Search PubMed⌕ Search

Biomedical subjects

J Selhub

Publications and source records attributed to J Selhub.

At least 19 recordsLinked to original sources

Effect of L-dopa on plasma homocysteine in PD patients: relationship to B-vitamin status.

BACKGROUND: The antiparkinsonian drug L-dopa causes increased cellular synthesis of homocysteine and consequent hyperhomocysteinemia in rats. This effect of L-dopa on plasma homocysteine is accentuated under conditions of impaired homocysteine metabolism such as folate deficiency. OBJECTIVE: To investigate the effect of L-dopa administration and B-vitamin status on plasma homocysteine concentrations in humans with PD. METHODS: Plasma homocysteine, folate, vitamin B(12), and pyridoxal-5'-phosphate (PLP) concentrations were determined in 40 individuals diagnosed with idiopathic PD who were being treated as outpatients at the Boston University Medical Center Neurology Clinic. Twenty of the patients were on L-dopa therapy (treatment group) and 20 were L-dopa-naive (control group). RESULTS: The mean plasma homocysteine concentration was higher in the treatment group than in the controls (p = 0.018). Plasma homocysteine was correlated with plasma folate, vitamin B(12), and PLP concentrations in the treatment group (p <or= 0.007) but not in the controls. CONCLUSION: L-Dopa can cause hyperhomocysteinemia in PD patients, the extent of which is influenced by B-vitamin status. The B-vitamin requirements necessary to maintain normal plasma homocysteine concentrations are higher in L-dopa-treated patients than in those not on L-dopa therapy. B-Vitamin supplements may be warranted for PD patients on L-dopa therapy.

Antiparkinson Agents↗

Plasma homocysteine and parental myocardial infarction in young adults in Jerusalem.

BACKGROUND: A causal role for mildly elevated plasma homocysteine (tHcy) in cardiovascular disease remains undetermined. To address the unresolved issue of the antecedent-consequent directionality of the relationship, we assessed the familial association of tHcy with parental myocardial infarction (MI) in young Israeli men and women. We also compared tHcy concentrations in Jerusalem, where rates of coronary heart disease (CHD) are high, with the United States Third National Health and Examination Survey (NHANES III). METHODS AND RESULTS: A total of 8646 17-year-olds and 6952 parents were examined from 1976 to 1979 in Jerusalem. At ages 28 to 32 years, offspring of parents who experienced a documented MI during a 10-year follow-up (n=133 men, 62 women; 72% response) and offspring of CHD-free parents (n=389 men, 208 women; 71% response) were reexamined. tHcy levels were determined by the same laboratory for the NHANES non-Hispanic white population aged 25 to 34 years (n=379) and the Jerusalem population sample (n=858). Men from Jerusalem, but not women, had clearly higher tHcy levels than the sample from the United States (90th percentile, 23 versus 14 micromol/L). This difference was largely attributable to lower plasma vitamin B12 levels in the Israeli population. Male case offspring had higher adjusted tHcy than did controls (1.9 micromol/L, P=0.002). Logistic modeling revealed a graded increase in risk of parental MI across quintiles of offspring tHcy, with an adjusted odds ratio of 2.7 in the 5th quintile (P=0.0026 for trend). CONCLUSIONS: The higher tHcy in young male offspring of parents with CHD suggests that elevated tHcy precedes manifestation of CHD. The elevated population tHcy in men may contribute to the high incidence of CHD in Israel.

Adolescent↗

Folate, vitamin B12 and vitamin B6 and one carbon metabolism.

