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The effect of azithromycin on the pharmacokinetics of indinavir.

This study was performed to examine the effect of the coadministration of azithromycin on the pharmacokinetics of the protease inhibitor indinavir (Crixivan). In an open-label, parallel-design study, 32 healthy male and female volunteers were given indinavir (800 mg tid) for 5 days. One hour prior to the first dose of indinavir on day 5, 18 subjects received 1200 mg azithromycin (Zithromax), and 14 subjects received matching placebo. Serial samples of plasma were obtained for 8 hours following the morning dose of indinavir on days 4 and 5 and assayed for indinavir by HPLC/UV. Twenty-seven subjects completed the study. Following coadministration of azithromycin with indinavir, there was no significant change between day 5 and day 4 in AUC (20.7 mg.hr/ml and 23.1 mg.hr/ml; 90% CI on the ratio 81%-100%) or Cmax (9.88 mg/ml and 10.3 mg/ml; 90% CI 86%-108%). The day 5 to day 4 difference in indinavir concentrations following coadministration with azithromycin was not significantly different from the day 5 to day 4 difference with placebo (AUC p = 0.68; Cmax p = 0.074). Therefore, azithromycin does not significantly alter the kinetics of indinavir.

Adult↗

Characterization of rash with indinavir in a national patient cohort.

OBJECTIVE: To characterize indinavir-associated rash using systematic data collection through postmarketing surveillance in a sample of HIV/AIDS patients. DESIGN: HIV-infected patients identified through a medication counseling line who reported onset of a rash following initiation of indinavir therapy were included in this case series analysis. Pertinent information regarding onset, description, and management of rash; other medications initiated within two weeks of indinavir or rash onset; and medication allergy history was obtained through follow-up telephone contact. Patients were contacted weekly until the rash resolved or indinavir was discontinued. SETTING: Stadtlanders Drug Distribution Company, located in Pittsburgh, PA. RESULTS: Of the 110 patients identified and followed, 67% reported rash onset within two weeks of initiating indinavir therapy. The rash was initially localized in all 110 patients and subsequently spread to other areas of the body in 77% of the patients. The rash spread to the full body in 44% (49) of the patients. The rash was accompanied by pruritus in 86% of the patients, and the majority of patients (87%) were afebrile. Eighty-one patients received treatment with medications such as antihistamines or oral or topical corticosteroids. Fifty percent of patients receiving treatment for the rash reported that these medications were helpful in relieving rash symptoms. Fifty-nine percent of the patients continued indinavir therapy despite the occurrence of rash. CONCLUSIONS: Results from this study suggest that indinavir-associated rash occurs within two weeks of initiation of therapy for the majority of patients. Typically, the rash is localized with subsequent spread and is associated with pruritus. The majority of patients are able to continue indinavir therapy despite the occurrence of rash.

Acquired Immunodeficiency Syndrome↗

Effect of milk thistle on the pharmacokinetics of indinavir in healthy volunteers.

STUDY OBJECTIVE: To characterize the pharmacokinetics of indinavir in the presence and absence of milk thistle and to determine the offset of any effect of milk thistle on indinavir disposition. DESIGN: Prospective open-label drug interaction study. SETTING: Outpatient clinic. SUBJECTS: Ten healthy volunteers. Intervention. Blood samples were collected over 8 hours after the volunteers took four doses of indinavir 800 mg every 8 hours on an empty stomach for baseline pharmacokinetics. This dosing and sampling were repeated after the subjects took milk thistle 175 mg (confirmed to contain silymarin 153 mg, the active ingredient) 3 times/day for 3 weeks. After an 11-day washout, indinavir dosing and blood sampling were repeated to evaluate the offset of any potential interaction. MEASUREMENTS AND MAIN RESULTS: Indinavir concentrations were measured by using a validated high-performance liquid chromatography method. The following pharmacokinetic parameters were determined: highest concentration (Cmax), hour-0 concentration, hour-8 concentration (C8), time to reach Cmax, and area under the plasma concentration-time curve over the 8-hour dosing interval (AUC8). Milk thistle did not alter significantly the overall exposure of indinavir, as evidenced by a 9% reduction in the indinavir AUC8 after 3 weeks of dosing with milk thistle, although the least squares mean trough level (C8) was significantly decreased by 25%. CONCLUSION: Milk thistle in commonly administered dosages should not interfere with indinavir therapy in patients infected with the human immunodeficiency virus.

Adult↗

Indinavir induces acute and reversible peripheral insulin resistance in rats.

