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1.
Mol Cell Endocrinol ; 588: 112223, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38556160

ABSTRACT

Maternal malnutrition can alter developmental biology, programming health and disease in offspring. The increase in sugar consumption during the peripubertal period, a worldwide concern, also affects health through adulthood. Studies have shown that maternal exposure to a low protein diet (LPD) is associated with an increase in prostate disease with aging. However, the combined effects of maternal LPD and early postnatal sugar consumption on offspring prostate disorders were not investigated. The effects on aging were evaluated using a maternal gestational model with lactational LPD (6% protein) and sugar consumption (10%) from postnatal day (PND) 21-90, associating the consequences on ventral prostate (VP) rats morphophysiology on PND540. An increase was shown in mast cells and in the VP of the CTR + SUG and Gestational and Lactational Low Protein (GLLP) groups. In GLLP + SUG, a significant increase was shown in TGF-ß1 expression in both the systemic and intra-prostatic forms, and SMAD2/3p had increased. The study identified maternal LPD and sugar consumption as risk factors for prostatic homeostasis in senility, activating the TGFß1-SMAD2/3 pathway, a signaling pathway with potential markers for prostatic disorders.


Subject(s)
Malnutrition , Maternal Nutritional Physiological Phenomena , Prenatal Exposure Delayed Effects , Prostate , Prostatic Diseases , Animals , Male , Female , Pregnancy , Prenatal Exposure Delayed Effects/metabolism , Prostatic Diseases/pathology , Prostatic Diseases/etiology , Prostatic Diseases/metabolism , Malnutrition/complications , Prostate/metabolism , Prostate/pathology , Rats , Inflammation/pathology , Inflammation/metabolism , Transforming Growth Factor beta1/metabolism , Transforming Growth Factor beta1/genetics , Diet, Protein-Restricted/adverse effects , Smad2 Protein/metabolism , Rats, Wistar , Smad3 Protein/metabolism , Smad3 Protein/genetics , Signal Transduction , Animals, Newborn , Mast Cells/metabolism
2.
Nutrients ; 15(20)2023 Oct 17.
Article in English | MEDLINE | ID: mdl-37892483

ABSTRACT

We analyzed the influence of maternal hyperglycemia and the post-weaning consumption of a high-fat diet on the mitochondrial function and ovarian development of the adult pups of diabetic rats. Female rats received citrate buffer (Control-C) or Streptozotocin (for diabetes induction-D) on postnatal day 5. These adult rats were mated to obtain female pups (O) from control dams (OC) or from diabetic dams (OD), and they received a standard diet (SD) or high-fat diet (HFD) from weaning to adulthood and were distributed into OC/SD, OC/HFD, OD/SD, and OD/HFD. In adulthood, the OGTT and AUC were performed. These rats were anesthetized and euthanized for sample collection. A high percentage of diabetic rats were found to be in the OD/HFD group (OD/HFD 40% vs. OC/SD 0% p < 0.05). Progesterone concentrations were lower in the experimental groups (OC/HFD 0.40 ± 0.04; OD/SD 0.30 ± 0.03; OD/HFD 0.24 ± 0.04 vs. OC/SD 0.45 ± 0.03 p < 0.0001). There was a lower expression of MFF (OD/SD 0.34 ± 0.33; OD/HFD 0.29 ± 0.2 vs. OC/SD 1.0 ± 0.41 p = 0.0015) and MFN2 in the OD/SD and OD/HFD groups (OD/SD 0.41 ± 0.21; OD/HFD 0.77 ± 0.18 vs. OC/SD 1.0 ± 0.45 p = 0.0037). The number of follicles was lower in the OD/SD and OD/HFD groups. A lower staining intensity for SOD and Catalase and higher staining intensity for MDA were found in ovarian cells in the OC/HFD, OD/SD, and OD/HFD groups. Fetal programming was responsible for mitochondrial dysfunction, ovarian reserve loss, and oxidative stress; the association of maternal diabetes with an HFD was responsible for the higher occurrence of diabetes in female adult pups.


Subject(s)
Diabetes Mellitus, Experimental , Hyperglycemia , Rats , Female , Animals , Diet, High-Fat/adverse effects , Ovary/metabolism , Diabetes Mellitus, Experimental/metabolism , Oxidative Stress , Hyperglycemia/metabolism , Mitochondria
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