[NUTRITIONAL FOLIC ACID DEFICIENCY ANEMIA. STUDIES WITH H3-LABELLED FOLIC ACID, CO58-LABELLED VITAMIN B12, FE59- AND H3-LABELLED THYMIDIN].
Explore the source record for details and available documents.
SEARCH · PubMed Health
Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Explore the source record for details and available documents.
The prevalences of vitamin B12 and folic acid deficiency in the general Israeli population of elders has not been assessed. We measured plasma cobalamin and folic acid concentrations in 418 subjects from four institutions for the aged, 749 subjects attending 19 geriatric day centres and 104 healthy controls. Methylmalonic acid (MMA) and/or homocysteine concentrations were determined in subjects who had a cobalamin concentration <221 pmol/l or folic acid concentration <11 nmol/l respectively. The prevalences of vitamin B12 deficiency (cobalamin <147 pmol/l and MMA > or =0.24 micromol/l), and folic acid deficiency (folic acid <11 nmol/l and homocysteine of >15 micromol/l) in subjects from day centres were 12.6% and 16.4% respectively, and in subjects from institutions 1.2% and 2.2% respectively (P < 0.001). Multiple logistic regression analysis indicated that the relative risk of living at home versus institutions for the aged was highly significant, with odds ratios (OR) of 6.8 [95% confidence interval (CI) 2.6-18.0] for vitamin B12 deficiency and 6.6 (95% CI 2.9-13.1) for folic acid deficiency. Analysis of data for day centre patients showed that folic acid deficiency was a significant risk factor of vitamin B12 deficiency (adjusted OR 3.68, 95% CI 2.27-5.98), and vitamin B12 deficiency was a significant risk of folic acid deficiency (adjusted OR 3.69, 95% CI 2.27-6.01). These data suggest that malnutrition is a major cause of the highly prevalent deficiencies of vitamin B12 and/or folic acid in elderly Israeli subjects dwelling at home.
Hyperhomocysteinemia is a risk factor for cardiovascular disease. C677T mutation at the MTHFR gene and deficiencies of folic acid and vitamin B-12 may account for elevation of total homocysteine (tHcy). Ninety Brazilian Parkatêjê Indians (90.0% of the population without admixture, aged > or = 20 years) were studied. Hyperhomocysteinemia was observed in 26.7% of the Indians. No case of vitamin B-12 deficiency was detected. Folic acid deficiency was found in 43.3% of the subjects. Rates of mutated allele 677T and TT genotype were 40.7% and 14.0%, respectively. Prevalence of hypertension, dyslipidemia, smoking, WHR > or = 0.9, BMI > or = 25 kg/m2 and chronic alcohol use were 4.4%, 44.4%, 25.6%, 72.2%, 67.8%, and 0.0%, respectively. All creatinine values were normal. Natural logarithmic (ln) tHcy showed no correlation with age, but was positively correlated with systolic (r = 0.22) and diastolic (r = 0.21) blood pressure and triglycerides (r = 0.39) and inversely correlated with folic acid (r = -0.40) adjusted for age and sex. Total homocysteine (tHcy) was higher among TT genotype (P < .001). The multiple linear regression model, containing variables for sex, folic acid, TT genotype, and triglycerides, explained 50.0% of the variation of the ln tHcy. In summary, high rates of cardiovascular risk factors were discovered. C667T mutation and folic acid deficiency can explain, at least in part, the observed hyperhomocysteinemia.
Explore the source record for details and available documents.
