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D de Zeeuw

Publications and source records attributed to D de Zeeuw.

At least 19 recordsLinked to original sources

Recombinant Semliki Forest virus as a vector system for fast and selective in vivo gene delivery into balloon-injured rat aorta.

Previously, we demonstrated that recombinant Semliki Forest virus (SFV) vector rapidly and selectively transfers genes into cultured vascular smooth muscle cells (VSMC), leaving endothelial cells (EC) unaffected. From this, we hypothesized that recombinant SFV in vivo only transfers genes into the media of balloon-injured but not intact vessel, that gene expression in VSMC is fast, and that the specificity of SFV for VSMC is caused by specific binding sites. To address these hypotheses, we studied the time course of in vivo SFV-LacZ and Ad-LacZ expression in balloon-injured rat aorta. In addition, the fusion characteristics of fluorescent pyrene-labeled SFV were explored in cultured VSMC and EC. In intact aorta, no LacZ expression was found in the intima or media at 24 h. In contrast, in denuded aorta, LacZ expression was detected in as early as 12 h after incubation. LacZ expression was predominantly present in the media. Ad-LacZ expression started after 12 h, but was predominantly present in the adventitia. Ad-LacZ expression in the media started after 72 h. In vitro transfection with SFV showed that fusion was higher and, moreover, saturable in VSMC as compared with EC, indicating the presence of specific SFV binding sites on VSMC, but not EC. From this we conclude that in vivo selectivity of SFV in balloon-injured vessels is based on the removal of the endothelium, which results in accessibility of VSMC in the media that carry specific binding sites for the SFV vector.

Adenoviridae↗

D2 -like receptor stimulation decreases effective renal plasma flow and glomerular filtration rate in spontaneously hypertensive rats.

In spontaneously hypertensive rats (SHRs) the dopaminergic D1-like renal vasodilator response is impaired. The renal vascular response to D2-like receptor stimulation in vivo is incompletely known. Therefore, renal hemodynamics were studied in conscious SHRs during continuous infusion of D2-like agonist N,N-Di-n-propyldopamine (DPDA) (10 microg/kg/min) with Wistar-Kyoto (WKY) rats as controls. As sodium status may affect dopaminergic responses, rats were studied during both low- and high-sodium diets. D2-like stimulation reduced mean arterial pressure and effective renal plasma flow and glomerular filtration rate (GFR) similarly in SHR and WKY rats. Renal vascular resistance increased significantly in both strains. The response to DPDA is modified by sodium status, with a more pronounced fall in blood pressure (in WKYs and SHRs) and GFR (in WKYs) during high-sodium conditions. The responses were blocked by co-infusion with D2 antagonist domperidone. Thus, D2-like renal vascular responses are normal in SHRs irrespective of sodium intake. The combination of a preserved D2-like renal vasoconstrictive and an impaired D1-like renal vasodilatory response may contribute to maintenance of hypertension in SHRs.

Animals↗

Targeting of captopril to the kidney reduces renal angiotensin-converting enzyme activity without affecting systemic blood pressure.

We have synthesized a prodrug of the angiotensin-converting enzyme (ACE) inhibitor captopril by coupling this drug covalently to the low molecular weight protein (LMWP) lysozyme. Such drug-LMWP conjugates can be used for renal drug delivery, since LMWPs accumulate specifically in the proximal tubular cells of the kidney. In the present study, we compared the effects of captopril-lysozyme and free captopril in male Wistar rats. ACE activity in plasma and the kidney was measured after intravenous bolus injection of either the captopril-lysozyme conjugate (33 mg. kg(-1), corresponding to 0.2 mg. kg(-1) captopril) or equivalent dosages of free captopril and lysozyme. The administration of the captopril-lysozyme conjugate resulted in less plasma ACE inhibition and a longer-lasting renal ACE inhibition compared with the free drug. Effects on blood pressure and natriuresis were studied during intravenous infusion of captopril-lysozyme (275 mg. kg(-1). 6 h(-1) conjugate, corresponding to 5 mg. kg(-1). 6 h(-1) captopril) or an equimolar dosage of free captopril. Captopril-lysozyme did not affect systemic blood pressure, whereas free captopril lowered blood pressure significantly (-23 +/- 32% versus control after 6 h). Captopril-lysozyme increased natriuresis about 3-fold compared with control levels (260 +/- 32% after 6 h), whereas free captopril treatment resulted in a reduced sodium excretion (26 +/- 12%). Furthermore, captopril at a lower dose, which only moderately lowered blood pressure, showed an increased sodium excretion. We conclude that renal delivery of captopril using captopril-lysozyme results in reduced systemic activity and increased kidney-specific activity of the targeted drug.

