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1.
J Exp Biol ; 222(Pt 10)2019 05 16.
Artículo en Inglés | MEDLINE | ID: mdl-31019067

RESUMEN

It is now well established that the intrauterine environment is of major importance for offspring health during later life. Endurance training during pregnancy is associated with positive metabolic adjustments and beneficial effects on the balance between pro-oxidants and antioxidants (redox state) in the offspring. Our hypothesis was that these changes could rely on mitochondrial adaptations in the offspring due to modifications of the fetal environment induced by maternal endurance training. Therefore, we compared the liver and skeletal muscle mitochondrial function and the redox status of young rats whose mothers underwent moderate endurance training (treadmill running) before and during gestation (T) with those of young rats from untrained mothers (C). Our results show a significant reduction in the spontaneous H2O2 release by liver and muscle mitochondria in the T versus C offspring (P<0.05). These changes were accompanied by alterations in oxygen consumption. Moreover, the percentage of short-chain fatty acids increased significantly in liver mitochondria from T offspring. This may lead to improvements in the fluidity and the flexibility of the membrane. In plasma, glutathione peroxidase activity and protein oxidation were significantly higher in T offspring than in C offspring (P<0.05). Such changes in plasma could represent an adaptive signal transmitted from mothers to their offspring. We thus demonstrated for the first time, to our knowledge, that it is possible to act on bioenergetic function including alterations of mitochondrial function in offspring by modifying maternal physical activity before and during pregnancy. These changes could be crucial for the future health of the offspring.


Asunto(s)
Hígado/metabolismo , Mitocondrias/metabolismo , Madres , Músculo Esquelético/metabolismo , Condicionamiento Físico Animal , Animales , Femenino , Miembro Posterior/fisiología , Masculino , Mitocondrias Hepáticas/metabolismo , Embarazo , Ratas , Ratas Wistar
2.
J Physiol ; 595(23): 7049-7062, 2017 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-28971475

RESUMEN

KEY POINTS: Maternal training during gestation enhances offspring body composition and energy substrates handling in early adulthood. Offspring nutrition also plays a role as some beneficial effects of maternal training during gestation disappear after consumption of a high-fat diet. ABSTRACT: Maternal exercise during gestation has been reported to modify offspring metabolism and health. Whether these effects are exacerbated when offspring are receiving a high-fat diet remains unclear. Our purpose was to evaluate the effect of maternal exercise before and during gestation on the offspring fed a high-fat/high-sucrose diet (HF) by assessing its body composition, pancreatic function and energy substrates handling by two major glucose-utilizing tissues: liver and muscle. Fifteen-week-old nulliparous female Wistar rats exercised 4 weeks before as well as during gestation at a constant submaximal intensity (TR) or remained sedentary (CT). At weaning, pups from each group were fed either a standard diet (TRCD or CTCD) or a high-fat/high-sucrose diet (TRHF or CTHF) for 10 weeks. Offspring from TR dams gained less weight compared to those from CT dams. Selected fat depots were larger with the HF diet compared to control diet (CD) but significantly smaller in TRHF compared to CTHF. Surprisingly, the insulin secretion index was higher in islets from HF offspring compared to CD. TR offspring showed a higher muscle insulin sensitivity estimated by the ratio of phosphorylated protein kinase B to total protein kinase B compared with CT offspring (+48%, P < 0.05). With CD, permeabilized isolated muscle fibres from TR rats displayed a lower apparent affinity constant (Km ) for pyruvate and palmitoyl coenzyme A as substrates compared to the CT group (-46% and -58%, respectively, P < 0.05). These results suggest that maternal exercise has positive effects on young adult offspring body composition and on muscle carbohydrate and lipid metabolism depending on the nutritional status.


Asunto(s)
Composición Corporal , Dieta Alta en Grasa/efectos adversos , Sacarosa en la Dieta/efectos adversos , Metabolismo Energético , Condicionamiento Físico Animal , Animales , Células Cultivadas , Sacarosa en la Dieta/administración & dosificación , Femenino , Insulina/metabolismo , Secreción de Insulina , Células Secretoras de Insulina/metabolismo , Metabolismo de los Lípidos , Masculino , Músculo Esquelético/metabolismo , Embarazo , Ratas , Ratas Wistar
3.
Am J Physiol Endocrinol Metab ; 311(2): E508-18, 2016 08 01.
Artículo en Inglés | MEDLINE | ID: mdl-27382034

RESUMEN

Only a few studies have explored the effects of maternal exercise during gestation on adult offspring metabolism. We set out to test whether maternal controlled submaximal exercise maintained troughout all gestational periods induces persistant metabolic changes in the offspring. We used a model of 15-wk-old nulliparous female Wistar rats that exercised (trained group) before and during gestation at a submaximal intensity or remained sedentary (control group). At weaning, male offspring from trained dams showed reduced basal glycemia (119.7 ± 2.4 vs. 130.5 ± 4.1 mg/dl, P < 0.05), pancreas relative weight (3.96 ± 0.18 vs. 4.54 ± 0.14 g/kg body wt, P < 0.05), and islet mean area (22,822 ± 4,036 vs. 44,669 ± 6,761 µm(2), P < 0.05) compared with pups from control dams. Additionally, they had better insulin secretory capacity when stimulated by 2.8 mM glucose + 20 mM arginine compared with offspring from control dams (+96%, P < 0.05). At 7 mo of age, offspring from trained mothers displayed altered glucose tolerance (AUC = 15,285 ± 527 vs. 11,898 ± 988 mg·dl(-1)·120 min, P < 0.05) and decreased muscle insulin sensitivity estimated by the phosphorylated PKB/total PKB ratio (-32%, P < 0.05) and tended to have a reduced islet insulin secretory capacity compared with rats from control dams. These results suggest that submaximal maternal exercise modifies short-term male offspring pancreatic function and appears to have rather negative long-term consequences on sedentary adult offspring glucose handling.


Asunto(s)
Glucemia/metabolismo , Resistencia a la Insulina , Islotes Pancreáticos/patología , Músculo Esquelético/metabolismo , Condicionamiento Físico Animal , Efectos Tardíos de la Exposición Prenatal/metabolismo , Animales , Western Blotting , Femenino , Glucosa/metabolismo , Prueba de Tolerancia a la Glucosa , Homeostasis , Insulina/metabolismo , Secreción de Insulina , Islotes Pancreáticos/metabolismo , Hígado/metabolismo , Masculino , Tamaño de los Órganos , Páncreas/patología , Fosfoproteínas/metabolismo , Embarazo , Efectos Tardíos de la Exposición Prenatal/patología , Proteínas Proto-Oncogénicas c-akt/metabolismo , Ratas Wistar , Destete
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