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Department of Internal Medicine, Division of Renal Diseases and Hypertension, University of Colorado Health Sciences Center, Denver, Colorado
Correspondence: Dr. Stuart Linas, University of Colorado Health Sciences Center, 660 Bannock Street, Denver, CO 80204. Phone: 303-436-5905; Fax: 303-436-7249; E-mail: stuart.linas{at}uchsc.edu
| Abstract |
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| Introduction |
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Faculty:
George L. Bakris, MD, Hypertensive Diseases Unit, Section of Endocrinology, Diabetes and Metabolism, Pritzker School of Medicine, University of Chicago, Chicago, Illinois
Stuart L. Linas, MD, Department of Internal Medicine, Division of Renal Diseases and Hypertension, University of Colorado Health Sciences Center, Denver, Colorado
Raymond R. Townsend, MD, Department of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania
Credit Designation Statement: The American Society of Nephrology designates this educational activity (entire supplement) for a maximum of 2.0 AMA PRA Category 1 CreditsTM. Physicians should only claim credit commensurate with the extent of their participation in the activity. Study the education content, and complete the examination; 80% correct is required for full credit on first submission. Continuing medical education credit eligible through November 2008.
Learning Objectives:
Target audience: Physicians in internal medicine, nephrology, endocrinology, and other health care providers who are interested in the treatment of hypertension and kidney disease.
Categories: Proteinuria, blood pressure, renin-angiotensin system
Angiotensin-converting enzyme inhibitors (ACEI) and angiotensin receptor blockers (ARB) interfere with the renin-angiotensin system (RAS) at different points. Combination therapy with both drug classes may block the RAS more effectively than treatment with either ACEI or ARB alone. This article reviews studies of dual RAS-blocking therapy with an ACEI and an ARB and the effects of such treatment on hypertension and proteinuria. The terms "dual class" and "combination therapy" in this article refer to use of two RAS-blocking agents (ACEI plus ARB treatment); the terms "single class" and "monotherapy" refer to use of one RAS-blocking agent. Patients in many studies received additional, non–RAS-blocking agents (e.g., other antihypertensive medications, such as diuretics).
| Effect of Dual-Class Therapy on Proteinuria |
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12 wk). Most studies summarized in Table 1 reported that the antiproteinuric effect of dual-class therapy was superior to that of ARB treatment alone (1,2,5). Some compared dual therapy with ACEI treatment only and not with ARB therapy; patients were first stabilized on an ACEI treatment then randomly assigned to additional treatment with an ARB or placebo (3,4). One study found that a dual-class regimen resulted in a greater antiproteinuric benefit compared with ARB therapy but not compared with ACEI treatment (1).
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Severity of illness in the study population and ineffective medication dosages were cited as reasons for negative findings in another study (4). Patients were hypertensive (mean baseline seated BP 156/88 mmHg, with a mean of 3.13 antihypertensive medications) and had moderately advanced chronic renal failure (mean serum creatinine 2.0 mg/dl) (4). Patients had received a relatively high dosage of lisinopril (40 mg/d) for 3 mo before being randomly assigned to relatively low-dosage ARB therapy (losartan 50 mg/d) or placebo (4).
Dosage and Antiproteinuria Effect
Two small, short-term studies evaluated the effect of dosage on the antiproteinuric benefit of RAS blockade (10,11). One of these, a randomized, crossover study that examined normotensive, proteinuric (1 to 3 g/d) patients with IgA nephropathy (n = 10) for four 1-wk-long treatment periods, reported that antiproteinuric effects were dosage dependent only with dual-agent therapy (10). Doubling the dosages of enalapril and losartan during the single-agent phase of the study (from 10 to 20 mg/d for enalapril and from 50 to 100 mg/d for losartan) did not further reduce proteinuria when compared with treatment at lower dosages (10). However, combination therapy with each agent at the lower dosages produced significantly greater antiproteinuric effects than did single-agent treatment (0.72 ± 0.14 g/d; P < 0.05). Double-dosage combination therapy further increased antiproteinuric effects (0.57 ± 0.12 g/d versus lower-dosage dual therapy; P < 0.05) (10).
The other study investigated the optimal antiproteinuric dosages of lisinopril and losartan in each patient, then used those dosages in a combination therapy regimen. Participants did not have diabetes and had proteinuria (mean 4.5 g/d) and renal disease (n = 9), and all treatment periods lasted 6 wks (11). Antiproteinuric effects of both medications were dosage dependent. Maximum efficacy for losartan occurred at a median dosage of 100 mg/d; increasing the dosage to 150 mg/d yielded no additional benefit. Titration identified no such ceiling for lisinopril; the most effective antiproteinuric dosage varied with the individual, suggesting the importance of per-patient titration (11). A dosage of 40 mg/d was the highest dosage evaluated (11).
