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钴氯化物作为化学缺氧模型的应用。

The use of cobalt chloride as a chemical hypoxia model.

机构信息

Laboratorio de Patología Vascular Cerebral, Instituto Nacional de Neurología y Neurología (INNN), Insurgentes Sur 3877, la Fama, 14269, Tlalpan Ciudad de México, Mexico.

出版信息

J Appl Toxicol. 2019 Apr;39(4):556-570. doi: 10.1002/jat.3749. Epub 2018 Nov 28.

Abstract

The use of hypoxia models in cell culture has allowed the characterization of the hypoxia response at the cellular, biochemical and molecular levels. Although a decrease in oxygen concentration is the optimal hypoxia model, the problem faced by many researchers is access to a hypoxia chamber or a CO incubator with regulated oxygen levels, which is not possible in many laboratories. Several alternative models have been used to mimic hypoxia. One of the most commonly used models is cobalt chloride-induced chemical hypoxia because it stabilizes hypoxia inducible factors 1α and 2α under normoxic conditions. This model has several advantages, and currently, there is a substantial amount of scattered information about how this model works. This review describes the characteristics of the model, as well as the biochemical and molecular bases that support it. The regulation of hypoxia inducible factors by oxygen and the role of CoCl are explained to understand the most accepted bases of the CoCl -induced hypoxia model. The different current hypotheses that explain the establishment of hypoxic conditions using CoCl are also described. Finally, based on the different observations reported in the literature, we provide a critical review about the scope and limitations of this widely used chemical hypoxia model to be informative to all researchers interested in the field.

摘要

在细胞培养中使用缺氧模型使得能够在细胞、生化和分子水平上对缺氧反应进行特征描述。虽然氧浓度降低是最佳的缺氧模型,但许多研究人员面临的问题是无法获得缺氧室或具有调节氧水平的 CO2 培养箱,这在许多实验室中是不可能的。已经使用了几种替代模型来模拟缺氧。最常用的模型之一是氯化钴诱导的化学缺氧,因为它在常氧条件下稳定缺氧诱导因子 1α 和 2α。该模型具有几个优点,目前有大量分散的信息介绍该模型的工作原理。这篇综述描述了该模型的特征,以及支持该模型的生化和分子基础。解释了氧对缺氧诱导因子的调节以及 CoCl 的作用,以了解 CoCl 诱导的缺氧模型最被接受的基础。还描述了使用 CoCl 建立缺氧条件的不同当前假设。最后,根据文献中报道的不同观察结果,我们对这个广泛使用的化学缺氧模型的范围和局限性进行了批判性评价,以期为所有对该领域感兴趣的研究人员提供信息。

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