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Biomedical subjects

R Y Gohh

Publications and source records attributed to R Y Gohh.

17 recordsLinked to original sources

Renal allograft loss due to proximal extension of ileofemoral deep venous thrombosis.

Renal allograft recipients with thrombophilic (hypercoagulable) states are at higher risk for early allograft loss. Presumably, the combination of endothelial injury at surgery and thrombophilia predisposes to arterial or venous thrombosis. Of 270 consecutive renal transplants at our center one allograft failed secondary to renovascular thrombosis. At exploration the iliac and renal veins were thrombosed. Thrombectomy and re-implantation were attempted, but unsuccessful. Also noted at surgery was extensive clot in the femoral vein that could not be removed by embolectomy catheters. Post-operatively, a Doppler ultrasound confirmed the presence of extensive deep venous thrombosis (DVT) in the femoral and popliteal veins. The adherent nature of this clot, the extent of clot found less than 12 h after renal transplantation and the absence of leg edema suggested that the DVT existed prior to surgery. This case demonstrates that a pre-existing, asymptomatic DVT can precipitate allograft thrombosis and highlights the importance of diagnosing thrombophilia in patients undergoing renal transplantation. Current practices in our unit have evolved to include screening for thrombophilia in all patients with a suggestive history. As thrombophilic states are increasingly appreciated in the end-stage renal disease population, effective management of these patients while on hemodialysis and at the time of renal transplantation presents an ongoing challenge.

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↗

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 mild hyperhomocysteinemia in renal transplant recipients versus hemodialysis patients.

BACKGROUND: Mild hyperhomocysteinemia is common among maintenance hemodialysis (HD) patients and renal transplant recipients (RTR) and may contribute to the excess incidence of arteriosclerotic outcomes experienced by both patient groups. Relative to their RTR counterparts, the hyperhomocysteinemia of HD patients seems to be considerably more refractory to treatment with high-dose folic acid (FA)-based B-vitamin supplementation regimens, although controlled comparison data are lacking. METHODS: We compared the relative responsiveness of (n=10) RTR and (n=39) HD patients with equivalent baseline total homocysteine (tHcy) levels (i.e., RTR range=14.2-23.6 micromol/L; HD range=14.4-24.9 micromol/L) to 12 weeks of tHcy-lowering treatment. The RTR 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, L-5-methyltetrahydrofolate, in addition to 50.0 mg/day of vitamin B6, and 1.0 mg/day of vitamin B12. RESULTS: The mean percent (%) reductions (+/-95% confidence interval) in tHcy were: RTR=28.1% (16.2-40.0%); HD=12.1% (6.6-17.7%), P=0.027 for comparison of between-groups differences by analysis of covariance adjusted for baseline tHcy levels. Moreover, (50.0%) of 10 of the RTR versus only (5.1%) of 39 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. CONCLUSION: Relative to RTR with comparable baseline tHcy levels, the mild hyperhomocysteinemia of maintenance HD patients is much more refractory to tHcy-lowering B-vitamin treatment regimens featuring supraphysiological amounts of FA or the reduced folate, L-5-methyltetrahydrofolate. Accordingly, RTR are a preferable target population for controlled clinical trials testing the hypothesis that tHcy-lowering B-vitamin intervention may reduce arteriosclerotic cardiovascular disease event rates in patients with chronic renal disease.

Adult↗

Determinants of fasting plasma total homocysteine levels among chronic stable renal transplant recipients.

BACKGROUND: Although several studies have demonstrated an unadjusted association between folate status and fasting plasma total homocysteine (tHcy) levels among renal transplant recipients, no data confirming the strength or independence of this association have been reported. METHODS: We determined fasting plasma folate, B12, and pyridoxal 5'-phosphate (active vitamin B6) levels, along with other potential determinants of plasma tHcy levels (i.e., age, sex, creatinine levels, and Cockcroft-Gault estimated creatinine clearance, current immunosuppressive regimen, and history of clinical cardiovascular disease), among 86 renal transplant recipients. The recipients were > or =6 months after transplantation, lived in the Providence, Rhode Island metropolitan area, and were examined between February and June 1998. RESULTS: Stepwise general linear modeling with analysis of covariance revealed that only creatinine level, age, and vitamin status were independent regressors (i.e., P<0.100) of tHcy levels. Moreover, creatinine level alone determined most of the variability in tHcy levels (i.e., R2) accounted for by these independent variables (R2=0.416 for creatinine level alone; total R2=0.575). In contrast, the R2 for folate alone was only 0.046, and even for all three B vitamins combined, the R2 was just 0.088. CONCLUSIONS: We conclude that renal function is the overriding independent determinant of fasting tHcy levels among stable renal transplant recipients. In comparison to renal function, vitamin status has a relatively marginal influence on tHcy levels and cyclosporine use has essentially none at all.