The vitamins folic acid, B12 and B6 and B2 are the source of coenzymes which participate in one carbon metabolism. In this metabolism, a carbon unit from serine or glycine is transferred to tetrahydrofolate (THF) to form methylene-THF. This is either used as such for the synthesis of thymidine, which is incorporated into DNA, oxidized to formyl-THF which is used for the synthesis of purines, which are building blocks of RNA and DNA, or it is reduced to methyl-THF which used to methylate homocysteine to form methionine, a reaction which is catalyzed by a B12-containing methyltransferase. Much of the methionine which is formed is converted to S-adenosylmethionine (SAM), a universal donor of methyl groups, including DNA, RNA, hormones, neurotransmitters, membrane lipids, proteins and others. Because of these functions, interest in recent years has been growing particularly in the area of aging and the possibility that certain diseases that afflict the aging population, loss of cognitive function, Alzheimer's disease, cardiovascular disease, cancer and others, may be in part explained by inadequate intake or inadequate status of these vitamins. Homocysteine, a product of methionine metabolism as well as a precursor of methionine synthesis, was shown recently to be a risk factor for cardiovascular disease, stroke and thrombosis when its concentration in plasma is slightly elevated. There are now data which show association between elevated plasma homocysteine levels and loss of neurocognitive function and Alzheimer's disease. These associations could be due to a neurotoxic effect of homocysteine or to decreased availability of SAM which results in hypomethylation in the brain tissue. Hypomethylation is also thought to exacerbate depressive tendency in people, and for (colorectal) cancer DNA hypomethylation is thought to be the link between the observed relationship between inadequate folate status and cancer. There are many factors that contribute to the fact that the status of these vitamins in the elderly is inadequate. These factors are in part physiological such as the achlorhydria which affects vitamin B12 absorption and in part socioeconomic and habitual. We need more studies to confirm that these vitamins have important functions in the etiology of these diseases. We also need to establish if these diseases can be prevented or diminished by proper nutrition starting at a younger age.

Aged↗

Power Shortage: clinical trials testing the "homocysteine hypothesis" against a background of folic acid-fortified cereal grain flour.

Large randomized, controlled trials of total homocysteine-lowering therapy for the potential reduction of cardiovascular disease outcomes are ongoing in the United States and Canada. These trials are the Vitamin Intervention for Stroke Prevention (VISP) trial, the Women's Antioxidant Cardiovascular Disease Study (WACS), and the Heart Outcomes Prevention Evaluation (HOPE-2). However, the dramatic effect of policies mandating fortification of cereal grain flour products with folic acid may reduce the statistical power of these trials. All three trials assume that the active treatment groups will achieve the same mean effects of total homocysteine-lowering therapy as those reported in the absence of folic acid-fortified cereal grain flour. This paper examines this assumption using data from studies of total homocysteine-lowering therapy in U.S. and Canadian patients with cardiovascular disease who were exposed to products made with folic acid-fortified cereal grain flour. These data showed that the VISP trial, HOPE-2, and WACS will probably achieve only approximately 20% to 25% of the projected treatment effects of mean total homocysteine-lowering therapy (1.0 to 1.5 micromol/L vs. 4.0 to 6.0 micromol/L). As a result, all three trials will be substantially underpowered to test the specific hypotheses of total homocysteine-lowering therapy identified a priori. In contrast, renal transplant recipients have a persistent excess prevalence of hyperhomocysteinemia in the era of fortification but remain very responsive to supraphysiologic doses of folic acid-based supplementation (mean reduction in total homocysteine level, 5.0 to 6.0 micromol/L). Therefore, unlike other populations with normal renal function that are at high risk for cardiovascular disease but are profoundly affected by fortification efforts, renal transplant recipients continue to merit serious consideration for a controlled trial of the "homocysteine hypothesis."

Arteriosclerosis↗

Low circulating vitamin B(6) is associated with elevation of the inflammation marker C-reactive protein independently of plasma homocysteine levels.

