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A J Donker

Publications and source records attributed to A J Donker.

At least 19 recordsLinked to original sources

Capillary recruitment is impaired in essential hypertension and relates to insulin's metabolic and vascular actions.

OBJECTIVE: In patients with essential hypertension, defects in both the metabolic and vascular actions of insulin have been described. Impaired microvascular function, a well-established abnormality in essential hypertension, may explain part of these defects. In the present study we investigated whether microvascular function is impaired in essential hypertension and relates to insulin's metabolic and vasodilatatory actions. METHODS: We measured 24-h ambulatory blood pressure, capillary recruitment after arterial occlusion, and skin blood flow responses to iontophoresis of acetylcholine and sodium nitroprusside in 18 subjects with untreated essential hypertension and in 18 control subjects. Whole body insulin sensitivity and leg insulin-mediated vasodilatation were assessed with the hyperinsulinaemic clamp technique and plethysmography. RESULTS: Hypertensive, as compared to normotensive, subjects had a decreased insulin sensitivity (0.8+/-0.3 vs. 1.7+/-0. 6 mgkg(-1)min(-1) per pmoll(-1); P<0.001), capillary recruitment after arterial occlusion (21.5+/-5.8 vs. 45.9+/-10.4%; P<0.001), acetylcholine-mediated vasodilatation (331+/-84 vs. 688+/-192%; P<0. 001), and insulin-mediated vasodilatation (median 29.3 vs. 47.2%; P<0.05). Correlation analyses with adjustment for sex, age, body mass index and waist-to-hip ratio showed significant relationships of capillary recruitment after arterial occlusion with blood pressure (r=-0.68; P<0.01), insulin sensitivity (r=+0.55; P<0.01) and insulin-mediated vasodilatation (r=+0.51; P<0.05), which extended from the normotensive to the hypertensive range. CONCLUSION: Skin microvascular function is associated with blood pressure and insulin's metabolic and vasodilatatory actions, both in normotensive and hypertensive subjects. These findings offer a potential mechanistic explanation of the links among insulin resistance, impaired insulin-mediated vasodilatation and hypertension.

Adult↗

Determinants of albuminuria in people with Type 2 diabetes mellitus.

This study sought to identify determinants of albuminuria in people with Type 2 diabetes. In 335 primary care patients, we assessed albumin-creatinine ratio (ACR) in two 24-h urine samples, and its cross-sectional associations with protein and alcohol intake, cigarette smoking, body weight and height, glycosuria, blood pressure, hypoglycaemic and antihypertensive treatment, gender, age, age at diagnosis, diabetes duration, family history of diabetes and cardiovascular diseases, ethnic origin, and education. The prevalence of micro- or macro-albuminuria (ACR> or =2.0 mg/mmol) was 33%. Among these patients, compared to those with normo-albuminuria, there were more men, protein intake (g/kg) estimated from urinary urea as well as systolic blood pressure and glycosuria were higher, there were more smokers, men were shorter, and a family history of diabetes was less prevalent (all P<0.05). In linear and logistic regression (n=270) albuminuria was independently associated (P<0.05 unless indicated otherwise) with systolic blood pressure (OR(10 mmHg)=1.32), smoking (OR(ex/never)=2.36, OR(current/never)=4.89), glycosuria (OR(> or =7/<1 g/l)=2.41), gender (OR(men/women)=2.50), age in men (OR(10 year)=1.60) (P<0.10) and, inversely, in women (OR(10 year)=0.63) (P>0.10). On aggregation, the modifiable determinants systolic blood pressure, smoking and glycosuria explained 12% of the variation in albuminuria. These factors thus are, although to a moderate extent only, potential determinants of albuminuria. We also observed an independent, inverse association with body height (OR(0.10 m)=0.47). This is in line with the hypothesis that development in utero or during early life influences kidney function in later life.

Aged↗

Effects of insulin on glucose uptake and leg blood flow in patients with sickle cell disease and normal subjects.