Combination treatment with the most effective dosages of each medication resulted in a significantly greater antiproteinuric response than did dosage-optimized monotherapy (P < 0.05 versus optimal monotherapy dosage of each medication) (11). Mean arterial pressure (MAP) was also reduced significantly more than with the optimal losartan dosage but did not differ significantly from that seen with the optimal lisinopril dosage (11). Optimal-dosage lisinopril lowered proteinuria and MAP significantly more than did optimal-dosage losartan (P < 0.05) (11).
Dosage and RAS Blockade
Part of the premise for evaluating ACEI and ARB in combination is the finding that ACEI therapy does not fully prevent angiotensin II formation and thus seems unable to achieve complete RAS blockade. A study in 20 healthy normotensive individuals questioned whether ARB dosages higher than those normally recommended for hypertension would achieve a degree of RAS blockade similar to that of ACEI plus ARB therapy (12). Authors compared once- and twice-daily dosing regimens of a short- and long-acting ARB (losartan and telmisartan, respectively) given alone and with an ACEI (lisinopril 20 mg/d). Patients received each regimen for 7 d (12).
Complete 24-h blockade of exogenous angiotensin I effects on BP did not occur with the standard recommended dosages of either ARB (losartan 100 mg/d; telmisartan 80 mg/d) (12). However, adding an ACEI to these regimens increased the blockade effect and produced nearly complete (75 to 80%) inhibition of BP response to exogenous angiotensin I at trough levels. Comparable results occurred with single-agent losartan 100 mg twice daily but not when the same total dosage (200 mg) was given once daily. Doubling the recommended dosage of telmisartan to 160 mg/d (given as 80 mg twice daily) did not boost RAS blockade to the level seen with combination ACEI plus maximum-recommended-dosage ARB therapy (Figure 1) (12). Findings may differ in hypertensive individuals with a less active RAS (12). These results suggest that the additive effect seen with combination ACEI and ARB therapy may result from pharmacologic (e.g., duration of action) rather than physiologic interactions.
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| Relationship between Antiproteinuria and Decreased BP |
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The Combination Treatment of Angiotensin-II Receptor Blocker and Angiotensin-Converting-Enzyme Inhibitor in Non-Diabetic Renal Disease (COOPERATE) trial (n = 263; median follow-up 2.9 yrs), a randomized, controlled clinical trial, reported improved renal survival with dual-class compared with single-class therapy and attributed this benefit to the additional proteinuria reduction seen with combination therapy (P = 0.01 versus monotherapy). This antiproteinuric effect did not seem to stem from antihypertensive effects, because BP decreases were similar among all treatment groups (14).
Campbell et al. (5) speculated that the superior antiproteinuric benefit of combination therapy could result from hemodynamic effects. Combination therapy in this study did not significantly reduce BP when compared with single-agent RAS blockade but did significantly decrease proteinuria (Figure 2). Effective renal plasma flow increased with all treatments when compared with baseline; the increase was largest with combined treatment and benazepril monotherapy. These changes strongly correlated with reduction in renal vascular resistance (5). In the study group as a whole, the reduction in renal vascular resistance was predictive of the decrease in proteinuria. In contrast, however, the effect on glomerular membrane size selectivity seemed to be similar with both monotherapy and combination treatment. The authors controlled for the effect of BP lowering on proteinuria by using half-dosage combination therapy and full-dosage monotherapy (5).
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Esnualt et al. (6) found that combination half-dosage therapy (ramipril 5 mg/d and valsartan 80 mg/d) did not further reduce proteinuria compared with full-dosage ACEI or ARB therapy (ramipril 10 mg/d or valsartan 160 mg/d). Adding furosemide to dual RAS blockade or increasing furosemide dosage in patients who were already receiving it led to a significant reduction in urinary protein-to-creatinine ratio when compared with combination therapy and with ARB therapy alone (P < 0.05 for both comparisons; Figure 3) (6). The authors speculated that restoration of sodium balance by the diuretic could have improved the combined antiproteinuric effect, thereby explaining some of the additional benefit seen with adding furosemide or increasing furosemide dosage (6).
