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Deficient Response to Experimentally Induced Alkalosis in Mice withthe Inactivated insrr Gene

机译:对小鼠实验性碱中毒反应不足insrr基因失活

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摘要

Currently, the molecular mechanisms of the acid-base equilibrium maintenance in the body remain poorly understood. The development of alkalosis under various pathological conditions poses an immediate threat to human life. Understanding the physiological mechanisms of alkalosis compensation may stimulate the development of new therapeutic approaches and new drugs for treatment. It was previously shown that the orphan insulin receptor-related receptor (IRR) is activated by mildly alkaline media. In this study, we analyzed mutant mice with targeted inactivation of theinsrr gene encoding IRR, and revealed their phenotype related to disorders of the acid-base equilibrium. Higher concentrations of bicarbonate and CO2were found in the blood ofinsrr knockout mice in response to metabolic alkalosis.
机译:目前,对体内酸碱平衡维持的分子机制仍然知之甚少。在各种病理条件下碱中毒的发展对人类生命构成了直接威胁。了解碱中毒补偿的生理机制可能会刺激新的治疗方法和新药物的开发。先前已证明,孤儿胰岛素受体相关受体(IRR)被轻度碱性介质激活。在这项研究中,我们分析了具有编码IRR的insrr基因的靶向失活的突变小鼠,并揭示了它们与酸碱平衡失调有关的表型。响应代谢性碱中毒,在insrr基因敲除小鼠的血液中发现了较高浓度的碳酸氢盐和二氧化碳。

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