The hemodynamic concept of insulin resistance assumes that vasodilatory effects of insulin determine glucose uptake. Sickle cell disease (SCD) is characterized by microangiopathy and microvascular occlusion. Therefore, we hypothesized that patients with SCD have a reduced insulin-mediated glucose uptake. In 8 patients with SCD and 8 matched normal controls, we studied the effects of a 4-hour insulin infusion (50 mU/kg/h) on glucose uptake and leg blood flow (LBF) using the euglycemic clamp technique and venous occlusion plethysmography. Time-control experiments were performed in the same subjects. Insulin-mediated glucose uptake (M value, mg/kg/min) did not differ between patients with SCD and control subjects during the second (6.3 +/- 4.6 and 7.6 +/- 2.6, P =.5), third (7.5 +/- 4.6 and 9.3 +/- 3.4, P =.4) and fourth hour (8.6 +/- 4.7 and 11.0 +/- 2.9, P =.2) of the clamp. At baseline, LBF was higher in the patients with SCD than in the controls (3.28 +/- 1.68 and 1.37 +/- 0.47 mL/min/dL, respectively; P =.005). Insulin-induced increases in LBF in patients with SCD and in normal subjects were not different (P =.9). Respectively, 56% and 24% of the changes in glucose uptake could be explained from changes in LBF in the course of the insulin infusion in the patients with SCD and controls. We suppose that the comparable insulin sensitivity between both groups is due to a compensatory hemodynamic state in SCD characterized by vasodilation and increased flow.

Adult↗

Serum homocysteine levels are associated with the development of (micro)albuminuria: the Hoorn study.

Microalbuminuria is a strong indicator of the risk of future cardiovascular disease and renal dysfunction. Slightly increased levels of homocysteine, an independent risk factor for atherothrombotic disease, have recently been found to be associated with the presence of (micro)albuminuria. However, it is unknown whether increased homocysteine levels precede the occurrence of (micro)albuminuria. Normoalbuminuric subjects (n=316, 66 with non-insulin-dependent diabetes mellitus [NIDDM]) of an age-stratified, sex-stratified, and glucose tolerance-stratified sample of a population-based cohort study were investigated at baseline and after a mean follow-up duration of 6.1 years. Development of (micro)albuminuria was defined as a mean albumin-to-creatinine ratio >2.0 mg/mmol at the follow-up examination. The cumulative incidence of (micro)albuminuria was 14. 0% (9.7 % to 18.3%) among nondiabetic subjects and 22.7% (12.9% to 32.5%) among NIDDM patients. Age-adjusted, sex-adjusted, and glucose tolerance status-adjusted logistic regression analyses showed development of (micro)albuminuria to be significantly associated with baseline homocysteine levels >19.0 micromol/L compared with homocysteine levels <9.1 micromol/L (odds ratio [OR] 5.1, 95% CI 1.1 to 23.0). For homocysteine levels of 9.1 to 14.0 micromol/L and 14.1 to 19.0 micromol/L, the values were OR 1.2 (95% CI 0.5 to 3.0) and OR 1.8 (95% CI 0.6 to 5.3), respectively. Additional adjustment for baseline insulin resistance, blood pressure, body mass index, presence of cardiovascular disease and retinopathy, current smoking, or estimates of glomerular filtration rate did not materially affect the results. Substituting homocysteine levels as a continuous variable for categories of homocysteine levels showed that a 5-micromol/L increase of the homocysteine level was associated with an increased risk of developing (micro)albuminuria (OR 1.38, 95% CI 0.97 to 1.95). Analyses performed in nondiabetic and diabetic subjects separately gave similar results among nondiabetic subjects. Among diabetic subjects, the association between homocysteine level and (micro)albuminuria could not be estimated, because there was an insufficient number of diabetic subjects with high homocysteine levels. Hyperhomocysteinemia is an independent determinant of the development of (micro)albuminuria among nondiabetic subjects, even after adjustment for estimates of glomerular filtration rate. We could neither confirm nor reject an association between homocysteine levels and the development of (micro)albuminuria among NIDDM subjects. These data suggest that homocysteine may play a pathophysiological role in the development of (micro)albuminuria.