Adult↗

Prevalence of mild fasting hyperhomocysteinemia in renal transplant versus coronary artery disease patients after fortification of cereal grain flour with folic acid.

Cereal grain flour products fortified with 140 microg folic acid per 100 g flour became widely available in southeast New England by July 1997. We hypothesized that improved folate status secondary to this fortification policy would have a much more limited impact on the prevalence of mild fasting hyperhomocysteinemia in renal transplant versus coronary artery disease patients. Between October 1997 and October 1998, fasting plasma total homocysteine (tHcy), folate and vitamin B12 levels were determined in a total of 86 renal transplant patients with stable allograft function, and 175 coronary artery disease patients whose serum creatinine was (1.4 mg/dl). All subjects lived in the Providence, RI, metropolitan area, and were either non-users of any supplements containing folic acid, vitamins B6 or B12, or had refrained from using such supplements for > or = 6 weeks. Geometric mean fasting tHcy levels were 88.0% higher (15.6 vs. 8.3 micromol/l; P < 0.001), and the prevalence of fasting tHcy levels > or = 12 microM (69.8% vs. 10.9%, P < 0.001) was markedly increased in the renal transplant patients, despite a much younger mean age and a relative preponderance of women. In the era of folic acid fortified flour, hyperhomocysteinemia is much more common in stable renal transplant versus coronary artery disease patients. As a result, renal transplant patients are a preferable high risk target population for controlled trials evaluating the tenable hypothesis that lowering total homocysteine levels will reduce cardiovascular disease outcomes.

Coronary Disease↗

Enhanced reduction of fasting total homocysteine levels with supraphysiological versus standard multivitamin dose folic acid supplementation in renal transplant recipients.

The mild fasting hyperhomocysteinemia commonly observed in chronic (ie, >/=6 months posttransplantation) renal transplant recipients (RTRs) can be effectively treated with combined B-vitamin supplementation featuring supraphysiological doses of folic acid. There are no controlled data evaluating the comparative efficacy of supraphysiological versus standard multivitamin dose folic acid supplementation in reducing fasting total homocysteine (tHcy) levels among RTRs. We block-randomized 60 chronic, stable RTRs on the basis of their screening fasting tHcy level to 3 groups of 20 subjects treated for 12 weeks with folic acid at either 2.4 (group 1), 0.4 (ie, standard multivitamin dose) (group 2), or 0.0 (group 3) mg/d. All 60 study participants also received 50 mg/d vitamin B(6) and 0.4 mg/d vitamin B(12). The mean percent reductions (+/-SEM) in fasting tHcy were as follows: group 1, 32.3+/-2.4%; group 2, 23.4+/-2.3%; and group 3, 19.1+/-2.3%. ANCOVA accounting for the pretreatment matching and adjusted for pretreatment levels of fasting tHcy, folate, and albumin; change in creatinine during the study; and cyclosporine A use revealed significant overall group differences (P=0.005) and significant differences between groups 1 and 2 (P=0. 038) and groups 1 and 3 (P=0.001), but not between groups 2 and 3 (P=0.153). Moreover, a chi(2) analysis of participants with pretreatment tHcy levels >/=15 micromol/L (n=29) indicated that a significantly greater proportion of those in group 1 achieved posttreatment levels <12 micromol/L: group 1, 5 of 10 (50%); group 2, 1 of 11 (9%); and group 3, 0 of 8 (0%) (P=0.016; test of trend P=0. 007). We conclude that a supraphysiological dose of folic acid is superior to standard multivitamin dosing for the reduction of fasting tHcy levels in chronic RTRs.

Adult↗

Serum cystatin C as a determinant of fasting total homocysteine levels in renal transplant recipients with a normal serum creatinine.

Serum creatinine, a surrogate for both renal function and homocysteine generation, is an important determinant of fasting plasma total homocysteine levels in stable renal transplant recipients. In this study, it is hypothesized that among stable renal transplant recipients with normal creatinine levels (i.e., < or = 1.5 mg/dl), serum cystatin C, a more sensitive indicator of GFR, would better predict fasting total homocysteine levels compared with serum creatinine. Fasting plasma total homocysteine, folate, vitamin B12, and pyridoxal 5'-phosphate levels, along with serum cystatin C, creatinine, and albumin levels, were determined in 28 consecutive renal transplant recipients (mean age 47 +/- 14 yr; 60.7% men) with stable allograft function, whose serum creatinine was < or = 1.5 mg/dl. General linear modeling with analysis of covariance revealed that serum cystatin C was independently predictive (partial R = 0.494; P = 0.023) of fasting total homocysteine levels after adjustment for age, gender, vitamin status, albumin, and creatinine levels. In contrast, creatinine levels were not predictive of fasting total homocysteine levels in this model (P = 0.110) or an identical model that excluded cystatin C (P = 0.131). Serum cystatin C levels may reflect subtle decreases in renal function that independently predict fasting total homocysteine levels among stable renal transplant recipients with a normal serum creatinine.

