Key result
Maternal hypoxia reduced the number of cardiomyocytes in female, but not male, adolescent guinea pig offspring (P<0.05), while IUGR males had decreased expression of fatty acid activation genes.
Why the study?
Does intrauterine growth restriction induced by maternal hypoxia or nutrient restriction alter cardiomyocyte endowment and cardiac metabolism in adolescent guinea pigs?
Does intrauterine growth restriction induced by maternal hypoxia or nutrient restriction alter cardiomyocyte endowment and cardiac metabolism in adolescent guinea pigs?
p-value: p=<0.05
Intrauterine growth restriction alters cardiomyocyte endowment and cardiac metabolism in a sex- and cause-specific manner, suggesting in utero programming of cardiac vulnerability.
Sex-specific IUGR effects on cardiomyocytes and metabolism in guinea pigs warrant caution in extrapolation; leaves open human cardiac programming relevance.
Intrauterine growth restriction (IUGR) increases the risk of ischemic heart disease in adulthood. Studies in rats suggest cardiac vulnerability is more pronounced in males and in offspring that were exposed to hypoxia in utero. Therefore, we aimed to test the hypotheses that 1) IUGR adolescent males, but not females, have fewer cardiomyocytes and altered expression of cardiometabolic genes compared with controls; and 2) IUGR due to hypoxia has a greater effect on these parameters compared with IUGR due to nutrient restriction. IUGR was induced in guinea pigs by maternal hypoxia (MH; 10% O 2 , n = 9) or maternal nutrient restriction (MNR; ~30% reduction in food intake, n = 9) in the second half of pregnancy and compared with control ( n = 11). At 120 days of age, postmortem was performed and the left ventricle perfusion fixed for stereological determination of cardiomyocyte number or snap frozen to determine the abundance of cardiometabolic genes and proteins by quantitative RT-PCR and Western blotting, respectively. MH reduced the number of cardiomyocytes in female ( P < 0.05), but not male or MNR, adolescent offspring. Furthermore, IUGR males had decreased expression of genes responsible for fatty acid activation in the sarcoplasm ( FACS) and transport into the mitochondria ( AMPK-a 2 and ACC; P < 0.05) and females exposed to MH had increased activation/phosphorylation of AMP-activated protein kinase-α ( P < 0.05). We postulate that the changes in cardiomyocyte endowment and cardiac gene expression observed in the present study are a direct result of in utero programming, as offspring at this age did not suffer from obesity, hypertension, or left ventricular hypertrophy.
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Botting et al. (2018) studied Intrauterine growth restriction (IUGR) (n=29). Maternal hypoxia or maternal nutrient restriction vs. Control was evaluated on Number of cardiomyocytes and expression of cardiometabolic genes (p=<0.05). Maternal hypoxia reduced the number of cardiomyocytes in female, but not male, adolescent guinea pig offspring (P<0.05), while IUGR males had decreased expression of fatty acid activation genes.
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