Age Factors↗

Impaired skin capillary recruitment in essential hypertension is caused by both functional and structural capillary rarefaction.

Capillary rarefaction occurs in many tissues in patients with essential hypertension and may contribute to an increased vascular resistance and impaired muscle metabolism. Rarefaction may be caused by a structural (anatomic) absence of capillaries, functional nonperfusion, or both. The aim of this study was to assess the extent of structural versus functional capillary rarefaction in the skin of subjects with essential hypertension. We examined skin capillary density with video microscopy before and during maximization of the number of perfused capillaries by venous congestion (structural capillary number) and before and during postocclusive reactive hyperemia (capillary recruitment, which may have a structural and/or functional basis). The study group was composed of 26 patients with never-treated essential hypertension and 26 normotensive control subjects. In both groups, intermittently perfused capillaries in the resting state were an important functional reserve for recruitment during postocclusive hyperemia. Recruitment of perfused capillaries during postocclusive reactive hyperemia was decreased in the hypertensive subjects compared with normotensive control subjects (47.9+/-6.8 versus 55.3+/-8.2 capillaries/mm(2), respectively; P<0.01). During venous occlusion, maximal capillary density was significantly lower in the hypertensive subjects than in the control subjects (52.5+/-6.6 versus 57.2+/-8.6 capillaries/mm(2), respectively; P<0.05), suggesting structural rarefaction. However, in the hypertensive subjects compared with the normotensive subjects, a smaller proportion of the maximal number of capillaries was perfused during postocclusive hyperemia (91.6+/-7.5% versus 97.2+/-2.7%, respectively; P<0.05), suggesting an additional functional impairment of capillary recruitment. If the difference in capillary numbers during venous congestion ( approximately 4.6 capillaries/mm(2)) truly reflects the structural difference between the normotensive and hypertensive subjects, then, at most, 62% (4.6/7.4x100%) of the difference in capillary numbers during postocclusive hyperemia ( approximately 7.4 capillaries/mm(2)) can be explained by structural defects, and at least 38% can be explained by functional defects. In conclusion, in patients with essential hypertension, recruitment of perfused capillaries is impaired, which can be explained by both functional and structural rarefaction.

Capillaries↗

Is pseudocholinesterase activity related to markers of triacylglycerol synthesis in Type II diabetes mellitus?

Hypertriglyceridaemia is a risk factor for cardiovascular disease in patients suffering from Type II diabetes mellitus, and is due to enhanced synthesis and/or impaired clearance of triacylglycerol-rich lipoproteins. In the present study we investigated whether pseudocholinesterase (PChE) activity could serve as a marker for the rate of triacylglycerol synthesis in these patients. Patients were stratified according to their apolipoprotein E (apoE) phenotype, i.e. E3E2, E3E3 or E3E4. In study I, the relationship between PChE activity and serum triacylglycerols was investigated in 224 insulin-treated patients with Type II diabetes. In study II, which had a cross-over design, PChE activity was measured in 45 dyslipidaemic, insulin-treated patients with Type II diabetes that were treated with bezafibrate or pravastatin. In study I, PChE activity was correlated positively with serum triacylglycerol concentrations, but did not differ significantly between apoE phenotypes. The strongest relationship was found in the E3E4 group (r=0.50; P=0.001), the phenotype for which hypertriglyceridaemia is expected to be the result of increased triacylglycerol synthesis. In a stepwise multiple regression analysis, serum triacylglycerol concentrations were found to be the strongest predictor of PChE activity in the E3E4 group. In study II, PChE activity decreased as a result of bezafibrate treatment in all three apoE groups. The decrease in PChE activity with bezafibrate treatment paralleled the decrease in serum triacylglycerol concentrations in the apoE subgroups. Pravastatin treatment did not significantly affect PChE activity. Thus the present study suggests an association between PChE activity and the rate of triacylglycerol synthesis. Measurement of PChE activity may therefore be a useful tool in the choice of drug for treatment of hypertriglyceridaemia in patients with Type II diabetes.