After bone marrow transplantation (BMT), megaloblastic bone marrow changes are often observed that can only be partially explained by drug effects. Our goal was to find out whether folic acid deficiency represented an additional factor. The serum folic acid concentrations of 41 patients were determined regularly before and after BMT. A 2nd degree polynomial regression analysis revealed a clear and acute drop in folic acid concentrations within 7-9 days after BMT. In 19 patients the level fell below 3.0 ng/ml, the range of folic acid deficiency. The mean folic acid values without oral administration of folic acid after BMT lay significantly below the mean values with substitution (P less than 0.001). If a case of acute graft versus host disease (GvHD) was more severe than grade I, the mean folic acid levels were significantly lower (P less than 0.01). Patients with megaloblastic bone marrow changes after BMT had significantly lower folic acid values than those without such changes (P less than 0.01). The 18 patients with folic acid deficiency had a significantly higher rate of megaloblasts, binucleate erythropoietic precursors, Howell-Jolly bodies, giant myelocytes, and giant metamyelocytes in bone marrow smears than the remaining 23 patients (P less than 0.05). Folic acid deficiency did not slow down the increase in leukocytes, granulocytes, thrombocytes, or reticulocytes after BMT. There were 8.2%-9.7% hypersegmented neutrophils in the blood (normal 5%) after BMT both with and without folic acid deficiency. Folic acid deficiency after BMT was caused by insufficient intake combined with simultaneous decreased intestinal resorption and increased requirements for the regeneration of bone marrow and intestinal mucosa.
Explore the source record for details and available documents.
Three patients are described, and they provide further evidence that deficiency of folic acid and vitamin B(12) may sometimes affect small intestinal function. Malabsorption of both xylose and vitamin B(12) returned to normal in one patient after treatment of a megaloblastic anaemia due to dietary deficiency of folic acid. Impaired absorption of vitamin B(12) was corrected by vitamin B(12) therapy in the other two patients. The initial cause of the vitamin B(12) deficiency in one patient was not apparent, but she was taking Gynovlar 21, which may have been an aetiological factor. In the third patient the small intestinal defect was secondary to pernicious anaemia, and in a group of 98 other patients with pernicious anaemia intrinsic factor did not improve vitamin B(12) absorption in six, and only partially corrected absorption in 30. The significance of these observations is discussed.
Morphological and quantitative neutrophil abnormalities are common in the megaloblastic anemias of vitamin B12 and folic acid deficiency. Little is known, however, about the role of these vitamins in normal leukocyte function. Seven patients with megaloblastic bone marrows, four with vitamin B12 deficiency and three with folic acid deficiency, were studied to determine the effect, if any, of these deficiencies on leukocyte function. Phagocytosis of staphylococci, hexose monophosphate shunt activation with phagocytosis, and microbicidal capacity against Staphylococcus aureus were determined prior to the institution of specific therapy. In two instances, these studies were repeated following treatment. There was no impairment of phagocytosis per se, and resting metabolism was not significantly decreased. With phagocytosis, however, metabolic activation was decreased to 35%-36% of control values in the leukocytes of patients with vitamin B12 deficiency but not in the leukocytes of patients with folic acid deficiency. Bacterial killing was slightly decreased in vitamin B12 but not in folic acid deficiency. These abnormalities of function were reversed after specific therapy. These findings suggested a specific role for vitamin B12 in the production of intermediates necessary for normal cell function.
Folic acid deficiency represents a vitamin deficiency that may be due either to an inadequacy of the dietary supply or to an increased requirement. It leads to a number of abnormalities including hematological, neurological and cardiovascular disorders. In this study, we investigated whether folic acid deficiency would influence platelet and macrophage activities. For 6 weeks, rats were fed a test diet containing a low amount of folic acid (250 mu g/kg) by comparison with a control diet (750 mu g/kg). We found 40 and 32 percent reductions (P < 0.05) of plasma and erythrocyte folates, respectively in the tested group. Peritoneal macrophages of the folic acid deficient animals exhibited greater (20 x) tissue factor (TF) activity than in the controls. We also found that folate depletion significantly enhanced the thrombin- and ADP-induced platelet aggregation (+64 and + 13 percent, respectively). Moreover, the results of incubations with radiolabeled arachidonic acid indicated that platelets of folic acid deficient animals incorporated more labeling than controls did. When stimulated with thrombin, the mobilization of arachidonate from platelet phospholipids and its subsequent formation of cyclooxygenase and lipoxygenase metabolites were enhanced in the deficient animals. In particular, thromboxane biosynthesis was markedly increased. The analysis of the plasma fatty acid composition showed a decrease in the plasma unsaturation index related to a marked fall of long chain (n-3) fatty acids which was also observed in platelets. These data suggested the occurrence of an oxidative stress in folic acid deficient animals which was confirmed by increases in plasma lipid peroxidation products (more than +20 percent) and an enhanced susceptibility of erythrocytes to free radicals (+23 percent). Altogether these data suggested that folic acid deficiency altered the circulating and cellular fatty acid composition and thus influenced the balance of the platelet eicosanoid synthesis. In addition, total homocysteine and glutathione concentrations were highly increased in plasma from folate-depleted rats. From these results, we conclude that folate deficiency can potentiate the coagulation pathway mediated by the macrophage TF as well as the platelet activation process. It is suggested that these dysfunctions might be related to the loss of (n-3) polyunsaturated fatty acids. The latter could result from an increased lipid peroxidation triggered by the folic acid deficiency-induced hyperhomocysteinemia.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
The common and rarer causes of vitamin B12 and folic acid deficiency are discussed with special reference to pathophysiological aspects and conditions in Switzerland. The overall incidence of Addisonian pernicious anemia was found to be 80 per 100,000 patients, whereas the incidence of other B12 deficiency states was 18 per 100,000 patients. Folic acid deficiency was found in 23 of 100,000 patients, though this figure appears to be an underestimate. Nutritional (latent) folate deficiency seems to be the most frequent vitamin deficiency in Switzerland.