BACKGROUND: Lower vitamin B(6) concentrations are reported to confer an increased and independent risk for cardiovascular disease (CVD). The mechanism underlying this relationship, however, remains to be defined. Other diseases, such as rheumatoid arthritis, are associated with reduced vitamin B(6) levels. Despite a clear distinction in pathophysiology, inflammatory reaction may be the major link between these diseases. We hypothesized a relationship between pyridoxal 5'-phosphate (PLP), the active form of vitamin B(6), and the marker of inflammation C-reactive protein (CRP). We also evaluated whether total plasma homocysteine (tHcy), a well-defined risk factor for CVD and a major determinant of plasma PLP levels, had a possible role as a mediator of this hypothesized relationship. METHODS AND RESULTS: Data from 891 participants from the population-based Framingham Heart Study cohort were analyzed. Subjects were divided into 2 groups according to normal or elevated CRP values: group 1, CRP <6 mg/L; group 2, CRP >/=6 mg/L. Plasma PLP levels were substantially lower in group 2 than in group 1 (mean values in group 2, 36.5 nmol/L versus 55.8 nmol/L in group 1, P<0.001). In a multiple logistic regression model adjusted for tHcy, the association of PLP with CRP remained highly significant (P=0.003). CONCLUSIONS: Low plasma PLP is associated with higher CRP levels independently of tHcy. This observation may reflect a vitamin B(6) utilization in the presence of an underlying inflammatory process and represent a possible mechanism to explain the decreased vitamin B(6) levels in CVD.

Aged↗

Association of the B-vitamins pyridoxal 5'-phosphate (B(6)), B(12), and folate with lung cancer risk in older men.

A nested case-control study was conducted within the Alpha-Tocopherol, Beta-Carotene Cancer Prevention Study cohort to test for associations between selected B-vitamins (folate, vitamin B(6), vitamin B(12)) and incident lung cancer. This trial was conducted in Finland between 1985 and 1993. Serum was analyzed for these nutrients and homocysteine among 300 lung cancer cases and matched controls (1:1). Odds ratios and 95% confidence intervals were determined in conditional and unconditional (controlling for the matching factors) logistic regression models, after adjusting for body mass index, years of smoking, and number of cigarettes smoked per day. No significant associations were seen between serum folate, vitamin B(12), or homocysteine and lung cancer risk. The authors found significantly lower risk of lung cancer among men who had higher serum vitamin B(6) levels. Compared with men with the lowest vitamin B(6) concentration, men in the fifth quintile had about one half of the risk of lung cancer (odds ratio = 0.51; 95% confidence interval: 0.23, 0.93; p-trend = 0.02). Adjusting for any of the other serum factors (folate, B(12), and homocysteine) either alone or jointly did not significantly alter these estimates. This is the first report from a prospectively conducted study to suggest a role for vitamin B(6) in lung cancer.

Age Distribution↗

Mice deficient in methylenetetrahydrofolate reductase exhibit hyperhomocysteinemia and decreased methylation capacity, with neuropathology and aortic lipid deposition.

Hyperhomocysteinemia, a risk factor for cardiovascular disease, is caused by nutritional and/or genetic disruptions in homocysteine metabolism. The most common genetic cause of hyperhomocysteinemia is the 677C-->T mutation in the methylenetetrahydrofolate reductase (MTHFR) gene. This variant, with mild enzymatic deficiency, is associated with an increased risk for neural tube defects and pregnancy complications and with a decreased risk for colon cancer and leukemia. Although many studies have reported that this variant is also a risk factor for vascular disease, this area of investigation is still controversial. Severe MTHFR deficiency results in homocystinuria, an inborn error of metabolism with neurological and vascular complications. To investigate the in vivo pathogenetic mechanisms of MTHFR deficiency, we generated mice with a knockout of MTHFR: Plasma total homocysteine levels in heterozygous and homozygous knockout mice are 1.6- and 10-fold higher than those in wild-type littermates, respectively. Both heterozygous and homozygous knockouts have either significantly decreased S-adenosylmethionine levels or significantly increased S-adenosylhomocysteine levels, or both, with global DNA hypomethylation. The heterozygous knockout mice appear normal, whereas the homozygotes are smaller and show developmental retardation with cerebellar pathology. Abnormal lipid deposition in the proximal portion of the aorta was observed in older heterozygotes and homozygotes, alluding to an atherogenic effect of hyperhomocysteinemia in these mice.