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4 wk of lisinopril (20 mg/d) (15). The regimens had similar effects on albuminuria and MAP. At week 24, albumin-to-creatinine ratio had fallen by 56% with candesartan plus ACEI (P < 0.01) and by 53% with amlodipine plus ACEI (P < 0.01) when compared with baseline measurements with ACEI therapy alone (15). MAP fell by 3 to 6 mmHg in both groups (15). Changes in BP did not correlate with changes in albumin-to-creatinine ratios (15), which suggests an antiproteinuric mechanism independent of BP. However, both the ARB and the calcium channel blocker (CCB) resulted in similar antiproteinuric effects when added to ACEI treatment, even though CCB do not affect RAS (15). This suggests an alternative mechanism for affecting albuminuria.
| Safety of Combination Therapy |
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A meta-analysis of 21 randomized, controlled trials (n = 654) examined the safety of combination RAS blockade. Dual-class therapy resulted in a small but significant increase in serum potassium levels (weighted mean difference 0.11 mEq/L; 95% confidence interval 0.05 to 0.17). Investigators characterized this as clinically insignificant (17). Dual RAS blockade therapy also produced a nonsignificant decrease in GFR (weighted mean difference 1.4 ml/min [0.02 ml/s]; 95% confidence interval –2.6 to 0.2). The authors concluded that the available data demonstrate the safety of combination therapy in the short term (17).
Other trials reported changes in potassium levels or incidence of hyperkalemia with single- or dual-agent RAS blockade. Benazepril 20 mg/d plus valsartan 80 mg/d resulted in significantly higher plasma potassium levels when compared with monotherapy with either agent (0.3 to 0.4 mEq/L versus monotherapies; P < 0.01) during 8 wks of treatment (2). Only one in 20 patients developed a plasma potassium level
5 mEq/L (2). Another study recorded a small but significant increase in serum potassium with half-dosage dual therapy compared with full-dosage monotherapy during 8 wk (mean increase 0.18 to 0.30 mEq/L versus benazepril or valsartan; P < 0.05) (5). No patient required therapy change or cessation because of hyperkalemia (5).
Plasma potassium did not differ significantly when irbesartan 300 mg/d or placebo was added to >3 mo of enalapril 40 mg/d (P = 0.18) (3). Two of 24 patients developed plasma potassium levels >5.2 mEq/L after placebo or irbesartan was added to enalapril (3). Both received a 50% increase in furosemide dosage and had GFR <40 ml/min per yr (3).
Authors of the nearly 3-yr-long COOPERATE trial deemed ACEI plus ARB therapy (trandolapril 3 mg three times daily and losartan 100 mg three times daily) safe (14). None of the 263 randomized patients was withdrawn from the trial, no severe adverse events were reported, and few cases of hypotension (2) or hyperkalemia (18) occurred. The authors attributed these findings to gradual increases in drug dosages (14).
| Unresolved Issues |
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Effect of Dosing Regimen, Patient Characteristics, and Duration of Action
Whether combination therapy is superior to monotherapy in its antiproteinuric effects depends on the dosage and the frequency at which each agent is administered as well as each agent's duration of action (6,12). The optimal dosage of combination ACEI and ARB therapy for antiproteinuric effect also varies by individual (11). Current data point to a synergistic antiproteinuric effect with dual ACEI and ARB therapy at plasma concentrations below those that affect BP (7). Data are insufficient to determine whether higher dosages of either drug class alone may reduce proteinuria as much as the two classes combined (7).
Effect of Race and Ethnicity
Studies have not addressed whether the effect of combination ARB and ACEI therapy varies among different race or ethnic groups. Enalapril is associated with a reduction in risk for hospitalization for heart failure in white but not black patients with left ventricular dysfunction (19). Carvedilol, a β blocker with
1 adrenergic blocking properties, has demonstrated a similar reduction in heart failure risk in black and other patients (18).
Effect of Sodium Intake
Few studies have controlled for the effect of sodium balance on the interaction among ACEI, ARB, or combination therapy and resultant effects on proteinuria, BP, or renal disease progression. Sodium intake blunts ACEI antiproteinuric effect; adding a diuretic can restore this benefit (9). Some evidence suggests that diuretic therapy may have the same effect on ACEI/ARB therapy (6).
| Disclosures |
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| Acknowledgments |
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Eileen A. McCaffrey, MA, Clarus Health, provided writing support.
| Footnotes |
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| References |
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T. Berl Review: Renal protection by inhibition of the renin-angiotensin-aldosterone system Journal of Renin-Angiotensin-Aldosterone System, March 1, 2009; 10(1): 1 - 8. [Abstract] [PDF] |
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T. Berl Maximizing inhibition of the renin-angiotensin system with high doses of converting enzyme inhibitors or angiotensin receptor blockers Nephrol. Dial. Transplant., August 1, 2008; 23(8): 2443 - 2447. [Full Text] [PDF] |
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