Aged↗

Adherence to protein restriction in patients with type 2 diabetes mellitus: a randomized trial.

OBJECTIVE: To describe the extent to which diet counselling can decrease protein intake, and to identify predictors of adherence. DESIGN: (1) Randomized trial; (2) observational longitudinal study. SUBJECTS: (1) 125 type 2 diabetic patients in primary care; (2) 59 patients in the experimental group. INTERVENTION: For a period of 12 months, dieticians provided guidance on protein restriction (experimental group, n=59) or the usual dietary advice (control group, n=66). OUTCOME MEASURES: Adherence was estimated primarily from urinary urea excretion (UUE), but also from food-frequency questionnaires (FFQ). RESULTS: After 6 months protein intake was, according to the UUE and the FFQ, respectively, 8 g/day (95% CI -2, 13) (8%) and 15 g/day (95%-CI 9, 22) (16%) lower in the experimental than in the control group. After 12 months these differences were smaller. Linear regression analysis indicated that protein restriction was greater in patients who were well satisfied with their pre-existing diet (r=0.32, bper 1/10=3.6 (1, 6) g), in patients who were less overweight (r=0.32, bper kg.m-2=1.1 (0.2, 2. 0) g), and in patients living alone (r=0.22, b=7.7 (-2, 17) g). These combined factors explained only 11% of variation in adherence. Adherence was not predicted by the number of barriers reported by the patients or by coinciding changes in diet satisfaction. CONCLUSIONS: The diet counselling resulted in a very moderate degree of protein restriction only. Predictors of adherence could be identified, but only a few, and their predictive power was limited.

Aged↗

ACE-inhibition modulates some endothelial functions in healthy subjects and in normotensive type 1 diabetic patients.

BACKGROUND: The usefulness of treatment with an angiotensin-converting enzyme-inhibitor (ACE-inhibitor) in normotensive patients with type 1 diabetes is controversial. We investigated whether ACE-inhibition improves endothelial function in such patients and compared the responses to those in healthy subjects. DESIGN: We studied 23 healthy volunteers (controls, aged 29.8 [SD 7.0] years) and 24 type 1 diabetic patients (aged 28.7 [9. 6] years; HbA1c 8.1 [1.2]%; diabetes duration 13.8 [2-30] years; blood pressure < 140/90 mm Hg; 7 with microalbuminuria) after 5 weeks of ACE-inhibition (quinapril, 10 mg day-1) and placebo in a randomized, double-blind cross-over design. Estimates of endothelial function obtained were by flow-mediated vasodilation and plasma levels of endothelium-derived proteins. RESULTS: As estimated from the measurements on placebo, type 1 diabetic patients, as compared to the controls, had some impairment of endothelial function: plasma tissue-type plasminogen activator levels were lower (3.5 vs. 5.4 ng mL(-1), P<0.05), but there were no significant differences in brachial artery flow-mediated vasodilation or plasma levels of von Willebrand Factor, endothelin-1, plasminogen activator inhibitor-1, soluble E-selectin or vascular cell adhesion molecule-1. As compared to placebo, ACE-inhibition increased flow-mediated vasodilation in controls (by 3.84% points [95% CI, 0.66 - 7.02], P<0.05), but not in type 1 diabetic patients (0.82% points [95% CI, -2.72 - 4.36], P = 0.64; P = 0.08 vs. controls). On ACE-inhibition soluble E-selectin levels decreased both in controls (from 43.0 to 37.0 ng mL(-1), P<0.01) and in type 1 diabetic patients (from 41.0 to 39.0 ng mL(-1), P = 0.09). Other endothelial markers did not change during ACE-inhibition. CONCLUSION: Normotensive type 1 diabetic patients with normoalbuminara or microalbuminuria have mild endothelial dysfunction. Short-term ACE-inhibition improves endothelial function as reflected by a decreased sE-selectin in healthy subjects and in normotensive type 1 diabetic patients. In healthy subjects, ACE-inhibition increases flow-mediated vasodilation. In contrast, in type 1 diabetic patients, ACE-inhibition does not affect flow-mediated vasodilation.