Angiotensin-Converting Enzyme Inhibitors↗

Intracellular angiotensin II inhibits heterologous receptor stimulated Ca2+ entry.

Recent studies show that angiotensin II (AngII) can act from within the cell, possibly via intracellular receptors pharmacologically different from typical plasma membrane AngII receptors. The role of this intracellular AngII (AngIIi) is unclear. Besides direct effects of AngIIi on cellular processes one could hypothesise a possible role of AngIIi in modulation of cellular responses induced after heterologous receptor stimulation. We therefore examined if AngIIi influences [Ca+]i in A7r5 smooth muscle cells after serotonin (5HT) or UTP receptor stimulation. Application of AngIIi using liposomes, markedly inhibited 45Ca2+ influx after receptor stimulation with 5HT or UTP. This inhibition was reversible by intracellular administration of the AT1-antagonist losartan and not influenced by the AT2-antagonist PD123319. Similar results were obtained in single cell [Ca2+]i measurements, showing that AngIIi predominantly influences Ca2+ influx and not Ca2+ release via AT1-like receptors. It is concluded that AngIIi modulates signal transduction activated by heterologous receptor stimulation.

Angiotensin II↗

[Effect of losartan on renal and cardiovascular complications of patients with type 2 diabetes and nephropathy].

INTRODUCTION: Diabetic nephropathy is the leading cause of end-stage renal disease. Interruption of the renin-angiotensin system slows the progression of renal disease in type 1 diabetic patients, but similar data are not available for type 2, the most common form of diabetes. We assessed the role of the angiotensin II receptor antagonist, losartan, in type 2 diabetic patients with nephropathy. MATERIAL AND METHODS: One thousand five hundred and thirteen patients were enrolled in this randomised, placebo-controlled study of losartan (50 to 100 mg, once daily) or placebo, in addition to conventional antihypertensive treatment (calcium antagonists, diuretics, alpha- and beta-blockers, centrally acting agents) for a mean of 3.4 years. The primary outcome was the composite of doubling of baseline serum creatinine, end-stage renal disease, or death. Secondary end points included a composite of cardiovascular morbidity and mortality, proteinuria, and the progression rate of renal disease. RESULTS: Baseline demographics in the two groups were similar. Three hundred and twenty-seven patients receiving losartan reached the primary end point, as compared with 359 on placebo (risk reduction = 16 per cent, p = 0.02). Losartan reduced the incidence of doubling of serum creatinine (risk reduction = 25 per cent, p = 0.006) and end-stage renal disease (risk reduction = 28 per cent, p = 0.002), but had no effect on death. Benefits exceeded that attributable to changes in blood pressure. The composite of cardiovascular morbidity and mortality was similar in the two groups, except hospitalisation for heart failure, which was reduced with losartan (risk reduction = 32 per cent, p = 0.005). Proteinuria declined by 35 per cent with losartan (p < 0.001). DISCUSSION: Losartan conferred significant renal benefits in type 2 diabetic patients with nephropathy and was generally well tolerated.

Adult↗

Effects of losartan on renal and cardiovascular outcomes in patients with type 2 diabetes and nephropathy.