The use of HIV protease inhibitors (PIs) has been associated with several metabolic changes, including lipodystrophy, hyperlipidemia, and insulin resistance. The etiology of these adverse effects remains unknown. PIs have recently been found to cause acute and reversible inhibition of GLUT4 activity in vitro. To determine the acute in vivo effects of indinavir on whole-body glucose homeostasis, glucose tolerance tests were performed on PI-naïve Wistar rats immediately after a single intravenous dose of indinavir. Glucose and insulin levels were significantly elevated in indinavir-treated versus control rats (P < 0.05) during the initial 30 min of the glucose tolerance test. Under euglycemic- hyperinsulinemic clamp conditions, indinavir treatment acutely reduced the glucose infusion rate required to maintain euglycemia by 18 and 49% at indinavir concentrations of 14 and 27 micromol/l, respectively. Muscle 2-deoxyglucose uptake was similarly reduced under these conditions. Restoration of insulin sensitivity was observed within 4 h after stopping the indinavir infusion. Indinavir did not alter the suppression of hepatic glucose output under hyperinsulinemic conditions. These data demonstrate that indinavir causes acute and reversible changes in whole-body glucose homeostasis in rats and support the contribution of GLUT4 inhibition to the development of insulin resistance in patients treated with PIs.

Animals↗

Crystalluria and urinary tract abnormalities associated with indinavir.

BACKGROUND: Indinavir, a protease inhibitor widely used to treat patients with HIV infection, has been associated with nephrolithiasis. Distinctive urinary crystals and a spectrum of urologic disorders were noted in patients receiving indinavir. OBJECTIVE: To determine the composition of urinary crystals and the frequency of asymptomatic crystalluria and urinary tract symptoms in patients receiving indinavir. PATIENTS: Patients with HIV infection who were enrolled in studies conducted at the National Institutes of Health. MEASUREMENTS: Microscopic urinalysis, high-performance liquid chromatography (HPLC) and mass spectrometry of urinary crystals and stones, and clinical evaluation of patients with urologic symptoms. RESULTS: Of 240 patients receiving indinavir, 142 provided urine specimens for analysis. Twenty-nine (20%) had crystals consisting of plate-like rectangles and fan-shaped or starburst forms. Mass spectrometry and HPLC confirmed that these crystals were composed of indinavir. Of 40 patients who were not receiving indinavir, none had similar crystals (P < 0.001). Nineteen of the 240 patients receiving indinavir (8%) developed urologic symptoms. Of these, 7 (3%) had nephrolithiasis and the other 12 (5%) had previously undescribed syndromes: crystalluria associated with dysuria and crystalluria associated with back or flank pain. Four of the patients with the latter syndrome had radiographic evidence of intrarenal sludging. CONCLUSIONS: Indinavir forms characteristic crystals in the urine. This crystalluria may be associated with dysuria and urinary frequency, with flank or back pain associated with intrarenal sludging, and with the classic syndrome of renal colic.

Adult↗

Relationship between levels of indinavir in hair and virologic response to highly active antiretroviral therapy.

BACKGROUND: Suboptimal levels of antiretroviral drugs result in virologic failure in HIV-infected patients treated with highly active antiretroviral therapy (HAART). OBJECTIVE: To assess the relationship between levels of indinavir in hair and virologic outcome. DESIGN: Cross-sectional study. SETTING: 7 AIDS clinics in France. PATIENTS: 89 HIV-infected patients who received HAART that included indinavir. MEASUREMENTS: Patients were classified as responders or nonresponders on the basis of viremia at the time of hair collection. In nonresponders, levels of indinavir in hair and resistance mutations in the protease gene were assessed at baseline and at the time of indinavir measurement. RESULTS: Mean indinavir levels (+/-SD) were significantly higher in the 65 responders than in the 24 nonresponders (24.4 +/- 16 microg/g vs. 12.9 +/- 8.6 microg/g) (P < 0.001). Nonresponders with intermediate levels of indinavir in hair had more mutations in the protease gene than did nonresponders with low levels of indinavir in hair. CONCLUSION: Indinavir levels in hair are associated with virologic outcome in patients receiving HAART.

Absorption↗

Influence of P-glycoprotein on the transport and metabolism of indinavir in Caco-2 cells expressing cytochrome P-450 3A4.

