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PubMed · 6677813

Vitamin E and athletic performance.

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R J Shephard. 1983. Vitamin E and athletic performance.. https://pubmed.ncbi.nlm.nih.gov/6677813/

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Quantitative electron microscopic study of the hypoxic fetal sheep heart.

In order to determine the effects of chronic, high-altitude hypoxia on the ovine fetal heart, we exposed pregnant ewes to 3,820 m beginning at 30 days gestation. We previously showed that following approximately 110 days of hypoxia the fetal heart showed significant reduction in cardiac output (76% of control) and contractility, and elevated levels of citrate synthase and lactate dehydrogenase. To investigate ultrastructural influences on these observed physiologic changes at altitude, we hypothesized that the volume densities of myofibrils and mitochondria, and glycogen content would be reduced in the ovine fetal heart and that this may contribute to contraction and cardiac output deficits in hypoxia. Mitochondria and myofibril volume density were determined by standard point-counting techniques and glycogen content was determined by biochemical analysis. The glycogen content from the hypoxic right ventricle (4.8 +/- 0.3%) was significantly lower than in control right ventricle (6.8 +/- 0.5%) and both left ventricles (hypoxia, 7.2 +/- 0.5; control, 7.8 +/- 0. 4%). Total mitochondrial volume density was also significantly reduced following hypoxia (15.5 +/- 0.7%) compared to controls (16.9 +/- 0.4%). As is common in the ovine fetal heart, the myofibril volume density of the right ventricle from both groups was significantly higher than the left ventricle (RV, 58.6 +/- 1.6; LV 54.3 +/- 0.9%). However, it was not different between control and high altitude. In support of our hypothesis, we may speculate that deficits in the quantity of myocyte glycogen and mitochondria contribute to the observed reduction in cardiac output and contractility, despite the upregulation of citrate synthase and lactate dehydrogenase. In contrast, myofibril volume density was unchanged.

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Altitude as a risk factor for congenital anomalies.

The birth prevalence of specific types of congenital anomalies at low and high altitudes in South America were compared after adjustment for prenatal growth, ethnicity, and socioeconomic status. The material includes all 1,668,722 consecutive births occurring in 53 hospitals participating in the Latin-American Collaborative Study of Congenital Malformations (ECLAMC), having registered at least 100 malformed/control pairs between 1967 and 1995. The lowland subsample (below 2,000 m above the sea level) included 46,729 case-control pairs, ascertained in 1,539,432 births from 49 hospitals in 38 cities. The highlands (above 2,000 m) comprised 3,498 case-control pairs from 129,301 births, occurring in four hospitals from three cities. Unconditional logistic regression was used to estimate the relative risks for the exposure at high altitudes, adjusted by ethnicity (Amerindian yes/no), type of health service (public/private), and birth weight (below/equal and greater than 2, 500 g). The adjusted relative risks showed significantly (P < 0.01) higher values in the high than in the lowlands for four types of defects: cleft lip [relative risks (RR): 1.57; 95% confidence interval (CI): 1.27-1.94], microtia (RR: 3.21; 95% CI: 2.35-4.79), preauricular tag (RR: 2.09; 95% CI: 1.86-2.36), branchial arch anomaly complex (RR: 1.79; 95% CI: 1.23-2.61), constriction band complex (RR: 1.92; 95% CI: 1.11-3.31), and anal atresia (RR: 1.61; 95% CI: 1.01-2.57). Conversely, lower risks in the highlands were registered for two neural tube defects: anencephaly (RR: 0.33; 95% CI: 0.20-0.54), spina bifida (RR: 0.57; 95% CI: 0.37-0.78), as well as for hydrocephaly (RR: 0.41; 95% CI: 0.22-0.77) and pes equinovarus (RR: 0.70; 95% CI: 0.51-0.96). Even though some of these differences may be caused by undetected confounders, the coincidental finding of four types of craniofacial defects with higher, and two types of neural tube defect with lower frequencies in the highlands, suggest a real biological foundation.

Altitude