Adult↗

Insulin-mediated increases in renal plasma flow are impaired in insulin-resistant normal subjects.

BACKGROUND: Impaired vasodilatation in skeletal muscle is a possible mechanism linking insulin resistance to blood pressure regulation. Increased renal vascular resistance has been demonstrated in the offspring of essential hypertensives. We assessed whether insulin-mediated renal vasodilatation is impaired in insulin-resistant normal subjects. DESIGN: In two groups of 10 insulin-resistant and 10 insulin-sensitive normal subjects, we compared the effects of sequential physiological and supraphysiological insulin dosages (50 and 150 mU kg(-1) h(-1)) on renal plasma flow (RPF) and leg blood flow using the euglycaemic clamp technique, 131I-labelled Hippuran clearances and venous occlusion plethysmography. Time-control experiments were performed in the same subjects. RESULTS: Whole-body glucose uptake amounted to 4.9 +/- 2.1 and 11.0 +/- 2.4 mg kg(-1) min(-1) in the insulin-resistant and to 12.7 +/- 2.3 and 17.4 +/- 2.6 mg kg(-1) min(-1) in the insulin-sensitive subjects during physiological and supraphysiological hyperinsulinaemia, respectively. RPF increased more in insulin-sensitive compared to insulin-resistant subjects during physiological hyperinsulinaemia (13.7 vs. 6.8%, P < 0.05). RPF increased to comparable levels during supraphysiological hyperinsulinaemia. Insulin-mediated changes in leg blood flow did not differ between groups. In the combined group, we found a positive correlation between insulin-mediated glucose uptake and changes in RPF during physiological hyperinsulinaemia (r = 0.57, P = 0.009), whereas insulin-mediated glucose uptake correlated with changes in leg blood flow during supraphysiological hyperinsulinaemia (r = 0.54. P = 0.017). CONCLUSIONS: Our results suggest that the sensitivities of the skeletal muscle and renal vascular bed differ for insulin's vasodilatory action. Insulin-mediated increases in RPF are impaired in insulin-resistant but otherwise normal subjects during physiological hyperinsulinaemia.

Adult↗

Diameter of inferior caval vein and impedance analysis for assessment of hydration status in peritoneal dialysis.

In 19 stable peritoneal dialysis (PD) patients, hydration status was evaluated by measurement of vena cava diameter (VCD) and bioelectrical impedance analysis (BIA) variables: intracellular water (ICW), extracellular water (ECW), and total body water (TBW). We investigated whether BIA can replace VCD. VCD did not correlate with TBW but correlated moderately with ECW/TBW (r = 0.42; 0.025 < p < 0.05) and ICW/ECW (r = -0.47; p < 0.025). Patients with underhydration (n = 4; VCD <8 mm/m2) revealed limits for BIA variables as ICW/ECW (>1.50) and ECW/TBW (<0.40). The same held true for overhydration (n = 5; VCD >11.5 mm/m2): ICW/ECW (<1.50) and ECW/TBW (>0.40). Although the positive predictive value of ICW/ECW and ECW/TBW for both under- and overhydration was only 50% and 54%, respectively, there were no false negative values. Although BIA cannot replace VCD in PD patients, the reverse holds true as well. Combining BIA and VCD may lead to a better estimation of hydration status because both techniques provide complementary information.

Adult↗

Genetic polymorphisms of the renin-angiotensin system and complications of insulin-dependent diabetes mellitus.

