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[Folic acid supplementation by 200 microgram per day during the periconceptional period: a necessary public health approach to reducing incidence of spina bifida].

The incidence of neural tube closure abnormalities, and particularly Spina-bifida is correlated with a low dietary intake of folic acid, for which the marker is the erythrocyte folate concentration. Initially, preventive policies concerned women treated with anticonvulsant agents and those with a known family history of Spina-bifida. This constituted secondary prevention. The objective of this study was to demonstrate the methods and respective role of secondary and primary prevention in 1998. The evolution away from secondary prevention towards primary prevention, i.e. aimed at all women who intend to conceive has been based upon the fundamental epidemiological estimate that 95% of cases of Spina-bifida occur in babies born to women without a known family history of this type of disorder. The idea that dietary measures alone may suffice to ensure effective prevention is invalid. However, if used in addition to a mean dietary intake of 200 micrograms folic acid a day, the only use of pharmacological or synthetic supplementation of 200 micrograms/day makes it possible to achieve the desired threshold of Dietary Folate Equivalents of 600 micrograms/day. The dose of 200 micrograms/day has been judged by the authors as being the most effective and safe for use on a large scale in the general population. Today, in 1998, the primary prevention of neural tube closure abnormalities is the subject of an international consensus which recommends folate supplementation of 100 to 200 micrograms/day during the periconceptional period. Implementation of this solution in the context of a health education campaign would meet the expectations of many women, in as much as 66% of them have declared that they would be ready to comply with such primary preventive measures.

Dietary Supplements↗

Treatment of hyperhomocysteinemia with folic acid reduces oxidative stress in renal transplant recipients.

BACKGROUND: We conducted a prospective, uncontrolled, open study to assess the relationship between homocysteine (tHcy) and oxidative stress in chronic, stable, renal transplant recipients (RTR). METHODS: Included in the study were 17 chronic, stable RTR. All the patients received folic acid (5 mg/day). tHcy and total antioxidant capacity (TAOC) were measured before and at the end of the study period. RESULTS: Mean tHcy concentration was 26+/-10 micromol/L. tHcy significantly decreased during the study period (26+/-10 vs. 18+/-7 micromol/L; P<0.001). There was a significant inverse relationship between TAOC and tHcy (r= -0.33; P=0.01). TAOC significantly increased during the study period (1.49+/-0.23-1.78+/-0.6; P<0.001). There was an inverse relationship between the variation in tHcy and the variation in TAOC (r= -0.44; P=0.01). CONCLUSION: Our results demonstrate that hyperhomocysteinemia contributed to increased oxidative stress in RTR. tHcy-lowering treatment with folic acid may lower oxidative stress.

Adult↗

Folic acid 5 or 15 mg/d similarly reduces plasma homocysteine in patients with moderate-advanced chronic renal failure.

BACKGROUND: Hyperhomocysteinaemia is an independent risk factor for cardiovascular disease with a remarkable prevalence in patients with chronic renal failure (CRF). Low doses of folic acid (FA) with or without vitamin B6 and B12 has been shown to effectively reduce plasma homocysteine (Hcy). The aim of this study was to compare the short-term effects of two different oral doses of FA (5 vs 15 mg/d) on plasma Hcy levels in subjects suffering from moderate-severe CRF. METHODS: A double-blind, double-dummy, comparative, two-stage randomised study was performed. Seventeen patients aged 45-71 years, with glomerular filtration rates between 15.4-50 mL/min 1.73/m2 were randomly assigned to receive FA 5 mg/d (FA-5, n: 8) or FA 15 mg/d (FA-15, n: 9) for 30 days. At the end of this 30-day double-blind period, all the participants were placed on FA 5 mg/d (open period), for 5 additional months. Both groups were also supplemented with vitamins B1, B6 and B12 throughout the trial. Blood samples were drawn at 0, 15, 30, 90 and 180 days to assess Hcy, complete blood count (CBC) and sequential multichannel analysis (SMA). Chest X-ray and a 12-lead electrocardiogram (ECG) were also performed. RESULTS: Plasma Hcy (mean +/- SEM) decreased from 27.9 +/- 1.4 (baseline) to 15.1 +/- 0.6, 13.3 +/- 0.9, 14.1 +/- 0.5 and 13.8 +/- 0.5 micromol/L (FA-5) and from 28.8 +/- 2.7 to 15.6 +/- 1.2, 14.4 +/- 1.3, 13.0 +/- 0.7 and 13.1 +/- 0.6 micromol/L (FA-15) at days 15, 30, 90 and 180, respectively. (P < 0.01 from day 15 to 180 vs baseline for both groups with no differences between them). Renal function remained stable throughout the entire period of the study in all but one patient in whom it deteriorated to pre-end stage disease. No adverse cardiovascular events developed during the trial. CONCLUSION: Both folic acid doses induced a significant and similar decrease in plasma Hcy in subjects with moderate-severe chronic renal failure. The possible dose-related effect of this approach in reducing the risk of accelerated sclerotic vascular disease and cardiovascular events in this especially vulnerable population should be a matter of further investigation.

