Division of Renal Diseases and Hypertension, University of Colorado, Aurora, Colorado.
Japan Society for the Promotion of Science Overseas Research Fellow, Tokyo, Japan.
Am J Physiol Renal Physiol. 2019 Nov 1;317(5):F1111-F1121. doi: 10.1152/ajprenal.00259.2019. Epub 2019 Aug 7.
An epidemic of chronic kidney disease of unknown etiology (Mesoamerican nephropathy) has emerged in hot regions of Central America. We have demonstrated that dehydration associated with recurrent heat exposure causes chronic kidney disease in animal models. However, the independent influence of core body temperature on kidney injury has not been explored. In the present study, we tested the hypothesis that kidney injury could be accelerated by increasing body temperature independent of external temperature. Wild-type mice were exposed to heat (39.5°C, 30 min, 2 times daily) with or without the mitochondrial uncoupling agent 2,4-dinitrophenol (DNP) for 10 days. Core temperature, renal function, proteinuria, and renal histological and biochemical analyses were performed. Isolated mitochondria markers of oxidative stress were evaluated from kidney tissue. DNP increased body core temperature in response to heat by 1°C (42 vs. 41°C), which was transient. The mild increase in temperature correlated with worsening albuminuria ( = 0.715, < 001), renal tubular injury, and interstitial infiltration of monocytes/macrophages. Tubular injury was marked in the outer medulla. This was associated with a reduction in kidney tissue ATP levels (nonheated control: 16.71 ± 1.33 nmol/mg and DNP + heat: 13.08 ± 1.12 nmol/mg, < 0.01), reduced mitochondria, and evidence for mitochondrial oxidative stress. The results of the present study suggest that kidney injury in heat stress is markedly worsened by increasing core temperature. This is consistent with the hypothesis that clinical and subclinical heat stroke may play a role in Mesoamerican nephropathy.
一种病因不明的慢性肾病(中美洲肾病)在中美洲炎热地区流行。我们已经证明,反复暴露于热环境中引起的脱水会导致动物模型发生慢性肾病。然而,核心体温对肾脏损伤的独立影响尚未得到探索。在本研究中,我们假设通过提高体温而不考虑外部温度,可以加速肾脏损伤,并对此进行了验证。野生型小鼠接受 39.5°C 的热暴露(30 分钟,每日 2 次),同时或不使用线粒体解偶联剂 2,4-二硝基苯酚(DNP)进行 10 天处理。检测核心体温、肾功能、蛋白尿以及肾脏组织学和生物化学分析结果。还从肾脏组织中评估了分离的线粒体氧化应激标志物。DNP 可使热暴露后的核心体温升高 1°C(42 对 41°C),这是短暂的。体温的轻度升高与白蛋白尿恶化相关( = 0.715, < 001)、肾小管损伤和单核细胞/巨噬细胞间质浸润相关。损伤主要发生在外髓质。这与肾脏组织中 ATP 水平降低相关(未加热对照:16.71 ± 1.33 nmol/mg 和 DNP + 热:13.08 ± 1.12 nmol/mg, < 0.01)、线粒体减少和线粒体氧化应激的证据一致。本研究结果表明,在热应激中,核心体温的升高显著加重了肾脏损伤。这与临床和亚临床中暑可能在中美洲肾病中发挥作用的假说一致。