Animals↗

Influence of a methionine synthase (D919G) polymorphism on plasma homocysteine and folate levels and relation to risk of myocardial infarction.

Methionine synthase (MS) encodes an enzyme that catalyzes the remethylation of homocysteine to methionine using a methyl group donated by 5-methyltetrahydrofolate, which is the major circulating form of folate in the body. Functional genetic variants of the MS may alter total homocysteine (tHcy) as well as folate levels which are independent risk factors for vascular disease. The influence of a common genetic polymorphism (2756A-->G, D919G) of the MS gene on plasma tHcy and folate levels and its relation to the risk of myocardial infarction (MI) in a prospective study of male physicians in the US was investigated. A nested case-control study was conducted within the Physicians' Health Study which was originally designed as a double-blind trial of aspirin and beta-carotene among 22071 US male physicians, aged 40-84 years in 1982. Sixty-eight percent of participants also donated a blood sample. The study included 387 incident MI case and 767 controls matched on age, smoking status, and time from randomization in 6-month intervals. Individuals with GG genotype had a non-significant reduction of MI risk (RR 0.51, 95% CI 0.17-1.16) compared to individuals with DD genotype after adjusting for MI risk factors. The MS polymorphism was associated with decreased tHcy (10.55, 9.87 and 9.57 nmol/ml for DD, DG and GG genotypes, respectively) and increased folate levels (3.95, 3.78, 7.31 ng/ml for DD, DG and GG genotypes, respectively) only among controls but not cases. It was concluded that influence of the MS (D919G) polymorphism on the plasma tHcy and folate levels is at most moderate, but should be further investigated in other large prospective studies.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Hyperhomocysteinemia and hypercholesterolemia associated with hypothyroidism in the third US National Health and Nutrition Examination Survey.

Hypothyroid (thyroid stimulating hormone (TSH)> or =20 mIU/l; N=32) participants in the third National Health and Nutrition Examination Survey, Phase 2 (1991-1994) were compared with non-hypothyroid subjects (0.5 mIU/l 12 micromol/l) and hypercholesterolemia (serum total cholesterol>6.2 mmol/l). After controlling for age, gender, and race ethnicity, the odds ratios (95% confidence interval (CI)) relating hypothyroidism to hyperhomocysteinemia and high total cholesterol were 4.9 (1.8-14.0) and 8.0 (2.9-21.9), respectively. Based on 26 hypothyroid and 5811 non-hypothyroid subjects with triglyceride concentration < or =2.82 mmol/l, the odds ratio for the relationship between hypothyroidism and high low-density lipoprotein (LDL)-cholesterol (>4.6 mmol/l by the Friedewald equation) was 5.3 (95% CI, 1.3-20.9). Adding additional terms to the multivariate logistic regression model had little effect on the odds ratios relating hypothyroidism to high total or LDL-cholesterol, but adding terms for serum creatinine concentration >123.8 micromol/l and for red blood cell folate and serum vitamin B-12 concentrations resulted in an attenuated, but still significant (P<0.05), odds ratio relating hypothyroidism to hyperhomocysteinemia (2.5; 95% CI, 1.0-6.1). Controlling for cigarette smoking, heart attack/stroke history, body mass index, and serum albumin concentration did not affect the odds ratios. Hyperhomocysteinemia and hypercholesterolemia could help to explain the increased risk for arteriosclerotic coronary artery disease in hypothyroidism.

Adult↗

Chronic renal transplantation: a model for the hyperhomocysteinemia of renal insufficiency.