Aged↗

In vivo folic acid supplementation partially corrects in vitro methotrexate toxicity in patients with Down syndrome.

Patients with Down syndrome have been found to have characteristic in vivo and in vitro methotrexate toxicity. The in vitro methotrexate toxicity characteristic of Down syndrome can be diminished by the in vivo administration of supplemental high doses of folic acid. A possible explanation for the increased sensitivity to methotrexate which has been documented in patients with Down syndrome may be due to imbalances in nucleotide pools which result from a gene dosage effect and to greater methylation demands. Supplemental folic acid may be beneficial by virtue of a down-regulation of excess gene activity and may also provide needed monocarbons.

Adolescent↗

Megaloblastic anaemia: response to Amples A and B (folic acid, vitamin B12 (Cyanocobalamin), niacin and vitamin C)--a case report.

BACKGROUND: Megaloblastic anaemia is prevalent in our society and patients are diagnosed late. METHOD: Case Report of a patient with megaloblastic anaemia and discussion of relevant literature. RESULTS: A 50 year old Nigerian trader with recurrent chronic anaemia and repeated blood transfusions (Eight units in 10 days) was finally diagnosed to have megaloblastic anaemia. He was commenced on intramuscular, Ample A and Ample B (folic acid 0.7mg, vitamin B12 (Cyanocobalamin) 2500g, niacin 12mg and vitamin C 150mg) on alternate days (6 doses) then weekly as maintenance until haematocrit returned to normal. Response was dramatic; haemoglobin was 6.4g/dl before, 7.9g/dl after the second dose and 11.5g/dl after the 6th dose of the drug. The corrected retic was 2.0% before, 4.6% 72hrs after and 8.4% after the 6th dose. The MCV decreased from 105fl before to 79fl after the 6th dose of the drug. His packed cell volume has remained above 35% after completing the 6th dose and during maintenance therapy. CONCLUSION: The combination of Cyanocobalamin, folic acid, niacin, and vitamin C, in Amples A and B is complementary. Treatment with Amples A and B is effective and affordable in the management of megaloblastic anaemia.

Anemia, Megaloblastic↗

Prevention of fumonisin B1-induced neural tube defects by folic acid.

BACKGROUND: The mycotoxin fumonisin B1 (FB1) inhibits sphingolipid synthesis, blocks folate transport, and has been associated with increased incidences of cancer and neural tube defects. Results from reproductive studies in animal models in vivo and in vitro have demonstrated toxicity in some cases, but no specific terata after fumonisin exposure. No information is available about folic acid's potential to protect against this toxicity. METHODS: Neurulating mouse embryos were exposed to fumonisin or folinic acid in whole embryo culture and assessed for effects on growth and development. RESULTS: Fumonisin exposure inhibited sphingolipid synthesis, reduced growth, and caused cranial neural tube defects in a dose dependent manner. Supplemental folinic acid ameliorated the effects on growth and development, but not inhibition of sphingolipid synthesis. CONCLUSION: Fumonisin has the potential to inhibit embryonic sphingolipid synthesis and to produce embryotoxicity and neural tube defects. Folic acid can reverse some of these effects, supporting results showing that fumonisin disrupts folate receptor function.