OBJECTIVE: Patients with insulin-dependent diabetes mellitus (IDDM) have a high risk of developing diabetic nephropathy, retinopathy and cardiovascular diseases. The contribution of gene polymorphisms of the renin angiotensin system to these complications is controversial and may differ among populations. METHODS: In 257 Dutch IDDM patients (188 with urinary albumin excretion (UAE) <30 mg/24 h), logistic regression analysis was used to study the relationships among, on the one hand, the insertion/deletion gene polymorphism of the angiotensin-converting enzyme gene (ACE-ID), the M235T gene polymorphism of the angiotensinogen gene (AGT-M235T), and the A1166C gene polymorphism of the angiotensin type 1 receptor gene (AT1-A1166C), and, on the other hand, UAE, retinopathy, hypertension, and coronary heart disease. RESULTS: The T-allele of the AGT-M235T polymorphism was associated with an increased risk of an elevated UAE (odds ratio (OR) 3.03; 95% confidence interval (CI) 1.06-8.61), but only when interaction with the D-allele of the ACE-ID polymorphism was considered. A previously described positive interaction between the T-allele of the AGT-M235T polymorphism and the D-allele of the ACE-ID polymorphism could not be confirmed. The T-allele was also associated with an increased risk of retinopathy (OR 3.89, 95% CI 1.79-8.47). The CC-genotype of the AT1-A1166C polymorphism was associated with hypertension (OR 3.58; 95% CI 1. 23-10.37). CONCLUSIONS: In a Dutch IDDM population, including 69 patients with (incipient) diabetic nephropathy, the T-allele of the AGT-M235T polymorphism is associated with an elevated UAE and diabetic retinopathy and the CC-genotype of the AT1-A1166C polymorphism is associated with hypertension. A previously described interaction between the AGT-M235T and the ACE-ID polymorphisms could not be confirmed. Since the number of nephropathic patients in this study is small, these conclusions must be interpreted with caution.

Adult↗

Change in common carotid artery diameter, distensibility and compliance in subjects with a recent history of impaired glucose tolerance: a 3-year follow-up study.

OBJECTIVE: To assess the development of common carotid artery properties (diameter, distensibility and compliance) in a cohort of 140 subjects (mean age 65.8 years, SD 7.5 years) originally diagnosed as impaired glucose tolerant in a population-based study, and to explore determinants of changes observed. DESIGN: An observational, longitudinal study over a 3-year-period. METHODS: Vessel wall movement detector system based on ultrasonography, linear generalized estimating equations. RESULTS: Carotid artery diameter rose from 6.87-7.02 mm (+ 2.2%, P<0.001). Distensibility decreased from 11.8 to 10.9 x 10-3 kPa-1 (-8.3%, P=0.009). Compliance decreased from 0.44-043 mm2 kPa-1 (P=0.17). Changes in blood pressure level were negatively associated with changes in distensibility and compliance. Baseline fasting glucose levels were positively associated with changes in diameter, while fasting insulin levels were negatively associated with changes in distensibility and compliance in men, but not in women. CONCLUSIONS: In subjects with a recent history of impaired glucose tolerance, we observed an increase in carotid artery diameter and a decrease in distensibility. Change in blood pressure level and baseline fasting glucose and HbA1c levels were positively related to the increase in diameter. In men, but not in women, baseline fasting insulin levels were associated with an acceleration of these changes.

Aged↗

Birth weight relates to blood pressure and microvascular function in normal subjects.

OBJECTIVE: The relationship between low birth weight and elevated blood pressure in adult life is well established but presently unexplained. Both microvascular dysfunction and insulin resistance have been proposed as a possible explanation. We have examined the relation between birth weight and blood pressure in 30 healthy subjects exhibiting a wide range of insulin sensitivity, and assessed whether microvascular function and/or insulin resistance may underlie this relationship. METHODS: Birth weight data were obtained from birth announcements. Blood pressure was measured with an ambulatory blood pressure monitor and insulin sensitivity was assessed by the hyperinsulinaemic, euglycaemic clamp technique. Microvascular function, i.e. capillary recruitment and endothelium-dependent and -independent vasodilatation in the skin, was evaluated by videomicroscopy and iontophoresis of acetylcholine and sodium nitroprusside. RESULTS: Birth weight was significantly associated with blood pressure (r= -0.50; P< 0.05), capillary recruitment (r= +0.52; P< 0.05), acetylcholine-mediated vasodilatation (r= +0.40; P< 0.05), insulin sensitivity (r= +0.62; P< 0.01) and waist-to-hip ratio (r= -0.42; P< 0.05). Regression analysis showed a significant association of birth weight with 24 h systolic blood pressure (regression coefficient: -7.6 mmHg/kg; 95% confidence interval: -13.0 to -1.0). Adjustment for capillary recruitment and waist-to-hip ratio decreased the regression coefficient by 39 and 41%, respectively. The results were similar after adjustment for age, sex or body mass index. CONCLUSION: These results suggest that capillary recruitment and body fat distribution may partly explain the relationship between birth weight and blood pressure.