Renal transplant recipients (RTR) are considered representative of patients with chronic renal insufficiency (CRI) in general with respect to both reduced, progressively declining renal function, and increased risk for cardiovascular disease (CVD). In accord with this argument, we hypothesized that total (t) plasma concentrations of the putatively atherothrombotic amino acid homocysteine (Hcy) would be equivalent in RTR and CRI patients with comparable renal function. We determined plasma tHcy, folate, pyridoxal 5'-phosphate, and B12 concentrations, in addition to serum creatinine and albumin concentrations, in 86 chronic, stable RTR, and 238 patients with CRI. Within comparable ranges of serum creatinine (i.e. RTR=0.6-4.2 mg/dl; CRI=0.7-4.1 mg/dl), tHcy concentrations did not differ between the two groups (RTR=15.0 micromol/l; CRI=14.9 micromol/l, P=0.899). ANCOVA revealed that renal function, gauged as a simple creatinine measurement, was the major independent determinant of plasma tHcy concentrations, accounting for approximately 80-90% of the total variability in tHcy predicted by the full model (i.e. full model R(2)) containing, in addition to creatinine, the seven other potential explanatory variables. If controlled trials confirm that tHcy-lowering treatment reduces CVD events rates in RTR, these results should be applicable to CRI patients in general.

Adult↗

The 1298A-->C polymorphism in methylenetetrahydrofolate reductase (MTHFR): in vitro expression and association with homocysteine.

A common mutation in methylenetetrahydrofolate reductase (MTHFR), 677C-->T, is associated with reduced enzyme activity, a thermolabile enzyme and mild hyperhomocysteinemia, a risk factor for vascular disease. Recently, a second common mutation (1298A-->C; glutamate to alanine) was reported, but this mutation was suggested to increase homocysteine only in individuals who carried the bp677 variant. To evaluate the functional consequences of this mutation, we performed site-directed mutagenesis and in vitro expression. For in vivo assessment of clinical impact, we examined the 1298A-->C genotypes and plasma homocysteine in 198 individuals from the NHLBI Family Heart Study that had previously been assessed for the 677 substitution. Site-directed mutagenesis of the human cDNA was performed to generate enzymes containing each of the two mutations, as well as an enzyme containing both substitutions. Enzyme activity and thermolability were assessed in bacterial extracts. The activity of the wild-type cDNA was designated as 100%; mutant enzymes containing the 1298 and 677 mutations separately had 68% (+/-5.0) and 45% (+/-10.8), respectively, of control activity while the enzyme containing both mutations had 41% (+/-12.8) of control activity. The 1298 mutation was not associated with a thermolabile enzyme. In the Family Heart Study, fasting homocysteine was significantly higher (P<0.05) in individuals heterozygous for both substitutions, compared to individuals who carried only the 677C-->T variant. This study suggests that two variants in MTHFR should be assessed as genetic risk factors for hyperhomocysteinemia.

Blotting, Western↗

Proteinuria and plasma total homocysteine levels in chronic renal disease patients with a normal range serum creatinine: critical impact of true glomerular filtration rate.

Conflicting data have been reported concerning the independent association between proteinuria and plasma total homocysteine (tHcy) levels, particularly among chronic renal disease (CRD) patients with a normal range serum creatinine. Studies of this potential relationship have been limited by failure to assess true GFR, failure to assess proteinuria in a quantitative manner, or arbitrary restriction of the range of proteinuria examined. We examined the potential independent relationship between plasma tHcy levels and a wide range of quantitatively determined proteinuria (i.e., 0.000-8.340 g/day), among 109 CRD patients with a normal range serum creatinine (range; 0.8-1.5 mg/dl; median=1.2 mg/dl). Glomerular filtration rate (GFR) was directly assessed by iohexol clearance, and plasma status of folate, pyridoxal 5'-phosphate, and B12, along with serum albumin, were also determined. Linear modeling with ANCOVA revealed that proteinuria was not independently associated with tHcy levels (partial R=0.127; P=0.201), after adjustment for potential confounding by GFR (partial R=0.408; P<0.001), age, sex, plasma B-vitamin status, and serum albumin. Moreover, descending across quartiles (Q) [from Q4 to Q1] of GFR, ANCOVA-adjusted (i.e., for age, sex, and folate status) geometric mean tHcy levels (micromol/l) were significantly increased: tHcy Q4 GFR=9.6; tHcy Q3 GFR=10.5; tHcy Q2 GFR=11.9; tHcy Q4 GFR=14.5; P<0.001 for overall Q difference. We conclude that across a broad spectrum of quantitatively determined proteinuria, after adjustment for true GFR, in particular, there is no independent relationship between proteinuria and tHcy levels among CRD patients with a normal range serum creatinine.