BACKGROUND: Diabetic nephropathy is the leading cause of end-stage renal disease. Interruption of the renin-angiotensin system slows the progression of renal disease in patients with type 1 diabetes, but similar data are not available for patients with type 2, the most common form of diabetes. We assessed the role of the angiotensin-II-receptor antagonist losartan in patients with type 2 diabetes and nephropathy. METHODS: A total of 1513 patients were enrolled in this randomized, double-blind study comparing losartan (50 to 100 mg once daily) with placebo, both taken in addition to conventional antihypertensive treatment (calcium-channel antagonists, diuretics, alpha-blockers, beta-blockers, and centrally acting agents), for a mean of 3.4 years. The primary outcome was the composite of a doubling of the base-line serum creatinine concentration, end-stage renal disease, or death. Secondary end points included a composite of morbidity and mortality from cardiovascular causes, proteinuria, and the rate of progression of renal disease. RESULTS: A total of 327 patients in the losartan group reached the primary end point, as compared with 359 in the placebo group (risk reduction, 16 percent; P=0.02). Losartan reduced the incidence of a doubling of the serum creatinine concentration (risk reduction, 25 percent; P=0.006) and end-stage renal disease (risk reduction, 28 percent; P=0.002) but had no effect on the rate of death. The benefit exceeded that attributable to changes in blood pressure. The composite of morbidity and mortality from cardiovascular causes was similar in the two groups, although the rate of first hospitalization for heart failure was significantly lower with losartan (risk reduction, 32 percent; P=0.005). The level of proteinuria declined by 35 percent with losartan (P<0.001 for the comparison with placebo). CONCLUSIONS: Losartan conferred significant renal benefits in patients with type 2 diabetes and nephropathy, and it was generally well tolerated.

Adult↗

Angiotensin-converting enzyme inhibitors and progression of nondiabetic renal disease. A meta-analysis of patient-level data.

PURPOSE: To examine the efficacy of ACE inhibitors for treatment of nondiabetic renal disease. DATA SOURCES: 11 randomized, controlled trials comparing the efficacy of antihypertensive regimens including ACE inhibitors to the efficacy of regimens without ACE inhibitors in predominantly nondiabetic renal disease. STUDY SELECTION: Studies were identified by searching the MEDLINE database for English-language studies evaluating the effects of ACE inhibitors on renal disease in humans between May 1977 (when ACE inhibitors were approved for trials in humans) and September 1997. DATA EXTRACTION: Data on 1860 nondiabetic patients were analyzed. DATA SYNTHESIS: Mean duration of follow-up was 2.2 years. Patients in the ACE inhibitor group had a greater mean decrease in systolic and diastolic blood pressure (4.5 mm Hg [95% CI, 3.0 to 6.1 mm Hg]) and 2.3 mm Hg [CI, 1.4 to 3.2 mm Hg], respectively) and urinary protein excretion (0.46 g/d [CI, 0.33 to 0.59 g/d]). After adjustment for patient and study characteristics at baseline and changes in systolic blood pressure and urinary protein excretion during follow-up, relative risks in the ACE inhibitor group were 0.69 (CI, 0.51 to 0.94) for end-stage renal disease and 0.70 (CI, 0.55 to 0.88) for the combined outcome of doubling of the baseline serum creatinine concentration or end-stage renal disease. Patients with greater urinary protein excretion at baseline benefited more from ACE inhibitor therapy (P = 0.03 and P = 0.001, respectively), but the data were inconclusive as to whether the benefit extended to patients with baseline urinary protein excretion less than 0.5 g/d. CONCLUSION: Antihypertensive regimens that include ACE inhibitors are more effective than regimens without ACE inhibitors in slowing the progression of nondiabetic renal disease. The beneficial effect of ACE inhibitors is mediated by factors in addition to decreasing blood pressure and urinary protein excretion and is greater in patients with proteinuria. Angiotensin-converting inhibitors are indicated for treatment of nondiabetic patients with chronic renal disease and proteinuria and, possibly, those without proteinuria.

Angiotensin-Converting Enzyme Inhibitors↗

Excessive urinary albumin levels are associated with future cardiovascular mortality in postmenopausal women.

