4.5 Article

Metabolomic profiling identifies a novel mechanism for heat stroke-related acute kidney injury

期刊

MOLECULAR MEDICINE REPORTS
卷 23, 期 4, 页码 -

出版社

SPANDIDOS PUBL LTD
DOI: 10.3892/mmr.2021.11880

关键词

heat stroke; metabolomics; acute kidney injury; unsaturated fatty acids; HMGB1; RAGE

资金

  1. National Natural ScienceFoundation of China [81200533]
  2. Sichuan Clinical Research Center for Nephropathy [2019YFS0537-4]
  3. Luzhou Municipal Government-Southwest Medical University Strategic Cooperation Fund [2016LZXNYD-J20]

向作者/读者索取更多资源

Heat stroke can lead to systemic inflammatory response, resulting in multi-organ dysfunction including AKI and electrolyte disturbances. The study successfully induced a mouse model of HS and found increased creatinine levels, active metabolism, kidney hemorrhage and apoptosis, upregulation of Aifm2, HMGB1, and RAGE, and enrichment of the biosynthesis of unsaturated fatty acids pathway in response to HS-related AKI. These findings suggest a potential correlation between the HMGB1/RAGE pathway and biosynthesis of unsaturated fatty acids in the progression of HS-related AKI.
Heat stroke can induce a systemic inflammatory response, which may lead to multi-organ dysfunction including acute kidney injury (AKI) and electrolyte disturbances. To investigate the pathogenesis of heat stroke (HS)-related AKI, a mouse model of HS was induced by increasing the animal's core temperature to 41 degrees C. Blood samples obtained from the tail vein were used to measure plasma glucose and creatinine levels. Micro-positron emission tomography-computed tomography (micro-PET/CT), H&E staining and transmission electron microscopy were conducted to examine metabolic and morphological changes in the mouse kidneys. Immunohistochemistry (IHC) and western blot analyses were performed to investigate the expression of apoptosis-inducing factor mitochondria-associated 2 (Aifm2), high-mobility group box 1 (HMGB1) and receptor for advanced glycosylation end products (RAGE). Liquid chromatography-mass spectrometry analysis was conducted to find differential metabolites and signaling pathways. The HS mouse model was built successfully, with significantly increased creatinine levels detected in the serum of HS mice compared with controls, whereas micro-PET/CT revealed active metabolism in the whole body of HS mice. H&E and TUNEL staining revealed that the kidneys of HS mice exhibited signs of hemorrhage and apoptosis. IHC and western blotting demonstrated significant upregulation of Aifm2, HMGB1 and RAGE in response to HS. Finally, 136 differential metabolites were screened out, and enrichment of the 'biosynthesis of unsaturated fatty acids' pathway was detected. HS-associated AKI is the renal manifestation of systemic inflammatory response syndrome, and may be triggered by the HMGB1/RAGE pathway. Metabolomics indicated increased adrenic acid, docosahexaenoic acid and eicosapentaenoic acid may serve as metabolic biomarkers for AKI in HS. The findings suggested that a correlation between the HMGB1/RAGE pathway and biosynthesis of unsaturated fatty acids may contribute to the progression of HS-related AKI.

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