Folic acid deficiency in humans has been linked with megaloblastic anaemia, neural tube defects in the neonate, and heart disease. Folate has also been implicated in the development of cancer, especially cancer of the colorectum. There appear to be two principal mechanisms through which low folate status may increase the risk of malignancy. Folate deficiency, by reducing intracellular S-adenosylmethionine (SAM), can alter cytosine methylation in DNA, leading to inappropriate activation of proto-oncogenes and induction of malignant transformation. Alternatively, folic acid is crucial for normal DNA synthesis and repair. Folate deficiency may cause an imbalance in DNA precursors, uracil misincorporation into DNA, and chromosome breakage. This chapter briefly describes the epidemiological data supporting the involvement of folic acid in the aetiology of cancer. It also assesses the evidence from cellular, animal and human studies that folic acid can modulate DNA by such mechanisms.
Folic acid deficiency (FA-) augments DNA damage caused by alkylating agents. The role of DNA repair in modulating this damage was investigated in mice. Weanling wild-type or 3-methyladenine glycosylase (Aag) null mice were maintained on a FA- diet or the same diet supplemented with folic acid (FA+) for 4 weeks. They were then treated with methyl methanesulfonate (MMS), 100mg/kg i.p. Six weeks later, spleen cells were collected for assays of non-selected and 6-thioguanine (TG) selected cloning efficiency to measure the mutant frequency at the Hprt locus. In wild-type mice, there was no significant effect of either MMS treatment or folate dietary content on splenocyte non-selected cloning efficiency. In contrast, non-selected cloning efficiency was significantly higher in MMS-treated Aag null mice than in saline treated controls (diet-gene interaction variable, p=0.04). The non-selected cloning efficiency was significantly higher in the FA+ diet than in the FA- diet group after MMS treatment of Aag null mice. Mutant frequency after MMS treatment was significantly higher in FA- wild-type and Aag null mice and in FA+ Aag null mice, but not in FA+ wild-type mice. For the Aag null mice, mutant frequency was higher in the FA+ mice than in the FA- mice after either saline or MMS treatment. These studies indicate that in wild-type mice treated with MMS, dietary folate content (FA+ or FA-) had no effect on cytotoxicity, but FA- diet increased DNA mutation frequency compared to FA+ diet. In Aag null mice, FA- diet increased the cytotoxic effects of alkylating agents but decreased the risk of DNA mutation.
The influence of chronic alcohol ingestion and artificially induced folic acid deficiency on iron absorption has been measured in rabbits by whole body counter. Results show that chronic alcohol ingestion does not modify iron absorption. Folic acid deficiency increases iron absorption by two probable mechanisms: first by increased plasma iron turnover (PIT), which parallels ineffective erythropoiesis, and second by a probable direct effect on the intestinal mucous membranes. This second mechanism appears to be independent of PIT: concomitant deficiency of folic acid and alcohol ingestion produces an increase in iron absorption without modification of PIT. Experience with drugs inhibiting protein synthesis suggests that this increase may be mediated by decreased protein synthesis.
Explore the source record for details and available documents.
Explore the source record for details and available documents.