BACKGROUND: Microalbuminuria is an early predictor of cardiovascular morbidity and mortality, in both diabetic patients and hypertensive patients. Little is known about the relation of microalbuminuria to cardiovascular disease in women of the general population. METHODS AND RESULTS: We have studied the relation of urinary albumin levels to cardiovascular mortality in a cohort study of 12 239 postmenopausal women living in Utrecht, the Netherlands. The initial age was between 52 and 67 years. Women were followed on vital status between 1976 and 1995 (168 513 women-years). Albumin was determined in the urine of 561 cases and 557 controls. Data were analyzed by using a nested case-control design. The cardiovascular mortality rate (95% CI) for women who were in the highest quintile of urinary albumin levels was 13.2/1000 years (8.1 to 20.9) compared with 2.6/1000 years (2.3 to 3.1) in women without detectable urinary albumin. The age-adjusted rate ratio (95% CI) between these groups was 4.4 (2.6 to 7.6). CONCLUSIONS: This is the first large cohort study that confirms a predictive role of urinary albumin for the risk of future cardiovascular mortality independent of hypertension and diabetes. Our findings support the hypothesis that microalbuminuria is a reflection of vascular damage and a marker of early arterial disease in women from the general population.

Age Factors↗

Intracellular Angiotensin II and cell growth of vascular smooth muscle cells.

1. We recently demonstrated that intracellular application of Angiotensin II (Angiotensin II(intr)) induces rat aorta contraction independent of plasma membrane Angiotensin II receptors. In this study we investigated the effects of Angiotensin II(intr) on cell growth in A7r5 smooth muscle cells. 2. DNA-synthesis was increased dose-dependently by liposomes filled with Angiotensin II as measured by [(3)H]-thymidine incorporation at high (EC(50)=27+/-6 pM) and low (EC(50)=14+/-5 nM) affinity binding sites with increases in E(max) of 58+/-4 and 37+/-4% above quiescent cells, respectively. Cell growth was corroborated by an increase in cell number. 3. Extracellular Angiotensin II (10 pM - 10 microM) did not modify [(3)H]-thymidine incorporation. 4. Growth effects of Angiotensin II(intr) mediated via high affinity sites were inhibited by liposomes filled with 1 microM of the non-peptidergic antagonists losartan (AT(1)-receptor) or PD123319 (AT(2)-receptor) or with the peptidergic agonist CGP42112A (AT(2)-receptor). E(max) values were decreased to 30+/-3, 29+/-4 and 4+/-2%, respectively, without changes in EC(50). The Angiotensin II(intr) effect via low affinity sites was only antagonized by CGP42112A (E(max)=11+/-3%), while losartan and PD123319 increased E(max) to 69+/-4%. Intracellular applications were ineffective in the absence of Angiotensin II(intr). 5. Neither intracellular nor extracellular Angiotensin I (1 microM) were effective. 6. The Angiotensin II(intr) induced growth response was blocked by selective inhibition of phosphatidyl inositol 3-kinase (PI-3K) by wortmannin (1 microM) and of the mitogen-activated protein kinase (MAPK/ERK) pathway by PD98059 (1 microM) to 61+/-14 and 4+/-8% of control, respectively. 7. These data demonstrate that Angiotensin II(intr) induces cell growth through atypical AT-receptors via a PI-3K and MAPK/ERK -sensitive pathway.

Androstadienes↗

Proteinuria as a modifiable risk factor for the progression of non-diabetic renal disease.