Caco-2 cells grown in the presence of 1alpha,25-di-OH vitamin D(3) (di-OH vit D(3)) were used as a model to evaluate the effects of P-glycoprotein (Pgp) efflux on CYP3A4-mediated metabolism of indinavir during intestinal absorption. Caco-2 cells grown under these conditions demonstrated significant CYP3A4 activity and maintained Pgp-mediated directional transport of indinavir. Metabolism of indinavir in the di-OH vit D(3)-treated cells correlated with the level of CYP3A activity and generated metabolites consistent with CYP3A4-mediated metabolism. During transport experiments, indinavir metabolites are selectively secreted into the apical compartment, consistent with Pgp-mediated efflux. Using formation of the most abundant metabolite, M6, as a marker for indinavir metabolism, we observed that the extent of indinavir metabolism is not significantly affected by the direction of indinavir transport or by inhibition of Pgp with cyclosporin A. However, because Pgp efflux results in higher indinavir transport in the basolateral-to-apical direction than in the apical-to-basolateral direction, the ratio of M6 produced normalized to the amount of drug transported across the monolayer was higher for apical-to-basolateral transport. Thus, Pgp efflux in a direction opposite to absorptive transport results in more metabolite produced per mole of drug that is absorbed. In summary, the results support a role of Pgp in increasing intestinal presystemic metabolism and in removal of CYP3A4-generated metabolites from the intracellular compartment.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Alteration in indinavir clearance during interleukin-2 infusions in patients infected with the human immunodeficiency virus.

STUDY OBJECTIVE: To evaluate the effect of interleukin-2 (IL-2) infusions on the pharmacokinetics of indinavir in patients infected with the human immunodeficiency virus. DESIGN: Observational, noncontrolled trial and prospective, open-label, nonrandomized, pharmacokinetic study. SETTING: Government research hospital. PATIENTS: Seventeen patients receiving indinavir 800 mg every 8 hours and a 5-day continuous infusion of recombinant IL-2. INTERVENTIONS: Observational study: trough indinavir concentrations were measured on day 1 and day 5 of IL-2 as part of a clinical trial. Prospective study: serial plasma samples were collected on days 1 and 5 of IL-2 to determine indinavir concentrations. Samples were also collected over the study period to determine IL-6 concentrations. The data were fit by a one-compartment model that allowed clearance to change based on IL-6 production and by standard noncompartmental equations. MEASUREMENTS AND MAIN RESULTS: The area under the curve of indinavir increased in eight of nine patients by a mean of 88% (range -29-215%) between days 1 and 5 of IL-2 infusion. Over this period, IL-6 concentrations also increased in all patients and indinavir clearance significantly decreased. Observational data in eight patients from the clinical trial showed significantly increased indinavir trough concentrations from 264+/-493 to 670+/-677 ng/ml in the presence of IL-2. CONCLUSION: Indinavir concentrations were altered during IL-2 infusions, possibly by induction of IL-6. Investigation into the effects of other proinflammatory cytokines is warranted.

Adult↗

Indinavir did not further increase mean triglyceride levels in HIV-infected patients treated with nucleoside reverse transcriptase inhibitors: an analysis of three randomized clinical trials.

OBJECTIVES: Metabolic abnormalities including hyperlipidemia have developed in patients infected with the human immunodeficiency virus (HIV) after treatment with protease inhibitor drugs. It is unclear whether the deleterious effects on plasma triglyceride concentrations observed in patients receiving highly active antiretroviral therapy are a class effect of protease inhibitors. Hypertriglyceridemia may constitute a risk factor for cardiovascular disease. The purpose of this retrospective analysis of HIV-infected patients enrolled in three randomized, double-blind trials of indinavir therapy was to determine whether indinavir use was associated with a larger increase in triglyceride levels than treatment without a protease inhibitor. METHODS: Using a mixed-effects model, we compared average changes in nonfasting plasma triglyceride levels among randomized treatment groups for each protocol separately. RESULTS: The median increase in triglyceride levels during the 1st year of antiretroviral monotherapy was less with indinavir than with either zidovudine or stavudine. The combination of indinavir and nucleoside-analogue reverse-transcriptase inhibitors (NRTI) resulted in smaller increments in triglyceride levels than NRTI monotherapy. Indinavir also augmented the reduction in triglyceride levels observed with combination therapy using zidovudine and lamivudine in persons with far advanced HIV-infection. However, up to 7% of patients receiving a NRTI and indinavir experienced elevations of nonfasting triglyceride levels in excess of 750 mg/dl. CONCLUSIONS: On average, the combination of indinavir and NRTI therapy was not associated with a greater elevation of non-fasting triglyceride levels in HIV-infected men with at least moderately advanced immunosuppression than treatment with NRTI drugs alone.

