKT were significantly downregulated in aged mouse limb tissues and aged cells. Further, using STAT3 siRNA, we found that suppressing STAT3 expression in endothelial cells impaired proliferation, migration and tube formation under hypoxia. Correspondingly, in patients with limb ischemia we also observed a higher expression of circulating STAT3, associated with a lower rate of major adverse limb events (MALEs). Collectively, STAT3 could be a biomarker reflecting the development of MALE in patients and also a regulator of age-dependent angiogenesis post limb ischemia. Additional studies are required to elucidate the clinical applications of STAT3.
STAT3对肢体缺血后衰老依赖性新生血管损伤的影响:从床边到实验室
衰老是缺血性缺氧相关疾病(包括外周动脉疾病)的主要危险因素。信号换能器和转录激活因子3 (STAT3)是血管生成过程中重要的转录激活因子。然而,衰老对内皮细胞的影响及其对缺氧的反应尚未得到很好的研究。使用老年小鼠后肢缺氧/缺血模型,我们发现老年小鼠(80-100周龄)的血管生成水平明显低于年轻小鼠(10周龄)。在我们的体外研究中,与年轻细胞(<10传代)相比,衰老内皮细胞(≥30传代)显示出β-半乳糖苷酶的显著积累和衰老相关基因(包括p16、p21和hTERT)的高表达。缺氧暴露24小时后,老龄细胞的增殖、迁移和小管形成均明显受损。值得注意的是,STAT3和血管生成相关蛋白如PI3K/AKT在衰老小鼠肢体组织和衰老细胞中显著下调。此外,利用STAT3 siRNA,我们发现抑制内皮细胞中STAT3的表达会损害缺氧条件下内皮细胞的增殖、迁移和小管形成。相应地,在肢体缺血患者中,我们也观察到循环STAT3的高表达,与较低的主要肢体不良事件发生率相关(男性)。综上所述,STAT3可能是反映患者男性发展的生物标志物,也是肢体缺血后年龄依赖性血管生成的调节因子。需要进一步的研究来阐明STAT3的临床应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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