Adult↗

Elevated serum homocysteine levels and increased risk of invasive cervical cancer in US women.

OBJECTIVES: To explore the relationship between serum homocysteine, a sensitive biomarker for folate inadequacy and problems in one-carbon metabolism, and invasive cervical cancer. METHODS: A large case-control study was conducted in five US areas with up to two community controls, obtained by random-digit dialing, individually matched to each case. Cervical cancer risk factors were assessed through at-home interview. Blood was drawn at least 6 months after completion of cancer treatment from 51% and 68% of interviewed cases and controls. Serum homocysteine was measured by high-performance liquid chromatography, and exposure to human papillomavirus (HPV) type 16, the most prevalent oncogenic type, was assessed using an enzyme-linked immunosorbent assay. Cases with advanced cancer and/or receiving chemotherapy were excluded, leaving 183 cases and 540 controls. RESULTS: Invasive cervical cancer risk was substantially elevated for women in the upper three homocysteine quartiles (> 6.31 micromol/L); multivariate-adjusted odds ratios ranged from 2.4 to 3.2 (all 95% CIs excluded 1.0). A trend was apparent and significant (p = 0.01). When cases were compared with HPV-16 seropositive controls only, odds ratios were comparable. CONCLUSIONS: Serum homocysteine was strongly and significantly predictive of invasive cervical cancer risk. This association could reflect folate, B12 and/or B6 inadequacy, or genetic polymorphisms affecting one-carbon metabolism.

Adult↗

Rapid communication: L-folinic acid versus folic acid for the treatment of hyperhomocysteinemia in hemodialysis patients.

BACKGROUND: The hyperhomocysteinemia found in most hemodialysis patients is refractory to combined oral B-vitamin supplementation featuring supraphysiological doses of folic acid (FA). We evaluated whether a high-dose L-folinic acid-based regimen provided improved total homocysteine (tHcy)-lowering efficacy in chronic hemodialysis patients, as suggested by a recent uncontrolled report. METHODS: We block-randomized 48 chronic, stable hemodialysis patients based on their screening predialysis tHcy levels, sex, and dialysis center into two groups of 24 subjects treated for 12 weeks with oral FA at 15 mg/day or an equimolar amount (20 mg/day) of oral L-folinic acid (FNA) [L-5-formyltetrahydrofolate]. All 48 subjects also received 50 mg/day of oral vitamin B6 and 1.0 mg/day of oral vitamin B12. RESULTS: The mean percentage (%) reductions (with 95% CIs) in predialysis tHcy were not significantly different [FNA = 22.1% (11.8 to 31.4%), FA = 20.7% (11.7 to 30.5%), P = 0.950 by paired t test]. Final on-treatment values (mean with 95% CI) were as follows: FNA, 15.9 micromol/L (14.0 to 18.0); FA, 16.9 micromol/L (14.8 to 18.8). Moreover, in those subjects with baseline tHcy levels >/=14 micromol/L, neither treatment resulted in "normalization" of tHcy levels (that is, final on-treatment values <12 micromol/L) among a significantly different or clinically meaningful number of patients [FNA = 2 out of 22 (9.1%); FA = 2 out of 24 (8.3%); Fisher's exact test of between groups difference, P = 1.000]. CONCLUSIONS: Relative to high-dose FA, high-dose oral L-folinic acid-based supplementation does not afford improved tHcy-lowering efficacy in hemodialysis patients. The preponderance of hemodialysis patients (that is,> 90%) exhibits mild hyperhomocysteinemia refractory to treatment with either regimen.

