肺泡上皮细胞的坏死推动了 SARS-CoV-2 感染引起的肺部炎症和损伤。

IF 4.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochimica et biophysica acta. Molecular basis of disease Pub Date : 2024-08-20 DOI:10.1016/j.bbadis.2024.167472
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引用次数: 0

摘要

由 SARS-CoV-2 感染引起的 COVID-19 会导致不可逆转或致命的肺损伤。我们推测病毒感染的肺泡上皮细胞(AEC)的坏死可能会促进局部炎症和 COVID-19 进一步的肺损伤。由于 CD8+ 淋巴细胞通过 FAS 配体等细胞毒性分子诱导 AEC 细胞死亡,我们研究了 FAS 介导的细胞死亡在 COVID-19 患者和小鼠 COVID-19 模型中的参与情况。我们发现 COVID-19 患者出现坏死并随后释放 HMGB1。在 COVID-19 小鼠模型中,Fas 缺陷小鼠的肺部炎症和损伤较 Fas 无缺陷小鼠有所减轻。感染会增强两组小鼠的Ⅰ型干扰素诱导基因,而Fas缺陷小鼠的炎症相关基因则会特异性上调。使用坏死抑制剂 Nec1s 治疗可改善存活率、肺损伤和全身炎症。SARS-CoV-2诱导的坏死凋亡会导致细胞因子诱导和肺损伤,抑制坏死凋亡可能是治疗COVID-19的一种新策略。
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Necroptosis in alveolar epithelial cells drives lung inflammation and injury caused by SARS-CoV-2 infection

COVID-19, caused by SARS-CoV-2 infection, results in irreversible or fatal lung injury. We assumed that necroptosis of virus-infected alveolar epithelial cells (AEC) could promote local inflammation and further lung injury in COVID-19. Since CD8+ lymphocytes induced AEC cell death via cytotoxic molecules such as FAS ligands, we examined the involvement of FAS-mediated cell death in COVID-19 patients and murine COVID-19 model. We identified the occurrence of necroptosis and subsequent release of HMGB1 in the admitted patients with COVID-19. In the mouse model of COVID-19, lung inflammation and injury were attenuated in Fas-deficient mice compared to Fas-intact mice. The infection enhanced Type I interferon-inducible genes in both groups, while inflammasome-associated genes were specifically upregulated in Fas-intact mice. The treatment with necroptosis inhibitor, Nec1s, improved survival rate, lung injury, and systemic inflammation. SARS-CoV-2 induced necroptosis causes cytokine induction and lung damage, and its inhibition could be a novel therapeutic strategy for COVID-19.

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来源期刊
CiteScore
12.30
自引率
0.00%
发文量
218
审稿时长
32 days
期刊介绍: BBA Molecular Basis of Disease addresses the biochemistry and molecular genetics of disease processes and models of human disease. This journal covers aspects of aging, cancer, metabolic-, neurological-, and immunological-based disease. Manuscripts focused on using animal models to elucidate biochemical and mechanistic insight in each of these conditions, are particularly encouraged. Manuscripts should emphasize the underlying mechanisms of disease pathways and provide novel contributions to the understanding and/or treatment of these disorders. Highly descriptive and method development submissions may be declined without full review. The submission of uninvited reviews to BBA - Molecular Basis of Disease is strongly discouraged, and any such uninvited review should be accompanied by a coverletter outlining the compelling reasons why the review should be considered.
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