4.8 Article

Relieving lipid accumulation through UCP1 suppresses the progression of acute kidney injury by promoting the AMPK/ULK1/autophagy pathway

Journal

THERANOSTICS
Volume 11, Issue 10, Pages 4637-4654

Publisher

IVYSPRING INT PUBL
DOI: 10.7150/thno.56082

Keywords

lipids; UCP1; metabolic reprogramming; autophagy; acute kidney injury

Funding

  1. National Natural Science Foundation of China [81961138007, 81974096, 81770711, 81522010, 81800610, 81873602]
  2. National Key R&D Program of China [2018YFC1314000]
  3. Program for HUST Academic Frontier Youth Team [2017QYTD20]

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This study systematically analyzed the changes in lipid composition in AKI for the first time, showing a strong correlation between lipid accumulation and UCP1. Furthermore, upregulating UCP1 to alleviate lipid accumulation significantly inhibited the progression of AKI through promoting the AMPK/ULK1/autophagy pathway.
Rationale: Acute kidney injury (AKI) is a serious clinical emergency with an acute onset, rapid progression, and poor prognosis. Recent evidence suggests that AKI is accompanied by significant metabolic abnormalities, including alterations in lipid metabolism. However, the specific changes in lipids in AKI, and their role and regulation mechanisms are currently unclear. Methods: Quantitative metabolomics was performed in AKI models to reveal the differences of lipid metabolism-related products. Regulated pathway was detected by western blot, qRT-PCR, immunoblot analysis and immunohistochemistry. Results: The present study systematically analyzes the changes in lipid composition in AKI for the first time and find that the degree of lipid accumulation was highly correlated with uncoupling protein 1 (UCP1). Importantly, relieving lipid accumulation in AKI by upregulating UCP1 can significantly inhibit the progression of AKI through promoting AMPK/ULK1/autophagy pathway. Conclusions: The present findings suggest that lipid accumulation in AKI is directly regulated by UCP1, which can activate cell autophagy and thus significantly inhibit disease progression. It will provide new ideas and targets for the treatment of AKI.

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