Adult↗

Treatment of hyperhomocysteinemia in renal transplant recipients. A randomized, placebo-controlled trial.

BACKGROUND: Stable renal transplant recipients have an excess prevalence of hyperhomocysteinemia, which is a risk factor for arteriosclerosis. OBJECTIVE: To determine the effect of treatment with 1) vitamin B6 or 2) folic acid plus vitamin B12 on fasting and post-methionine-loading plasma total homocysteine levels in renal transplant recipients. DESIGN: Block-randomized, placebo-controlled, 2 x 2 factorial study. SETTING: University-affiliated transplantation program. PATIENTS: 29 clinically stable renal transplant recipients. INTERVENTION: Patients were randomly assigned to one of four regimens: placebo (n = 8); vitamin B6, 50 mg/d (n = 7); folic acid, 5 mg/d, and vitamin B12, 0.4 mg/d (n = 7); or vitamin B6, 50 mg/d, folic acid, 5 mg/d, and vitamin B12, 0.4 mg/d (n = 7). MEASUREMENTS: Fasting and 2-hour post-methionine-loading plasma total homocysteine levels. RESULTS: Vitamin B6 treatment resulted in a 22.1% reduction in geometric-mean post-methionine-loading increases in plasma total homocysteine levels (P = 0.042), and folic acid plus vitamin B12 treatment caused a 26.2% reduction in geometric-mean fasting plasma total homocysteine levels (P = 0.027). These results occurred after adjustment for age; sex; and pretreatment levels of total homocysteine, B vitamins, and creatinine. CONCLUSIONS: Vitamin B6 should be added to the combination of folic acid and vitamin B12 for effective reduction of both post-methionine-loading and fasting plasma total homocysteine levels in renal transplant recipients.

Drug Therapy, Combination↗

Late renal allograft failure secondary to thrombotic microangiopathy associated with disseminated malignancy.

A renal transplant recipient with a remote history of end-stage renal disease due to postpartum hemolytic-uremic syndrome (HUS) presented with acute renal failure after having stable renal allograft function for 9 years. A diagnosis of thrombotic microangiopathy was made based on clinical and histologic findings at renal biopsy. She was treated conservatively, never regaining graft function and ultimately succumbing from her overwhelming tumor load approximately 6 months following diagnosis of her malignancy. To our knowledge, this is the first report of thrombotic microangiopathy associated with disseminated malignancy resulting in renal allograft failure.

Acute Kidney Injury↗

Excess prevalence of fasting and postmethionine-loading hyperhomocysteinemia in stable renal transplant recipients.

Hyperhomocysteinemia, either fasting or after methionine loading, may contribute to the increased incidence of cardiovascular disease events experienced by renal transplant recipients. Limited data are available on fasting homocysteine (Hcy) levels, and none on postmethionine-loading Hcy levels, in these patients. We assessed the prevalence and potential determinants of fasting and postmethionine-loading hyperhomocysteinemia in 29 stable renal transplant recipients and 58 age- and sex-matched, population-based controls free of renal disease with serum creatinine levels of 1.5 mg/dL or less. Total (t) plasma Hcy was determined fasting and 2 hours after methionine loading, along with fasting determinations of the B-vitamin cofactors/substrates for Hcy metabolism, ie, pyridoxal 5'-phosphate, B-12, and folate and serum creatinine. Geometric mean fasting (18.1 versus 9.8 microM, P < .001) and postmethionine-loading increase (22.0 versus 15.2, P = .001) in tHcy levels were significantly greater in the renal transplant recipients, as were the prevalence odds (with 95% confidence intervals) for fasting [14.8 (3.4-64.7)], postmethionine loading [6.9 (1.5-32.8)], combined fasting and postmethionine-loading [18.0 (2.3-142.1)] hyperhomocysteinemia, and inadequate circulating folate [4.2 (1.1-16.5)] or pyridoxal 5'-phosphate [3.2 (0.9-11.0) status. Correlation analyses suggested important potential relationships between creatinine and both fasting (+0.64, P < .001) and postmethionine-load increase (+0.38, P = .045) in tHcy, folate and fasting (-0.41, P = .025) tHcy, and pyridoxal 5'-phosphate and postmethionine-loading increase (-0.33, P = .091) in tHcy. We conclude that there is an excess prevalence of fasting and postmethionine-loading hyperhomocysteinemia in stable renal transplant recipients. Renal function is related to both fasting and postmethionine loading-hyperhomocysteinemia, inadequate folate status is associated with fasting hyperhomocysteinemia, and inadequate vitamin B-6 status may be related to postmethionine-loading hyperhomocysteinemia in this patient population.

Adult↗