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盖玻片诱导缺氧和氯化钴模拟缺氧对细胞应激、代谢和核结构的差异影响。

Differential effects of coverslip-induced hypoxia and cobalt chloride mimetic hypoxia on cellular stress, metabolism, and nuclear structure.

机构信息

Departamento de Diagnóstico en Patología y Medicina Oral, Facultad de Odontología, Universidad de la República, Uruguay.

Departamento de Diagnóstico en Patología y Medicina Oral, Facultad de Odontología, Universidad de la República, Uruguay; Departamento de Genómica, Instituto de Investigaciones Biológicas Clemente Estable, Uruguay.

出版信息

Tissue Cell. 2024 Jun;88:102408. doi: 10.1016/j.tice.2024.102408. Epub 2024 May 13.

Abstract

Hypoxia has profound effects on cell physiology, both in normal or pathological settings like cancer. In this study, we asked whether a variant of coverslip-induced hypoxia that recapitulates the conditions found in the tumor microenvironment would elicit similar cellular responses compared to the well established model of cobalt chloride-induced hypoxia. Comparable levels of nuclear HIF-1α were observed after 24 h of coverslip-induced hypoxia or cobalt chloride treatment in CAL-27 oral squamous carcinoma cells. However, cellular stress levels assessed by reactive oxygen species production and lipid droplet accumulation were markedly increased in coverslip-induced hypoxia compared to cobalt chloride treatment. Conversely, mitochondrial ATP production sharply decreased after coverslip-induced hypoxia but was preserved in the presence of cobalt chloride. Coverslip-induced hypoxia also had profound effects in nuclear organization, assessed by changes in nuclear dry mass distribution, whereas these effects were much less marked after cobalt chloride treatment. Taken together, our results show that coverslip-induced hypoxia effects on cell physiology and structure are more pronounced than mimetic hypoxia induced by cobalt chloride treatment. Considering also the simplicity of coverslip-induced hypoxia, our results therefore underscore the usefulness of this method to recapitulate in vitro the effects of hypoxic microenvironments encountered by cells in vivo.

摘要

缺氧对细胞生理学有深远的影响,无论是在正常情况下还是在癌症等病理情况下。在这项研究中,我们想知道一种模拟肿瘤微环境中缺氧条件的盖玻片诱导缺氧方法是否会引起与钴氯化物诱导缺氧的经典模型类似的细胞反应。在 CAL-27 口腔鳞状癌细胞中,盖玻片诱导缺氧或钴氯化物处理 24 小时后,核 HIF-1α 的水平相当。然而,与钴氯化物处理相比,盖玻片诱导缺氧导致细胞应激水平(通过活性氧产生和脂滴积累评估)显著增加。相反,在钴氯化物存在的情况下,线粒体 ATP 产生在盖玻片诱导的缺氧后急剧下降,但在钴氯化物存在的情况下仍能保持。盖玻片诱导的缺氧还对核组织产生了深远的影响,这可以通过核干质量分布的变化来评估,而钴氯化物处理后的这些影响则不那么明显。总之,我们的结果表明,与钴氯化物处理诱导的模拟缺氧相比,盖玻片诱导的缺氧对细胞生理学和结构的影响更为显著。考虑到盖玻片诱导缺氧的简单性,我们的结果因此强调了这种方法在体外重现细胞在体内遇到的缺氧微环境的效果的有用性。

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