BACKGROUND: Angiotensin-converting enzyme (ACE) inhibitors reduce urine protein excretion and slow the progression of renal disease. The beneficial effect in slowing the progression of renal disease is greater in patients with higher urine protein excretion at the onset of treatment. We hypothesized that the greater beneficial effect of ACE inhibitors on the progression of renal disease in patients with higher baseline levels of proteinuria is due to their greater antiproteinuric effect in these patients. METHODS: Data were analyzed from 1860 patients enrolled in 11 randomized controlled trials comparing the effect of antihypertensive regimens, including ACE inhibitors to regimens not including ACE inhibitors on the progression of non-diabetic renal disease. Multivariable linear regression analysis was used to assess the relationship between the level of proteinuria at baseline and changes in urine protein excretion during follow-up. The Cox proportional hazards analysis was used to assess the relationship between changes in urine protein excretion during follow-up and the effect of ACE inhibitors on the time to doubling of baseline serum creatinine values or onset of end-stage renal disease. RESULTS: Mean (median) baseline urine protein excretion was 1.8 (0.94) g/day. Patients with higher baseline urine protein excretion values had a greater reduction in proteinuria during the follow-up in association with treatment with ACE inhibitors and in association with lowering systolic and diastolic blood pressures (interaction P < 0.001 for all). A higher level of urine protein excretion during follow-up (baseline minus change) was associated with a greater risk of progression [relative risk 5.56 (3.87 to 7.98) for each 1.0 g/day higher protein excretion]. After controlling for the current level of urine protein excretion, the beneficial effect of ACE inhibitors remained significant [relative risk for ACE inhibitors vs. control was 0.66 (0.52 to 0.83)], but there was no significant interaction between the beneficial effect of ACE inhibitors and the baseline level of urine protein excretion. CONCLUSIONS: The antiproteinuric effects of ACE inhibitors and lowering blood pressure are greater in patients with a higher baseline urine protein excretion. The greater beneficial effect of ACE inhibitors on renal disease progression in patients with higher baseline proteinuria can be explained by their greater antiproteinuric effects in these patients. The current level of urine protein excretion is a modifiable risk factor for the progression of non-diabetic renal disease. ACE inhibitors provide greater beneficial effect at all levels of current urine protein excretion.

Angiotensin-Converting Enzyme Inhibitors↗

Optimal antiproteinuric dose of losartan in nondiabetic patients with nephrotic range proteinuria.

Although the antiproteinuric response to antihypertensive treatment is the main predictor of renoprotective efficacy in long-term renal disease, to date, dose-finding studies of antihypertensives have been based only on blood pressure. We aimed to find the optimal antiproteinuric dose of the angiotensin II antagonist losartan. An open-label, dose-response study using subsequent 6-week treatment periods was performed in 10 nondiabetic patients with proteinuria of 5.8 +/- 0.8 g/d and a mean arterial pressure of 103 +/- 3.7 mm Hg without antihypertensive medication. All patients had normal to moderately impaired renal function. After the baseline period, five periods followed with a daily losartan dose of 50 mg, 100 mg, 150 mg, and 50 mg and a recovery without losartan. At the end of each period, proteinuria and mean arterial pressure were measured. The consecutive doses of losartan had a similar antihypertensive response (-11.3 +/- 2.8% by the 100-mg dose). The optimal antiproteinuric response was reached at 100 mg of losartan (-30 +/- 8%). The 50-mg dose (-13 +/- 7%) was less effective, and the 150-mg dose (-28 +/- 8%) was not more effective. A 100-mg dose of losartan is optimal for reduction of proteinuria in nondiabetic patients with nephrotic range proteinuria.

Antihypertensive Agents↗

Role of genetic variability in the renin-angiotensin system in diabetic and nondiabetic renal disease.

Studies on genetic variability in the renin-angiotensin system (RAS) provide intriguing data that support its possible relevance to renal pathophysiology. However, from the discrepancies between different studies it is clear that RAS polymorphisms do not provide simple markers for renal prognosis or therapy response. Rather than attempting to force a conclusion from the available discrepancies, we should attempt to develop strategies from the current state of knowledge to attack this complex issue from different angles. Unraveling their functional impact in renal pathophysiology can provide a framework for understanding that can guide further studies with the eventual purpose of improving the prognosis of renal patients. Clinical association studies should be large and prospective, to obtain the necessary robustness, with proper attention paid to the role of contextual factors. Moreover, studies elucidating the physiologic mechanisms of the genetic determinants of the disease phenotype are of prime importance. Such information is vital, not only to make sense of observed associations, but all the more so if one wants to apply the insights on the role of genetic factors into better strategies for disease intervention.

Angiotensin Receptor Antagonists↗

Does a low-salt diet exert a protective effect on endothelial function in normal rats?