Animals↗

Inhibitors of folic acid synthesis in the treatment of experimental Pneumocystis carinii pneumonia.

Inhibitors of folic acid synthesis were compared alone and in different combinations in the therapy of pneumocystosis in immunosuppressed rats. Sulfonamides (sulfamethoxazole, sulfadiazine, and sulfadoxine) and sulfones (dapsone) used alone were very active against Pneumocystis carinii, as judged by histologic examination of the lungs and by organism quantitation. Improved efficacy could not be demonstrated by the addition of an inhibitor of dihydrofolate reductase to the regimen. Dihydrofolate reductase inhibitors (trimethoprim, diaveridine, and pyrimethamine) used alone were ineffective against P. carinii. All drugs were well tolerated except pyrimethamine, which caused bone marrow depression; folinic acid ameliorated this adverse reaction but did not interfere with P. carinii treatment. These data have potential clinical implications but need to be interpreted with caution and in light of other systems of P. carinii drug evaluation.

Animals↗

Folic acid, 5-methyl-tetrahydrofolate and 5-formyl-tetrahydrofolate exhibit equivalent intestinal absorption, metabolism and in vivo kinetics in rats.

The intestinal absorption and in vivo kinetics of (6S)-[3H]-5-methyl-tetrahydrofolate (5-methyl-H4folate), (6S)-[3H]-5-formyl-H4folate and [3H]folic acid were investigated to determine whether inherent differences exist in the overall bioavailability of these folates in rats. Adult rats (n = 9 per group) were given an intragastric dose of the appropriate folate (50 pmol/100 g body wt) in 50 mmol/L ascorbate (pH 7). Each compound underwent nearly complete absorption within 8 h, and there was no significant difference in the excretion kinetics in relation to the form of folate administered. A biphasic pattern of excretion was observed over the following 8 d. Both urine and feces were important excretory routes. The rapid phase of total isotopic excretion (urinary and fecal) exhibited a half time (t1/2) of 0.11-0.12 d, whereas the t1/2 of the slower phase was 13.4-15.9 d. Isotopic distributions and the pattern of labeled folates in urine and tissues were similar regardless of the form administered. These results indicate that the bioavailability of orally administered folic acid, 5-methyl-H4folate and 5-formyl-H4folate is equivalent in rats under the conditions of this study.

Animals↗

Megaloblastic anemia in patients receiving total parenteral nutrition without folic acid or vitamin B12 supplementation.

Pancytopenia developed in four patients receiving postoperatively total parenteral nutrition (TPN). Symptoms and signs were related mainly to underlying bowel disease. Hematologic abnormalities, first noted from 4 to 7 weeks following institution of TPN, consisted of normocytic anemia (mean decrease in hemoglobin value, 2.2 g/dL), occasional macrocytes being noted, leukopenia (range of leukocyte counts, 1.2 to 3.6 X 10(9) L), some hypersegmented neutrophils being detected, and clinically significant thrombocytopenia (range of platelet counts, 25 to 52 X 10(9)/L). In all patients the bone marrow showed megaloblastic changes, with ring sideroblasts, although pyridoxine was included in the TPN regimens. Serum vitamin B12 values were normal in one patient and at the lower limit of normal in the other two patients in whom it was measured, while serum or erythrocyte folate values, or both, were reduced in three patients. Full hematologic response was observed in the four patients after folic acid replacement therapy; leukocytosis and thrombocytosis were noted in three. Thus, folic acid and possibly vitamin B12 should be added routinely to TPN regimens to prevent deficiency of either substance.

Anemia, Macrocytic↗

Effect of homocysteine-lowering treatment with folic acid plus vitamin B on cerebrovascular atherosclerosis and white matter abnormalities as determined by MRA and MRI: a placebo-controlled, randomized trial.