Antiretroviral Therapy, Highly Active↗

[Indinavir urolithiasis in HIV-positive patients. Treatment and prophylaxis].

TARGET: The approximate incidence of indinavir urolithiasis in HIV positive patients receiving the drug is 10%. The exact mechanism of lithogenesis is still unknown. Pure indinavir stones are radiolucent on plane abdominal X-ray or CT scan. Indinavir urolithiasis can be associated with acute unilateral renal colic or severe azotaemia. MATERIAL AND METHODS: 20 HIV patients were treated conservatively by increasing oral fluid intake (urine production of 2 l/day and more), discontinuation of indinavir therapy for 1 week and acidification of urine with l-methionin (urine pH 5,3-5,8). Some patients were additionally treated with endoscopic procedures. RESULTS: In all patients renal function normalized. Increase of oral fluid intake, especially during the first 2 hours after intake of indinavir and during night prevented recurrence of indinavir urolithiasis. CONCLUSION: HIV positive patients with renal colic or renal insufficiency and roentgenological absence of radio-opaque stone formations should make the urologist consider indinavir urolithiasis as a possible diagnosis.

Acquired Immunodeficiency Syndrome↗

Indinavir uncovers different contributions of GLUT4 and GLUT1 towards glucose uptake in muscle and fat cells and tissues.

AIMS/HYPOTHESIS: Insulin-dependent glucose influx in skeletal muscle and adipocytes is believed to rely largely on GLUT4, but this has not been confirmed directly. We assessed the relative functional contribution of GLUT4 in experimental models of skeletal muscle and adipocytes using the HIV-1 protease inhibitor indinavir. METHODS: Indinavir (up to 100 micro mol/l) was added to the glucose transport solution after insulin stimulation of wild-type L6 muscle cells, L6 cells over-expressing either GLUT4myc or GLUT1myc, 3T3-L1 adipocytes, isolated mouse brown or white adipocytes, and isolated mouse muscle preparations. RESULTS: 100 micro mol/l indinavir inhibited 80% of both basal and insulin-stimulated 2-deoxyglucose uptake in L6GLUT4myc myotubes and myoblasts, but only 25% in L6GLUT1myc cells. Cell-surface density of glucose transporters was not affected. In isolated soleus and extensor digitorum longus muscles, primary white and brown adipocytes, insulin-stimulated glucose uptake was inhibited 70 to 80% by indinavir. The effect of indinavir on glucose uptake was variable in 3T3-L1 adipocytes, averaging 45% and 67% inhibition of basal and maximally insulin-stimulated glucose uptake, respectively. In this cell, fractional inhibition of glucose uptake by indinavir correlated positively with the fold-stimulation of glucose uptake by insulin, and was higher with sub-maximal insulin concentrations. The latter finding coincided with an increase only in GLUT4, but not GLUT1, in plasma membrane lawns. CONCLUSION/INTERPRETATION: Indinavir is a useful tool to assess different functional contributions of GLUT4 to glucose uptake in common models of skeletal muscle and adipocytes.

3T3 Cells↗

Papillary necrosis associated with the HIV protease inhibitor indinavir.

The HIV protease inhibitor indinavir may cause nephrolithiasis and interstitial nephritis. The renal consequences of indinavir-associated nephrotoxicity are uncertain. We report a case of papillary necrosis in a patient treated with indinavir. An asymptomatic HIV-infected woman experienced right-sided renal colicky pain during treatment with indinavir. She passed a non-solid stone and continued indinavir treatment. Intravenous pyelogram performed 20 months later following an episode of left-sided colicky pain showed right-sided papillary necrosis. Indinavir-associated nephrolithiasis and chronic interstitial nephritis were the only possible causes identified in this patient. Physicians should be aware that indinavir nephrolithiasis may cause papillary necrosis.

Adult↗

Hepatic and intestinal metabolism of indinavir, an HIV protease inhibitor, in rat and human microsomes. Major role of CYP3A.