Sodium restriction is often used as an adjunct in the treatment of conditions characterized by endothelial dysfunction, such as hypertension and heart or kidney disease. However, the effect of sodium restriction on endothelial function is not known. Therefore, male Wistar rats were studied after a fixed salt diet had been maintained (low-salt group: 0.05% NaCl, n = 10; normal-salt group: 0.3% NaCl, n = 10) for 6 weeks. Blood pressure and sodium excretion values were measured once a week. Subsequently the rats were killed, the aorta was removed, and rings were cut. Endothelium-independent (sodium nitrite [SN]) and endothelium-dependent (acetylcholine [ACh]) vasodilator responses were assessed in the presence of indomethacin (a cyclo-oxygenase inhibitor) and in the presence or absence of NG-monomethyl-L-arginine (L-NMMA; a competitive inhibitor of nitric oxide [NO] synthase). Endothelium-independent vasodilatation was not different for the two salt groups. Endothelium-dependent vasodilatation, on the other hand, was different. The response to ACh was almost completely abolished by L-NMMA in the normal-salt group, whereas vasodilatation was partially preserved during L-NMMA in the low-salt group. Accordingly, the L-NMMA-sensitive contribution to ACh-dependent vasodilatation was smaller in the low-salt group. Thus, salt restriction induced a non-NO and non-prostaglandin-dependent vasodilating pathway. By exclusion this could be endothelium-derived hyperpolarizing factor, a pathway of vasculoprotective potential. Accordingly, the relative contributions of the different vasoactive endothelial pathways were affected by salt intake. Further research will be needed to clarify the nature and importance of this non-NO, non-prostaglandin-dependent pathway in the clinical setting as well.

Acetylcholine↗

Time course of the antiproteinuric and renal haemodynamic responses to losartan in microalbuminuric IDDM.

BACKGROUND: Interference in the renin-angiotensin system with angiotensin-converting enzyme (ACE) inhibitors has proven to be effective in lowering albuminuria in patients with insulin-dependent diabetes mellitus (IDDM). We studied whether angiotensin II receptor antagonism reduces urinary albumin excretion (UAE) in IDDM patients, and the relationship between the antiproteinuric effect and changes in systemic and renal haemodynamics. METHODS: Nine IDDM patients with microalbuminuria (30-300 mg/24 h) were studied. Patients were studied after a 4 week placebo period, on days 3, 7 and 28 of treatment with losartan 50 mg once daily, and after a 4 week placebo-controlled recovery period. RESULTS: Mean arterial pressure (MAP) was only slightly lowered during losartan treatment. Effective renal plasma flow (ERPF) was significantly increased on the third day of treatment and remained stable throughout the treatment period. Glomerular filtration rate (GFR) did not change throughout the study. Filtration fraction (FF) was maximally lowered on the third day of treatment and remained stable during treatment. UAE was already significantly lowered after 2 days of treatment, during both the day and night, and remained stable throughout the treatment period. The time course of the changes in UAE paralleled that of the changes in MAP, ERPF and FF. CONCLUSIONS: The angiotensin receptor antagonist losartan effectively lowers UAE in microalbuminuric IDDM patients. The changes observed in renal haemodynamics and UAE are concordant in time and maximal within only a few days of treatment. These results support the importance of the specific effects of interference in the renin angiotensin system (RAS) in microalbuminuric IDDM on blood pressure and renal haemodynamics in reducing urinary protein leakage, rather than non-haemodynamic, structural changes of the glomerular basement membrane.

Albuminuria↗

ACE inhibition preserves heparan sulfate proteoglycans in the glomerular basement membrane of rats with established adriamycin nephropathy.

The gradual onset of the antiproteinuric effects of ACE inhibition suggests that structural effects on the glomerular basement membrane (GBM) may be involved in their renoprotective action. To test this hypothesis, we studied the effects of lisinopril (5 mg/kg/24 h) on proteinuria, focal glomerulosclerosis (FGS) and glomerular heparan sulfate (HS) proteoglycan (HSPG) GBM staining in rats with established Adriamycin nephrosis. Treatment was started 6 weeks after disease induction. As expected, lisinopril reduced blood pressure, proteinuria and the FGS score. In control rats, Adriamycin nephrosis was associated with significantly impaired GBM staining for both HSPG core protein (assessed from BL-31 staining) and HS staining (assessed from JM-403 staining) 12 weeks after disease induction. In rats treated with lisinopril (5 mg/kg/24 h) GBM staining was significantly better preserved for HS as well as for HSPG core protein. These data suggest that structural effects on the GBM, improving glomerular permselectivity, may be involved in the renoprotective effects of ACE inhibition in proteinuria-induced renal damage.

