Impact of long-term high-fat diet intake gestational protein-restricted offspring on kidney morphology and function

V H G Rizzi1, L D B Sene1, C D B Fernandez1

  • 11Fetal Programming Laboratory,Department of Morphology,São Paulo State University,UNESP,Botucatu,São Paulo,Brazil.

Insights

Early high-fat diet (HFD) intake exacerbates kidney damage in offspring with fetal programming. This diet increases susceptibility to renal structural and functional disorders, including fibrosis and tubular dysfunction.

Area of Science:

  • Nephrology
  • Developmental programming
  • Nutritional science

Background:

  • High-fat diet (HFD) and obesity are linked to kidney disorders.
  • Maternal protein restriction can impact offspring kidney development.
  • Early life nutrition influences long-term health outcomes.

Purpose of the Study:

  • To investigate the effects of early HFD on renal function and morphology in offspring with maternal protein restriction.
  • To assess how HFD impacts kidney health in normal protein offspring.
  • To identify specific markers of renal damage and dysfunction.

Main Methods:

  • Offspring from protein-restricted (LP) and normal protein (NP) dams were fed HFD or standard diet from 8-13 weeks of age.
  • Evaluated blood pressure, kidney function (urinary sodium, pH), and serum lipid profiles.
  • Utilized immunohistochemistry and scanning electron microscopy to analyze kidney structure and molecular markers (AT1R, TGF-β1, collagen, fibronectin).

Main Results:

  • LPH offspring showed increased cholesterol, LDL, blood pressure, and exacerbated podocyte damage.
  • HFD groups exhibited decreased urine pH and increased AT1R, TGF-β1, collagen, and fibronectin expression.
  • LP offspring had reduced sodium excretion; HFD exacerbated urinary protein excretion and podocyte effacement.

Conclusions:

  • Early HFD intake significantly increases susceptibility to renal structural and functional disorders in fetal-programmed offspring.
  • HFD exacerbates kidney fibrosis and tubular dysfunction, highlighting the critical role of early nutrition in kidney health.
  • This study is the first to demonstrate the long-term detrimental effects of early HFD on the kidneys of offspring with fetal programming.

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