Regulation of the HMGA2-SNAI2/CXCR4 axis in atherosclerosis and retinal neovascularization: new therapeutic insights.

Jianan Li, Zhuxi Liu, Chunyong Yu, Weilong Song, Xiaobin Zhang, Guobiao Liang
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Abstract

Atherosclerosis (AS) is a vascular disease associated with endothelial damage, plaque formation, and retinal neovascularization (RNV), leading to visual impairment. Research indicates that vascular endothelial dysfunction, lipid deposition, and inflammatory responses contribute to the formation of plaques and atherosclerotic lesions. Among the common complications, studies have shown that RNV and the molecular mechanisms of AS hold significant clinical importance. In this study, we identified the overexpression of the gene heat shock protein 90 (HSP90) through transcriptome sequencing. Subsequent protein expression analysis and inhibition experiments in corresponding animal models confirmed the crucial role of HSP90 in the modulation of this disease. Research findings revealed an increase in the expression of HSP90, HMGA2, Snail family transcriptional repressor 2 gene (SNAI2), CXC chemokine receptor 4 (CXCR4), and vascular endothelial growth factor (VEGF) in atherosclerotic mouse tissues. Inhibition of HSP90 expression reduced vascular neovascularization and downregulated the expression of HMGA2 and VEGF. Given that HSP90 can promote HMGA2 expression, which, in turn, facilitates angiogenesis, we conducted lentiviral infection experiments on primary retinal endothelial cells obtained from atherosclerotic mice, confirming the regulatory role of HSP90 in modulating HMGA2 expression through the SNAI2/CXCR4 signaling pathway and its involvement in retinal endothelial neovascularization. In conclusion, our study highlights the significant regulatory role of HSP90 in AS-induced RNV, providing a new target for disease treatment. Furthermore, this research extensively explores the mechanism of HSP90 in regulating RNV and associated signaling pathways, offering novel insights and laying a solid foundation for future studies in this disease domain.

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动脉粥样硬化和视网膜新生血管中 HMGA2-SNAI2/CXCR4 轴的调控:治疗新见解。
动脉粥样硬化(AS)是一种与内皮损伤、斑块形成和视网膜新生血管(RNV)有关的血管疾病,可导致视力损伤。研究表明,血管内皮功能障碍、脂质沉积和炎症反应是斑块和动脉粥样硬化病变形成的原因。研究表明,在常见的并发症中,RNV 和强直性脊柱炎的分子机制具有重要的临床意义。在本研究中,我们通过转录组测序确定了热休克蛋白 90(HSP90)基因的过度表达。随后在相应的动物模型中进行的蛋白表达分析和抑制实验证实了 HSP90 在该疾病的调控中起着至关重要的作用。研究结果显示,动脉粥样硬化小鼠组织中的HSP90、HMGA2、蜗牛家族转录抑制因子2基因(SNAI2)、CXC趋化因子受体4(CXCR4)和血管内皮生长因子(VEGF)的表达均有所增加。抑制 HSP90 的表达可减少血管新生,并下调 HMGA2 和血管内皮生长因子的表达。鉴于 HSP90 可促进 HMGA2 的表达,进而促进血管生成,我们对动脉粥样硬化小鼠的原代视网膜内皮细胞进行了慢病毒感染实验,证实了 HSP90 通过 SNAI2/CXCR4 信号通路调节 HMGA2 的表达及其参与视网膜内皮新生血管形成的调控作用。总之,我们的研究强调了 HSP90 在 AS 诱导的 RNV 中的重要调控作用,为疾病治疗提供了新的靶点。此外,这项研究还广泛探讨了 HSP90 在调节 RNV 及相关信号通路中的作用机制,为今后在这一疾病领域的研究提供了新的见解并奠定了坚实的基础。
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