Angiotensin-Converting Enzyme Inhibitors↗

Smoking is related to albuminuria and abnormal renal function in nondiabetic persons.

BACKGROUND: Smoking induces albuminuria and accelerates progression to renal failure in persons with diabetes, but little is known about the relation between smoking and renal function in nondiabetic persons. OBJECTIVE: To investigate whether smoking is related to albuminuria and abnormal renal function in nondiabetic persons. DESIGN: Cross-sectional study. SETTING: Groningen, The Netherlands. PARTICIPANTS: 7476 participants in the PREVEND (Prevention of REnal and Vascular ENd stage Disease) Study. MEASUREMENTS: Microalbuminuria and high normal albuminuria were defined as urinary albumin excretion of 30 to 300 mg/24 h and 15 to 30 mg/24 h, respectively. Elevated or decreased glomerular filtration rate (GFR) was defined as a creatinine clearance that exceeded or was less than two times the standard deviation of the mean value in nondiabetic, nonsmoking participants who had an albumin excretion of 0 to 15 mg/24 h, adjusted for age and sex. RESULTS: Current smokers had a higher median albumin excretion than nonsmokers and were more likely to have microalbuminuria and high normal albuminuria with elevated or decreased GFR. After adjustment for several potential confounding factors, persons who smoked 20 or fewer cigarettes/d and persons who smoked more than 20 cigarettes/d, respectively, showed a dose-dependent association between smoking and high normal albuminuria (relative risk, 1.33 [95% CI, 1.10 to 1.61] and 1.98 [CI, 1.49 to 2.64]), microalbuminuria (relative risk, 1.92 [CI, 1.54 to 2.39] and 2.15 [CI, 1.52 to 3.03]), elevated GFR (relative risk, 1. 82 [CI, 1.31 to 2.53] and 1.84 [CI, 1.12 to 3.02]), and decreased GFR (relative risk, 1.53 [CI, 1.04 to 2.24] and 1.83 [CI, 1.05 to 3. 20]), respectively. Quitting smoking was associated only with microalbuminuria. CONCLUSIONS: Smoking is associated with albuminuria and abnormal renal function. However, these associations are less pronounced or absent in former smokers.

Adult↗

Renal function, neurohormonal activation, and survival in patients with chronic heart failure.

BACKGROUND: Because renal function is affected by chronic heart failure (CHF) and it relates to both cardiovascular and hemodynamic properties, it should have additional prognostic value. We studied whether renal function is a predictor for mortality in advanced CHF, and we assessed its relative contribution compared with other established risk factors. In addition, we studied the relation between renal function and neurohormonal activation. METHODS AND RESULTS: The study population consisted of 1906 patients with CHF who were enrolled in a recent survival trial (Second Prospective Randomized study of Ibopamine on Mortality and Efficacy). In a subgroup of 372 patients, plasma neurohormones were determined. The baseline glomerular filtration rate (GFR(c)) was calculated using the Cockroft Gault equation. GFR(c) was the most powerful predictor of mortality; it was followed by New York Heart Association functional class and the use of angiotensin-converting enzyme inhibitors. Patients in the lowest quartile of GFR(c) values (<44 mL/min) had almost 3 times the risk of mortality (relative risk, 2. 85; P<0.001) of patients in the highest quartile (>76 mL/min). Impaired left ventricular ejection fraction (LVEF) was only modestly predictive (P=0.053). GFR(c) was inversely related with N-terminal atrial natriuretic peptide (ANP; r=-0.53) and, to a lesser extent, with ANP itself (r=-0.35; both P<0.001). CONCLUSIONS: Impaired renal function (GFR(c)) is a stronger predictor of mortality than impaired cardiac function (LVEF and New York Heart Association class) in advanced CHF, and it is associated with increased levels of N-terminal ANP. Moreover, impaired renal function was not related to LVEF, which suggests that factors other than reduced cardiac output are causally involved.

Aged↗