Adult↗

Effects of insulin and atrial natriuretic peptide on renal tubular sodium handling in sickle cell disease.

We assessed the effect of insulin and atrial natriuretic peptide (ANP) on renal sodium handling in eight patients with sickle cell disease (SCD), who are characterized by loss of vasa recta and long loops of Henle, and matched control subjects. During insulin infusion (50 mU. kg(-1). h(-1)), fractional sodium excretion decreased by 0.44 +/- 0.72% (P = 0.13) in patients with SCD and by 0. 57 +/- 0.34% (P = 0.002) in control subjects, whereas fractional distal sodium reabsorption increased by 4.1 +/- 1.5% (P < 0.001) and 3.0 +/- 1.5% (P < 0.001), respectively. Low-dose (0.3 pmol. kg(-1). h(-1)) ANP infusion did not affect renal sodium handling in patients with SCD but increased fractional sodium excretion by 0.34 +/- 0.22% (P = 0.003) in control subjects. High-dose (2 microg/min) ANP increased natriuresis to a similar extent in both groups. Insulin's antinatriuretic effects predominated over the natriuretic effects of low-dose, but not high-dose, ANP. These data suggest that insulin's antinatriuretic effect is localized at a distal tubular site other than the long loops of Henle and that the long loops are involved in the natriuretic effect of low-dose ANP, possibly mediated by changes in medullary blood flow.

Absorption↗

Carotid artery stiffness in patients with end-stage renal disease: no effect of long-term homocysteine-lowering therapy.

BACKGROUND: The excess of cardiovascular disease in end-stage renal disease (ESRD) patients is unexplained, but could relate to altered intrinsic vascular wall properties, such as increased arterial stiffness, which could be mediated by hyperhomocysteinemia. We investigated potential determinants of carotid artery stiffness in ESRD patients and the effect of long-term homocysteine-lowering treatment. PATIENTS AND METHODS: Fifty-four patients on maintenance dialysis treatment were studied at baseline. Fourty-one patients completed the treatment protocol, which consisted of a 12-week treatment with folic acid 5 mg daily with or without betaine 4 g per day, and of 1 or 5 mg of folic acid thereafter for 40 weeks. Both phases were randomized. Compliance and distensibility coefficients (CC and DC) and the stiffness index (beta) of the common carotid artery were determined at baseline and after 52 weeks of treatment using a non-invasive vessel wall movement detector system. RESULTS: At baseline, plasma total homocysteine was elevated (44.1+/-33.7 micromol/l), but showed no relationship with CC, DC or beta. Age and mean arterial pressure (MAP) were the only independent determinants of CC and DC, whereas beta was associated with age only. Plasma homocysteine showed a sustained decrease after therapy (20.7+/-9.0 micromol/l at week 52). No significant changes occurred in CC (from 0.59+/-0.21 to 0.60+/-0.22 mm2/kPa; p = 0.47), in DC (from 14.9+/-6.1 to 15.3+/-6.2 10(-3)/kPa; p = 0.55), or in beta (from 10.9+/-4.7 to 11.2+/-4.4; p = 0.64). No independent determinants were detected for the change in CC, whereas the change in DC was inversely related to the change in MAP (stand. r = -0.58; p<0.0002). The decrease in MAP after therapy was significant (p = 0.003) and was related to the dialysis mode (p = 0.003) and smoking status (p = 0.02). CONCLUSION: Folic acid treatment of hyperhomocysteinemia has no major effect on carotid artery stiffness in chronic dialysis patients. The results do, however, emphasize the importance of tight blood pressure control in these patients.

Age Factors↗