Mitochondrial metabolic reprogramming drives diabetic kidney disease progression: cell-specific mechanisms, metabolic

Lingfei Zhang1,2, Yue Zhang3, Liu Han3

  • 1Lanzhou University CuiYing Honors College, Lanzhou University, Lanzhou, 730000, China.

Insights

Diabetic kidney disease (DKD) involves metabolic changes in mitochondria, impacting cellular processes and "metabolic memory." This review explores mitochondrial reprogramming in DKD and its therapeutic potential.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Nephrology

Background:

  • Diabetic Kidney Disease (DKD) is a major complication of diabetes, leading to chronic kidney disease.
  • Metabolic reprogramming, exemplified by the Warburg effect in cancer, is increasingly recognized in DKD.
  • Mitochondria are central to cellular metabolism and are implicated in DKD pathogenesis and
  • metabolic memory.

Purpose of the Study:

  • To review mitochondrial metabolic reprogramming in DKD.
  • To explore the role of mitochondria in DKD-related
  • metabolic memory.
  • To summarize therapeutic strategies targeting mitochondrial metabolism in DKD.

Main Methods:

  • Literature review focusing on mitochondrial metabolic reprogramming in DKD.
  • Analysis of cellular and molecular mechanisms.
  • Synthesis of preclinical and clinical therapeutic data.

Main Results:

  • Mitochondrial metabolic reprogramming occurs in various renal and immune cells in DKD.
  • Mitochondria are involved in epigenetic modifications linked to
  • metabolic memory.
  • Therapeutic strategies targeting mitochondrial metabolism show promise.

Conclusions:

  • Mitochondrial metabolic reprogramming is a key factor in DKD.
  • The interplay between mitochondrial metabolism and epigenetic modifications offers novel therapeutic avenues for DKD.
  • An interdisciplinary approach is crucial for addressing DKD therapeutic challenges.

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