The metabolism of indinavir, a human immune deficiency virus (HIV) protease inhibitor, has been characterized extensively in rats and humans. All oxidative metabolites found in vivo were formed when indinavir was incubated with NADPH-fortified hepatic and intestinal microsomes obtained from rats and humans. In vitro kinetic studies revealed that Vmax/Km values (microL/min/mg protein) in rat and human liver microsomes were approximately 8- and 2-fold greater than those in the intestinal microsomes of the corresponding species (55.8 and 6.7 for the liver and intestine, respectively, in rats; 16.5 and 7.7 for the liver and intestine, respectively, in humans). However, when Vmax/Km was scaled up to intrinsic clearance (mL/min/kg body weight), hepatic intrinsic clearance was much greater than the intestinal clearance by 50- to 200-fold. These results suggest that the liver plays a much greater role in first-pass metabolism of indinavir than the intestine in both species. Consistently, ketoconazole, a selective inhibitor for CYP3A, and an anti-rat CYP3A1 antibody strongly inhibited hepatic and intestinal metabolism of indinavir in both rats and humans, suggesting the involvement of CYP3A isoforms in both organs. Oral treatment of rats with dexamethasone (50 mg/kg/day for 4 days), a potent CYP3A inducer, increased both hepatic and intestinal metabolism of indinavir by a factor of 7 and 3, respectively. Furthermore, indinavir selectively inhibited 6beta-hydroxylase activity of testosterone, a CYP3A marker activity, in rat and human liver microsomes; the interactions between testosterone and indinavir were competitive with Ki values of < 1.0 microM.

Animals↗

Indinavir urolithiasis: an emerging cause of renal colic in patients with human immunodeficiency virus.

PURPOSE: We evaluate the clinical, diagnostic and radiographic findings in patients on indinavir therapy who presented with renal colic, and propose appropriate treatment options for indinavir urolithiasis. MATERIALS AND METHODS: A total of 16 patients positive for human immunodeficiency virus on indinavir were evaluated for 18 episodes of severe renal colic requiring hospitalization. Laboratory evaluation was performed in all patients followed by an imaging study. Conservative treatment included intravenous hydration, narcotic analgesics and temporary cessation of indinavir. Intervention was elected only in patients with persistent fever or intractable pain. A month after hospital discharge an excretory urogram and metabolic stone evaluation were performed. Mean followup was 9.3 months and 2 patients had recurrent symptoms. RESULTS: All patients presented with nausea or vomiting and hematuria. Imaging studies confirmed obstruction in all patients with 13 radiolucent (indinavir) and 3 radiopaque (calcium oxalate) stones. Patients with radiolucent and radiopaque stones demonstrated significant differences in urinary pH (p = 0.002) and serum creatinine (p = 0.03). Conservative therapy was successful in 11 patients (68.8%) within 48 hours and 4 patients (25%) with radiolucent calculi required endoscopic stenting for persistent fever. Metabolic stone evaluation demonstrated significant hypocitruria (less than 50 mg./24 hours) in all patients with radiolucent calculi. CONCLUSIONS: The urologist should be familiar with this growing cause of renal colic in patients on indinavir therapy. Pure indinavir stones are radiolucent and have a soft, gelatinous endoscopic appearance. Conservative treatment is successful in most patients and if intervention is deemed medically necessary, endoscopic stent placement should be the procedure of choice.

Acquired Immunodeficiency Syndrome↗

Indinavir-associated interstitial nephritis and urothelial inflammation: clinical and cytologic findings.

The objective of the present study was to characterize the genitourinary syndromes that accompany indinavir-associated pyuria. Of 23 indinavir-treated patients with persistent pyuria, 4 had isolated interstitial nephritis, 10 had both interstitial nephritis and urothelial inflammation, 7 had isolated urothelial inflammation, and 2 had pyuria with nonspecific urinary tract inflammation. A total of 21 patients had multinucleated histiocytes identified by cytologic testing of urine specimens. Urine abnormalities resolved in all 20 patients who stopped receiving indinavir therapy. Pyuria continued in the 3 patients who continued receiving indinavir. Six patients had elevated serum creatinine levels, which returned to baseline levels when indinavir was discontinued. In conclusion, indinavir-associated pyuria was frequently associated with evidence of interstitial nephritis and/or urothelial inflammation, multinucleated histiocytes were commonly present in urine specimens, and cessation of indinavir therapy was associated with prompt resolution of urine abnormalities.

Adult↗

Switch from ritonavir to indinavir in combination therapy for HIV-1-infected children.

