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Increase of body temperature and folic acid metabolism.

Folic acid metabolism was studied in forty-four febrile children aged 2 months -9 years by measuring their serum and red cell folate levels. In all the children, there was a significant reduction in red cell folate along with a steady rise in serum folate as the body temperature increased above 39 degrees C. There was no correlation between the folate parameters and the pathological cause of the pyrexia (malaria or broncho-pneumonia). These results suggest that a rise in body temperature causes a breakdown of folate stores, which leads to some disturbance of folate metabolism. The extent of this disturbance is not known but it may have some detrimental effects on growing children.

Child↗

Comparison of Prenate Advance with other prescription prenatal vitamins: a folic acid dissolution study.

Folic acid is important in the prevention of neural tube defects. This study assessed the folic acid dissolution performance of Prenate Advance and six other commonly prescribed prenatal vitamins and compared the results with the United States Pharmacopeia (USP) standards. Of the seven products tested, only three met the USP standard for folic acid dissolution. At 110% of the labeled amount, the Prenate Advance product had the highest folic acid dissolution level. Average dissolution for the four products failing to meet the USP standard ranged from 0% to 38% of labeled amount. These results corroborate findings from other studies suggesting marked differences in dissolution of prescription prenatal vitamins. These findings raise concerns of whether some women could fail to achieve the recommended folate levels needed in early pregnancy to prevent neural tube defects. Prenate Advance met the USP requirement for folic acid dissolution.

Biological Availability↗

Dietary vitamin C and folic acid supplementation ameliorates the detrimental effects of heat stress in Japanese quail.

We evaluated the effects of vitamin C (L-ascorbic acid) and folic acid supplementation on performance, carcass characteristics and concentrations of the oxidative stress markers [malondialdehyde (MDA), homocysteine], adrenocorticotropic hormone (ACTH), vitamins C, E, A, B-12 and folic acid, and mineral status in broiler Japanese quail (Coturnix coturnix japonica) exposed to high ambient temperature (34 degrees C, 8 h/d, 0900-1700 h). The birds (n = 150; 10-d-old) kept at 34 degrees C were fed a basal diet (HS group) or the basal diet supplemented with 250 mg of L-ascorbic acid/kg of diet (Vit C group), 1 mg of folic acid/kg of diet (FA group) or both (Vit C + FA group), whereas birds kept at 22 degrees C were fed the basal diet (TN group). Supplementing heat-stressed quail with vitamin C and folic acid improved performance compared to the HS group. Effects generally were greatest in quail supplemented with both. Although supplementation did not consistently restore concentrations to those of the TN group, it increased serum concentrations of the vitamins under study. Furthermore, serum and tissue MDA, homocysteine and ACTH concentrations were lower in the supplemented groups than in the heat-stressed controls. Retention of N, ash, Ca, P, Zn, Fe, Cu and Cr were highest in the Vit C + FA group and lowest in the HS group (P < 0.05). The results of the study indicate that vitamin C and folic acid supplementation attenuates the decline in performance and antioxidant status caused by heat stress. Such supplementation may offer protection against heat stress-related depression in performance of Japanese quail.

Animal Husbandry↗

9-methyl pteroylglutamic acid, a synthetic analogue of folic acid: its effects on hexosamine levels in fetal rat limbs and other fetal tissues.

Pregnant rats were administered the teratogen and synthetic analogue of folic acid, 9-methyl pteroylglutamic acid, on the 11th day of gestation and placed on a semisynthetic diet containing the antagonist but lacking the vitamin until the 14th gestational day. This transitory maternal folic acid deficiency results in multiple congenital skeletal malformations. Control animals were administered a folic acid-supplemented regimen. Hexosamine levels were measured in fetal tissues, i.e. limbs, livers, and yolk sacs, in order to monitor the accumulation of a primary constituent of the extracellular matrix, i.e. glycosaminoglycans. Fetal tissues were obtained for hexosamine analysis on the 16th and 18th days of gestation. The teratogenic and transitory folic acid-deficient regimen resulted in (1) a significant reduction in the accumulation of hexosamine in fetal limbs by the 16th day of gestation, and (2) a significant increase in the accumulation of hexosamine in fetal livers by the 16th day of gestation. The regimen was observed to have had no effect on hexosamine accumulation by the yolk sac. Furthermore, no significant effect on hexosamine accumulation from the 16th to the 18th day of gestation was observed in any of the tissues studied.

Animals↗