Aged↗

Treatment of hyperhomocysteinemia in hemodialysis patients and renal transplant recipients.

BACKGROUND: Hyperhomocysteinemia, a putative atherothrombotic risk factor, is observed in at least 85% of patients undergoing maintenance hemodialysis (HD), as well as 65 to 70% of renal transplant recipients (RTRs). The hyperhomocysteinemia regularly found in HD patients is largely refractory to combined oral vitamin B supplementation featuring supraphysiological doses of folic acid (FA). Relative to their HD counterparts, the hyperhomocysteinemia of RTRs appears to be considerably less refractory to treatment with high-dose FA-based vitamin B supplementation regimens, although controlled comparison data are lacking. We evaluated whether improved total homocysteine (tHcy)-lowering efficacy could be achieved in chronic HD patients with a high-dose L-5-methyltetrahydrofolate (MTHF)-based regimen, as suggested by recent uncontrolled findings, and compared the relative responsiveness of RTRs and HD patients with equivalent baseline tHcy levels, to 12 weeks of tHcy lowering with combined folate-based vitamin B treatment. METHODS: First, we blocked randomized 50 chronic, stable HD patients based on their screening predialysis tHcy levels, sex, and dialysis center into two groups of 25 subjects treated for 12 weeks with oral FA at 15 mg/day, or an equimolar amount (17 mg/day) of oral MTHF. All 50 subjects also received 50 mg/day of oral vitamin B6 and 1.0 mg/day of oral vitamin B12. RESULTS: The mean percentage (%) reductions (+/- 95% confidence intervals) in predialysis tHcy were not significantly different [MTHF 17.0% (12.0 to 22.0%), FA 14.8% (9.6 to 20.1%), P = 0.444 by matched analysis of covariance adjusted for pretreatment tHcy]. Final on-treatment values (mean with 95% confidence interval) were: MTHF, 20.0 micromol/L (18.8 to 21.2); and FA, 19.5 micromol/L (18.3 to 20.7). Moreover, neither treatment resulted in "normalization" of tHcy levels (that is, final on-treatment values <12 micromol/L) among a significantly different or clinically meaningful number of patients [MTHF, 2 out of 25 (8%); FA, 0 out of 25 (0%); Fisher's exact test of between groups difference, P = 0.490]. Second, we compared the relative responsiveness of (N = 10) RTRs and (N = 39) HD patients with equivalent baseline tHcy levels (RTR range of 14.2 to 23.6 micromol/L, and HD range of 14.4 to 24.9 micromol/L) to 12 weeks of tHcy-lowering treatment. The RTRs received 2.4 mg/day of FA, 50.0 mg/day of vitamin B6, and 0.4 mg/day of vitamin B12, while the HD patients received 15 mg/day of FA or an equimolar amount (17 mg/day) of the reduced folate, MTHF, in addition to 50.0 mg/day of vitamin B6 and 1.0 mg/day of vitamin B12. The mean percentage (%) reductions (+/- 95% confidence interval) in tHcy were as follows: RTR 28.1% (16.2 to 40.0%); HD 12.1% (6.6 to 17.7%, P = 0.027 for comparison of between groups differences by analysis of covariance adjusted for baseline tHcy levels). Moreover, 5 out of 10 (50.0%) of the RTR versus only 2 out of 39 (5.1%) of the HD patients had final on-treatment tHcy levels <12 micromol/L (P = 0.002 for comparison of between groups differences by Fisher's exact test). CONCLUSIONS: First, in comparison to high-dose FA, high-dose oral MTHF-based supplementation does not afford improved tHcy-lowering efficacy among HD patients. The preponderance of HD patients (that is,> 90%) exhibits mild hyperhomocysteinemia refractory to treatment with either regimen. This treatment refractoriness is not related to defects in folate absorption or circulating plasma and tissue distribution. Second, relative to RTR with comparable baseline tHcy levels, the mild hyperhomocysteinemia of maintenance HD patients is much more refractory to tHcy-lowering vitamin B treatment regimens featuring supraphysiological amounts of FA or the reduced folate MTHF. Accordingly, RTRs are a preferable target population for controlled clinical trials testing the hypothesis that tHcy-lowering vitamin B intervention may reduce arteriosclerotic cardiovascular disease event rates in patients with chronic renal disease.