BACKGROUND: Protease inhibitors are an effective component of combination antiretroviral treatment for children infected with human immunodeficiency virus 1 (HIV-1), but tolerance or toxicity issues sometimes require an alternative therapeutic strategy. METHODS: HIV-1-infected children aged 2-17 years received combination therapy with either stavudine plus ritonavir or with zidovudine, lamivudine, and ritonavir as part of a randomized clinical trial. Twenty-one months after the start of the trial, ritonavir in capsule formulation became unavailable. The treatment regimen for 25 children was switched from ritonavir capsules to indinavir capsules (500 mg/m(2) every 8 h). The other study drugs remained unchanged. A matched-pairs analysis was performed to compare the results for these 25 children with the results for 25 matched children whose treatment regimen continued to include ritonavir (in liquid formulation). RESULTS: There were no significant differences in the percentage of children with an HIV-1 RNA load of <or=200 copies/mL between the group receiving indinavir and the matched group receiving ritonavir (52% vs. 68%, at the start of indinavir treatment; 42% vs. 52%, at week 12; and 50% vs. 56%, at week 24). Similarly, there were no significant differences between the treatment groups with respect to median CD4 cell counts over time. Toxicities observed in the children treated with indinavir were most often flank pain or headache (16%), renal dysfunction (16%), hematuria (12%), and skin rash (12%) and were consistent with toxicities reported elsewhere. There was no evidence that the switch from ritonavir to indinavir therapy altered the pharmacokinetics of indinavir as a result of residual cytochrome P450 induction or inhibition caused by ritonavir. CONCLUSIONS: The switch from one protease inhibitor (ritonavir) to another (indinavir) as a component of combination antiretroviral treatment in this patient population was a practical therapeutic strategy.

Adolescent↗

Development of an indinavir oral liquid for children.

An indinavir oral liquid was developed and studied. Several oral liquids containing indinavir were prepared and taste tested in eight healthy volunteers. Physical and chemical stability over two weeks were examined, and a randomized, two-way-crossover, single-dose bioequivalence trial was performed in 12 healthy male volunteers. Indinavir 800 mg was given as two 400-mg indinavir capsules (Crixivan) on day 1 and as 80 mL of the indinavir liquid on day 2, or vice versa. A standard breakfast and lunch were given at fixed times, and blood and urine samples were collected at various intervals up to eight hours. The log-transformed area under the concentration-versus-time curve from zero to eight hours (AUC0-8) and maximum plasma concentration (Cmax) for the liquid versus the capsules were compared by using a 90% confidence interval (CI) test (limits, 80-125%), and the time to Cmax (tmax) was compared by using the nonparametric sign test. The liquid selected had an acceptable taste, contained indinavir 10 mg/mL, and was chemically stable for two weeks at 4 degrees C. The 90% CI for the AUC ratio (liquid versus capsules) was 92-99% (mean, 95%); for the Cmax ratio it was 95-106% (mean, 100%). There was no significant difference in tmax between the liquid and capsules. An oral liquid formulation of indinavir was developed that had an acceptable taste, was chemically stable, and was bioequivalent to the commercially available capsule.

Administration, Oral↗

A randomized, comparative study of lamivudine plus stavudine, with indinavir or nelfinavir, in treatment-experienced HIV-infected patients.

OBJECTIVE: To compare adherence and clinical outcome with two modalities of highly active antiretroviral therapy (HAART), in HIV-infected patients. DESIGN: Randomized, open-label, prospective study. SETTING: Tertiary care centre in Spain. PATIENTS: A total of 112 non-naive HIV-infected patients, recruited from March 1998 through August 1998, were studied. INTERVENTIONS: Triple drug therapy with stavudine and lamivudine, plus indinavir or nelfinavir. MAIN OUTCOME MEASURES: Adherence, side-effects, and immunological, virological, and clinical efficacy of treatment were assessed at 3-month intervals. RESULTS: After a median follow-up of 9 months, 32% of patients in the indinavir group versus 50% of those in the nelfinavir group showed adequate adherence in all clinical appointments (P= 0.0559). Adherence was superior in the nelfinavir group in every visit. After 6 months of treatment 48% of subjects in the indinavir group and 70% of those in the nelfinavir group exhibited adequate adherence (P= 0.0311). After 9 months 35% of patients in the indinavir group and 59% of those in the nelfinavir group showed adequate adherence (P= 0.0291). Side-effects provoked discontinuation of treatment in 34% of patients in the indinavir group and 12% of patients in the nelfinavir group (P= 0.0073). Immunological and virological efficacy were similar in both groups. CONCLUSIONS: Adherence to a HAART regimen with stavudine plus lamivudine plus nelfinavir was superior to a regimen with stavudine plus lamivudine plus indinavir. Side-effects provoked more discontinuation of treatment in the indinavir group than in the nelfinavir group.

Adult↗