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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.
Abstract:
Emerging evidence highlights the far-reaching consequences of high-fat diet (HFD) and obesity on kidney morphological and functional disorders. In the present study, we aim to evaluate the effects of early HFD intake on renal function and morphology in maternal protein-restricted offspring (LP). LP and normal protein-intake offspring (NP) were fed HFD (LPH and NPH, respectively) or standard rodent (LPN and NPN) diet from the 8th to 13th week of age. Blood pressure, kidney function, immunohistochemistry and scanning electron microscopy were analyzed. Increased total cholesterol and low-density lipoprotein serum levels were observed in LPH offspring. The adiposity index was reduced in the (LPN) group and, conversely, increased in the NPH and LPH groups. Blood pressure was higher beyond the 10th week of age in the LPH group compared with the other groups. Decreased urinary sodium excretion was observed in LP offspring, whereas the HFD-treated groups presented a decreased urine pH in a time-dependent fashion. The LPN, NPH and LPH groups showed increased expression of type 1 angiotensin II (AngII) receptor (AT1R), TGF-β1, collagen and fibronectin in the kidneys. Moreover, the adult fetal-programmed offspring showed pronounced effacement of the podocyte foot process associated with the rupture of cell membranes and striking urinary protein excretion, exacerbated by HFD treatment. To the best of our knowledge, this is the first study demonstrating that young fetal-programmed offspring submitted to long-term HFD intake have increased susceptibility to renal structural and functional disorders associated with an accentuated stage of fibrosis and tubular dysfunction.
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