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March 13, 2026Renal Failure0 citationsOpen Access

Lactate induces renal lipid accumulation and aggravates renal fibrosis by inhibiting the PPARα signaling pathway and fatty acid oxidation

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WWWeili WangYGYilin GaoYCYizhen Chen

Key Points

  • To explore how elevated lactate levels contribute to renal fibrosis in chronic kidney disease by inhibiting the PPARα pathway.
  • Enrolled 75 CKD patients and 15 healthy controls to measure serum lactate levels and correlate with kidney function metrics.
  • Utilized unilateral ureteral obstruction mouse models and TGF-β1-induced HK-2 cells to assess lactate's regulatory effects.
  • Conducted RNA sequencing and Western blot analysis on kidney tissues from UUO models.
  • CKD patients showed significantly elevated serum lactate levels, positively correlating with Scr, BUN, TG, and TCH, and negatively with eGFR.
  • UUO mouse kidneys displayed lactate accumulation, downregulated PPARα/FAO signaling, and increased renal fibrosis.
  • Exogenous lactate worsened fibrosis and lipid issues in HK-2 cells, while oxamic acid sodium reversed these effects.

Abstract

Chronic kidney disease (CKD) is characterized by renal fibrosis as its core pathological feature, and lipid metabolism disorders are a key driver of disease progression. However, the specific pathological significance of elevated lactate levels in patients with CKD remains unclear. This study aimed to verify the hypothesis that lactate exacerbates renal fibrosis by inhibiting the PPARα/FAO pathway. A total of 15 healthy controls and 75 CKD patients were enrolled. Serum lactate levels were measured, and their correlations with Scr, BUN, eGFR, and lipid metabolism parameters (triglycerides TG, total cholesterol TCH) were analyzed. Meanwhile, unilateral ureteral obstruction (UUO) mouse models and transforming growth factor-β1 (TGF-β1)-induced human proximal tubular epithelial cells (HK-2 cells) were used to validate the regulatory role of lactate in renal fibrosis. Results showed that serum lactate levels in CKD patients significantly increased with disease stage progression, and were positively correlated with Scr, BUN, TG, and TCH (p p < 0.0001). RNA sequencing and Western blot confirmed that UUO mouse kidney tissues exhibited lactate accumulation, downregulation of the PPARα/FAO pathway, lipid accumulation, and aggravated renal fibrosis. Exogenous lactate supplementation exacerbated TGF-β1-induced fibrosis and lipid disorders in HK-2 cells, whereas inhibition of lactate production by oxamic acid sodium significantly reversed these pathological effects. In conclusion, lactate disrupts renal lipid homeostasis and exacerbates renal fibrosis by inhibiting the PPARα/FAO pathway. This study provides an important theoretical basis for elucidating the pathological mechanism of CKD and developing novel therapeutic targets.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69b3ac8102a1e69014cce436https://doi.org/10.1080/0886022x.2026.2630507
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