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Vitamin B(12) deficiency and depression in physically disabled older women: epidemiologic evidence from the Women's Health and Aging Study.

OBJECTIVE: It has been hypothesized that adequate concentrations of vitamin B(12) and folate are essential to maintain the integrity of the neurological systems involved in mood regulation, but epidemiologic evidence for such a link in the general population is unavailable. This study examined whether community-dwelling older women with metabolically significant vitamin B(12) or folate deficiency are particularly prone to depression. METHOD: Serum levels of vitamin B(12), folate, methylmalonic acid, and total homocysteine were assayed in 700 disabled, nondemented women aged 65 years and over living in the community. Depressive symptoms were measured by means of the Geriatric Depression Scale and categorized as no depression, mild depression, and severe depression. RESULTS: Serum homocysteine levels, serum folate levels, and the prevalences of folate deficiency and anemia were not associated with depression status. The depressed subjects, especially those with severe depression, had a significantly higher serum methylmalonic acid level and a nonsignificantly lower serum vitamin B(12) level than the nondepressed subjects. Metabolically significant vitamin B(12) deficiency was present in 14.9% of the 478 nondepressed subjects, 17. 0% of the 100 mildly depressed subjects, and 27.0% of the 122 severely depressed women. After adjustment for sociodemographic characteristics and health status, the subjects with vitamin B(12) deficiency were 2.05 times as likely to be severely depressed as were nondeficient subjects. CONCLUSIONS: In community-dwelling older women, metabolically significant vitamin B(12)deficiency is associated with a twofold risk of severe depression.

Age Factors↗

The effect of postmenopausal hormone therapy with or without folic acid supplementation on serum homocysteine level.

OBJECTIVE: To evaluate the effects of postmenopausal hormone therapy (HT) with or without the addition of folic acid (FA) on serum homocysteine levels in a randomized, placebo-controlled design. Additionally, a non-randomized control group with no treatment was included. METHODS: Forty non-hysterectomized healthy postmenopausal women were randomly allocated to receive either oral continuous combined HT (0.625 mg conjugated equine estrogen with 2.5 mg medroxyprogesterone acetate daily) and oral folic acid (5 mg/day, n = 20) or HT and placebo (n = 20) for 3 months. A control group (n = 15) did not receive any study medication and was followed in the same manner. The fasting total serum homocysteine level was measured by fluorescence polarization immunoassay with a sensitivity of < 0.5 micromol/l. Serum levels of folate, estrogen and lipid profile were also followed. RESULTS: The mean age of the postmenopausal women was 52 +/- 6 years. Baseline homocysteine level was the highest in the HT + FA group (9.96 +/- 2.82 micromol/l), compared to HT + placebo (9.64 +/- 1.89 micromol/l) and control groups (9.01 +/- 1.83 micromol/l) (ANCOVA, p = 0.022). Low baseline folate and vitamin B12 levels contributed significantly to the high level of baseline homocysteine in the HT + FA group. The addition of FA to HT led to a significant decrease in the serum homocysteine level from the baseline level of 9.96 +/- 2.82 micromol/l to the final level of 8.92 +/- 2.53 micromol/l (p = 0.023). On the other hand, HT alone (HT + placebo group) significantly increased the serum homocysteine level from 9.64 +/- 1.89 micromol/l to 10.22 +/- 1.77 micromol/l without a decline in serum folate level (p = 0.045). The serum homocysteine level in the control group did not change significantly (from 9.01 +/- 1.83 micromol/l to 9.58 +/- 2.05 micromol/l, p = 0.29). CONCLUSIONS: Three months of oral continuous combined HT increased the fasting total serum homocysteine level without affecting the serum folate level. Lowering the homocysteine level in postmenopausal woman on HT is achievable by folic acid supplementation.

Administration, Oral↗

Mechanism for reduction of serum folate by antiepileptic drugs during prolonged therapy.

To determine whether the induction of liver enzymes by antiepileptic drugs play a major role in folate depletion, serum concentrations of folate were measured in age-matched control subjects without anemia and in epileptic outpatients who were being treated with a single antiepileptic drug. Two of the four drugs being administered were enzyme inducers. A protein binding radioassay was used to measure folate levels. Compared with serum folate levels in controls (5.14 +/- 1.88 ng/ml: n = 74), mean serum folate levels were reduced significantly in patients treated with phenobarbitone (3.91 +/- 1.73 ng/ml, p < 0.01: n = 33) and carbamazepine (3.85 +/- 1.02 ng/ml, p < 0.01: n = 36): both of which are enzyme-inducing agents. In contrast, patients treated with the non-enzyme-inducer valproate (5.39 +/- 1.71 ng/ml: n = 41) or zonisamide (5.59 +/- 2.60 ng/ml: n = 25) exhibited serum folate levels that did not differ significantly from values in controls. Findings showed that a reduction in serum folate is associated with the induction of enzymes by antiepileptic drugs. Thus, the induction of microsomal liver enzymes may be critical to the depletion of folate by antiepileptic drugs.

Adolescent↗

Randomized trial of folic acid supplementation and serum homocysteine levels.

BACKGROUND: Lowering serum homocysteine levels with folic acid is expected to reduce mortality from ischemic heart disease. Homocysteine reduction is known to be maximal at a folic acid dosage of 1 mg/d, but the effect of lower doses (relevant to food fortification) is unclear. METHODS: We randomized 151 patients with ischemic heart disease to 1 of 5 dosages of folic acid (0.2, 0.4, 0.6, 0.8, and 1.0 mg/d) or placebo. Fasting blood samples for serum homocysteine and serum folate analysis were taken initially, after 3 months of supplementation, and 3 months after folic acid use was discontinued. RESULTS: Median serum homocysteine level decreased with increasing folic acid dosage, to a maximum at 0.8 mg of folic acid per day, when the homocysteine reduction (placebo adjusted) was 2.7 micromol/L (23%), similar to the known effect of folic acid dosages of 1 mg/d and above. The higher a person's initial serum homocysteine level, the greater was the response to folic acid, but there were statistically significant reductions regardless of the initial level. Serum folate level increased approximately linearly (5.5 nmol/L for every 0.1 mg of folic acid). Within-person fluctuations over time in serum homocysteine levels, measured in the placebo group, were large compared with the effect of folic acid, indicating that monitoring of the reduction in an individual is impractical. CONCLUSIONS: A dosage of folic acid of 0.8 mg/d appears necessary to achieve the maximum reduction in serum homocysteine level across the range of homocysteine levels in the population. Current US food fortification levels will achieve only a small proportion of the achievable homocysteine reduction.

Adult↗