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长链非编码 RNA MIR210HG 通过自噬依赖性铁死亡途径促进肺动脉平滑肌细胞表型转换。

LncRNA MIR210HG promotes phenotype switching of pulmonary arterial smooth muscle cells through autophagy-dependent ferroptosis pathway.

机构信息

Department of Respiratory and Critical Care Medicine, The First Affiliated Hospital of Anhui Medical University, Hefei, 230022, China.

Department of Infectious Diseases, Hefei Second People's Hospital, Hefei, 230001, China.

出版信息

Apoptosis. 2024 Oct;29(9-10):1648-1662. doi: 10.1007/s10495-024-01963-4. Epub 2024 Apr 18.

Abstract

Hypoxic pulmonary hypertension (HPH) is a pathophysiological syndrome in which pulmonary vascular pressure increases under hypoxic stimulation and there is an urgent need to develop emerging therapies for the treatment of HPH. LncRNA MIR210HG is a long non-coding RNA closely related to hypoxia and has been widely reported in a variety of tumor diseases. But its mechanism in hypoxic pulmonary hypertension is not clear. In this study, we identified for the first time the potential effect of MIR210HG on disease progression in HPH. Furthermore, we investigated the underlying mechanism through which elevated levels of MIR210HG promotes the transition from a contractile phenotype to a synthetic phenotype in PASMCs under hypoxia via activation of autophagy-dependent ferroptosis pathway. While overexpression of HIF-2α in PASMCs under hypoxia significantly reversed the phenotypic changes induced by MIR210HG knockdown. We further investigated the potential positive regulatory relationship between STAT3 and the transcription of MIR210HG in PASMCs under hypoxic conditions. In addition, we established both in vivo and in vitro models of HPH to validate the differential expression of specific markers associated with hypoxia. Our findings suggest a potential mechanism of LncRNA MIR210HG in the progression of HPH and offer potential targets for disease intervention and treatment.

摘要

低氧性肺动脉高压(HPH)是一种病理生理综合征,在低氧刺激下肺血管压力增加,迫切需要开发新兴的 HPH 治疗方法。LncRNA MIR210HG 是一种与低氧密切相关的长非编码 RNA,已在多种肿瘤疾病中广泛报道。但其在低氧性肺动脉高压中的作用机制尚不清楚。在本研究中,我们首次确定了 MIR210HG 对 HPH 疾病进展的潜在影响。此外,我们通过激活自噬依赖性铁死亡途径,研究了在低氧条件下升高的 MIR210HG 水平如何促进 PASMC 从收缩表型向合成表型转化的潜在机制。而在低氧条件下过表达 HIF-2α 可显著逆转 MIR210HG 敲低诱导的表型变化。我们进一步研究了 STAT3 在低氧条件下 PASMC 中与 MIR210HG 转录的潜在正调控关系。此外,我们建立了体内和体外 HPH 模型,以验证与低氧相关的特定标志物的差异表达。我们的研究结果表明 LncRNA MIR210HG 在 HPH 进展中的潜在机制,并为疾病干预和治疗提供了潜在的靶点。

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