Adult↗

Treatment of hyperhomocysteinemia in end-stage renal disease.

Mild to moderate hyperhomocysteinemia (Hhcy) is observed in more than 90% of patients with end-stage renal disease (ESRD) undergoing maintenance dialysis and approximately 60% to 70% of chronic stable renal transplant recipients. The reported association between Hhcy and the development of arteriosclerotic cardiovascular disease may account, in part, for the disproportionate risk for cardiovascular morbidity and mortality in patients with chronic renal disease. Treatment with the recommended daily allowances of folic acid and vitamins B(6) and B(12), which consistently normalizes total homocysteine (tHcy) levels in the general population free of chronic renal disease, rarely results in the normalization of tHcy levels in patients with ESRD. A large number of investigations now have shown that even grossly supraphysiological doses of folic acid and vitamins B(6) and B(12) fail to normalize tHcy levels in more than 90% of dialysis-dependent patients with ESRD with baseline Hhcy. Conversely, such treatment consistently normalizes tHcy levels among hyperhomocysteinemic chronic stable renal transplant recipients or patients with mild to moderate renal insufficiency. A randomized, placebo-controlled, tHcy-lowering intervention trial involving approximately 4,000 chronic stable US renal transplant recipients (RO1 DK56486 01A2) will soon be underway to formally address the tenable hypothesis that tHcy-lowering treatment may reduce the risk for arteriosclerotic outcomes. Data from this trial should be applicable to patients with chronic renal insufficiency in general.

Folic Acid↗

Serum cystatin C is an independent predictor of total homocysteine levels in stable Korean renal transplant recipients with normal serum creatinine.

OBJECTIVES: To examine the determinants of fasting plasma total homocysteine (tHcy) levels such as cystatin C, serum creatinine (SCr), estimated glomerular filtration rate (GFR) from Cockroft-Gault equation, albumin, plasma folate, vitamin B12, and pyridoxal-5'-phosphate (PLP) among Korean renal transplant recipients (RTR) with normal SCr levels (< or =1.4 mg/dL). DESIGN: Cross-sectional study. SETTING: Nephrology and Transplant Service, Catholic University Kangnam St. Mary's Hospital, Seoul, Korea. PARTICIPANTS: Fifty-one chronic stable Korean RTR with normal SCr levels (< or =1.4 mg/dL) 6 months or more following transplantation. MEASURES: Medical record review, anthropometric measurements, and overnight (10 to 14 hours) fasting blood samples for measurement of plasma tHcy, folate, vitamin B12, PLP, SCr, albumin, and cystatin C. RESULTS: General linear regression model including age, gender, vitamin status, and measurements of renal function showed that cystatin C and folate were independent predictors of tHcy levels. The partial regression coefficient for folate was -0.444 (P <.01) and for cystatin C, it was +0.334 (P <.05). SCr, estimated GFR, vitamin B12, PLP, age, and gender were not independent predictors of tHcy levels in this model. CONCLUSION: Both cystatin C and folate status were major independent determinants of fasting tHcy levels in the subgroup of Korean RTR with normal SCr.

Adult↗