BACKGROUND: A high plasma homocysteine concentration is an independent risk factor for large and possibly small vessel disease. We investigated the effects of homocysteine-lowering treatment with folic acid plus vitamin B(6) on markers of cerebrovascular atherosclerosis and cerebral microangiopathy. MATERIALS AND METHODS: Using 158 healthy siblings (mean age 46.0 +/- 7.6 years) of patients with premature atherosclerotic disease, we performed a randomized, placebo-controlled trial using 5 mg of folic acid plus 250 mg of vitamin B(6) daily (n = 78) or placebo medication (n = 80). Participants were followed for 2 years with magnetic resonance angiography (MRA) (carotid stenosis; carotid and/or vertebral elongation) and magnetic resonance imaging (MRI) (white matter abnormalities; cerebral atrophy). RESULTS: Seventeen (10.8%) subjects refused MRA/MRI owing to claustrophobia and were excluded. From the remaining 141 participants, 68 received vitamin and 73 received placebo medication [42 (61.8%) and 48 (65.8%) had postmethionine hyperhomocysteinaemia, respectively]. Twenty-four participants (15.2%; 10 in the treatment and 14 in the placebo group) did not complete both years of the trial. Vitamin treatment was associated with an increase in plasma folate (13-fold vs. placebo; P < 0.001) and vitamin B(6) (8.8-fold; P < 0.001). Fasting and postmethionine total homocysteine concentrations decreased 38.7% (95% CI, 27.4-50.0) and 29.1% (95% CI, 19.2-39.0) vs. placebo (all P < 0.001). During follow up six individuals in the vitamin-treated and 11 in the placebo-treated group deteriorated in their outcome measurements. Vitamin treatment, as compared with placebo, was associated with nonsignificantly improved outcomes on both MRA and MRI outcome measurements (odds ratio 0.48; 95% CI 0.17-1.41; P = 0.18 and 0.48; CI 0.14-1.60; P = 0.23, respectively). CONCLUSIONS: These results could indicate a possible favourable effect of homocysteine-lowering treatment on cerebrovascular atherosclerosis and cerebral microangiopathy among healthy siblings of patients with premature atherosclerotic disease, but larger trials are required to establish this with certainty.

Adult↗

The administration of folic acid to institutionalized epileptic adults with phenytoin-induced gingival hyperplasia. A double-blind, randomized, placebo-controlled, parallel study.

Twenty severely retarded institutionalized epileptic adults with phenytoin-induced gingival hyperplasia were divided into two groups and received a daily 3 mg capsule of either folic acid or lactose for 16 weeks in a randomized, double-blind, parallel study. Serum folate and phenytoin levels were recorded at baseline and on completion of the study. Twelve areas of the gingiva on each patient were graded at 4-week intervals for 16 weeks with respect to the three indexes: hyperplasia, gingival health, and plaque index. There were no significant differences between treatment groups for any of the three indexes over time. The poststudy serum folate levels were three times baseline levels for the active drug group (p less than 0.001) but unchanged in the placebo group. Phenytoin blood levels that began within the therapeutic window (10 to 20 micrograms/ml) tended to remain within the therapeutic window for both groups, with no reported seizure activity. A single daily oral 3 mg capsule of folic acid did not show efficacy as the sole therapeutic agent in the reduction of phenytoin-induced gingival hyperplasia.

Adult↗

Do antidepressants cause folic acid depletion? A pilot study.

Chronic administration of tricyclic antidepressants is common; folic acid depletion is a potential consequence adversely affecting the mental state. In a pilot study prior to research in the community, serum and red cell folate and serum vitamin B (12) levels were measured in the following elderly psychiatric inpatients: 14 controls (patients not receiving any drugs with known antifolate activity), 11 receiving tricyclic antidepressants, 13 receiving antipsychotics (phenothiazines) and four receiving an anticonvulsant (carbamazepine). Patients on prolonged treatment with carbamazepine or phenothiazine drugs had lower concentrations of folate in serum and erythrocytes compared with controls; the decrease was statistically significant for the effect of phenothiazines on serum folate levels. Tricyclic antidepressants, which are in widespread use in the community, did not cause folate depletion during the first two years of treatment.

Aged↗