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Biomedical subjects

D M Burger

Publications and source records attributed to D M Burger.

At least 19 recordsLinked to original sources

Changes in indinavir exposure over time: a case study in six HIV-1-infected children.

OBJECTIVE: To study changes in indinavir exposure over time in HIV-1-infected children. MATERIALS AND METHODS: Protease inhibitor (PI)-naive HIV-1-infected children were treated with indinavir, zidovudine and lamivudine. Steady-state plasma pharmacokinetic (PK) sampling was carried out as standard of care. The AUC(0-8) was targeted between 15 and 30 mg h/L. PK sampling was repeated after dosage adjustment until the AUC(0-8) reached target values. Patients were included when the time interval between PK samplings was > or =2 years and differences in dosage/m2 <10% between PK samplings 1 and 2. Corrections of dose for changes in body size were carried out. RESULTS: Six children were enrolled with a median age of 5.2 years (range 1.7-13.6 years). All had a viral load below 500 copies/mL. The geometric mean (GM) of the AUC(0-8) decreased from 25.3 mg h/L at the first PK-day to 19.1 mg h/L at the second PK-day [geometric mean ratio (GMR): 0.76 (95% C.I.: 0.48-1.20)]. The GM of Cmax decreased from 11.8 to 10.4 mg/L [GMR: 0.88 (95% C.I.: 0.59-1.32)]. The GM of Cmin decreased from 0.08 to 0.07 mg/L [GMR: 0.86 (95% C.I.: 0.62-1.18)]. All children had an AUC(0-8) above 15 mg h/L on the first PK-day; three had an AUC(0-8) below 15 mg h/L on the second PK-day. In two of these three children, the plasma viral load was >500 copies/mL. CONCLUSION: Changes in indinavir exposure were observed over time. In two patients, decreased indinavir exposure was associated with virological failure. Therapeutic drug monitoring should be carried out over time since this may prevent subtherapeutic dosing in children.

Adolescent↗

[Tuberculosis and HIV coinfection in three patients: the possibilities for simultaneous treatment].

Three patients received simultaneous treatment for tuberculosis and HIV: a 23-year-old woman and a 33-year-old man who were asylum seekers from Africa and a 45-year-old woman who was an intravenous drug addict. During the treatment with antiretroviral and anti-tuberculous drugs, several problems arose: drug interactions (between rifampicine and protease inhibitors/non-nucleoside reverse transcriptase inhibitors), side effects, non-compliance and immune reconstitution reactions. These problems were solved either by temporary withdrawal of the medication or by substituting other drugs. There are a number of possible treatment strategies that minimise the risks. Despite the potential problems, in patients with advanced HIV infection, antiretroviral treatment should not be delayed until after the end of the tuberculosis treatment.

Adult↗

Pharmacokinetics, food intake requirements and tolerability of once-daily combinations of nelfinavir and low-dose ritonavir in healthy volunteers.

AIMS: This study was performed to evaluate the steady-state pharmacokinetics, food intake requirements and short-term tolerability of once-daily combinations of nelfinavir and low-dose ritonavir. METHODS: Twenty-seven healthy volunteers were randomized over three groups to receive a once-daily regimen of nelfinavir/ritonavir 2,000/200 mg (group 1), 2,000/400 mg (group 2) or 2,500/200 mg (group 3) with food for 14 days. Pharmacokinetic parameters for nelfinavir and its active metabolite M8 were assessed on study days 15 and 16, after administration of the regimens with a full (610 kcal) or light (271 kcal) breakfast, respectively. RESULTS: Pharmacokinetic data were evaluable for eight volunteers in group 1, eight in group 2 and four in group 3. Administration of nelfinavir/ritonavir with a full breakfast resulted in geometric mean (GM) nelfinavir AUC(24h) values of 76.8, 51.3, and 61.9 h*mg/l in group 1, 2 and 3, respectively. GM 24-h Cmin concentrations of nelfinavir were 0.76 mg l(-1), 0.43 mg l(-1) and 0.47 mg l(-1), respectively. Co-administration of ritonavir increased M8 concentrations more than nelfinavir concentrations, resulting in GM AUC(24h) and Cmin values for nelfinavir plus M8 that were higher than or comparable to reference values for the approved regimen of nelfinavir (1,250 mg BID without ritonavir). In the 2,000/200 mg group, seven out of eight subjects had a Cmin value of nelfinavir plus M8 above a threshold of 1.0 mg l-1. Administration of the combinations with a light breakfast resulted in significant decreases in the AUC(24h) and Cmin of nelfinavir and nelfinavir plus M8, compared with intake with a full breakfast. For the Cmin of nelfinavir plus M8, the GM ratio (light/full breakfast) was 0.76 (90% confidence interval 0.67-0.86, participants from all groups combined). Short-term tolerability was satisfactory, apart from a higher than expected incidence of mild rash (12%). CONCLUSIONS: Administration of nelfinavir in a once-daily regimen appears feasible. A nelfinavir/ritonavir 2,000/200 mg combination appears appropriate for further evaluation. Once-daily nelfinavir/ritonavir should be taken with a meal containing at least 600 kcal.

Adolescent↗

Simultaneous determination of the HIV drugs indinavir, amprenavir, saquinavir, ritonavir, lopinavir, nelfinavir, the nelfinavir hydroxymetabolite M8, and nevirapine in human plasma by reversed-phase high-performance liquid chromatography.

A reversed-phase high-performance liquid chromatography method for the simultaneous quantitative determination of the currently available HIV protease inhibitors amprenavir, indinavir, lopinavir, nelfinavir, ritonavir, saquinavir, the active nelfinavir metabolite M8, and the nonnucleoside reverse transcriptase inhibitor nevirapine in human plasma is described. The method involved liquid-liquid extraction from plasma, followed by high-performance liquid chromatography with an OmniSpher 5 C18 column and ultraviolet detection set at a wavelength of 215 nm for the protease inhibitors and 280 nm for nevirapine. The runtime was 25 minutes. The assay has been validated over the concentration range of 0.05 to 30 mg/L for indinavir, nelfinavir, ritonavir, and saquinavir, 0.07 to 30 mg/L for amprenavir and lopinavir, and 0.05 to 15 mg/L for M8 and nevirapine. This method proved to be simple, accurate, and precise and is useful for the therapeutic drug monitoring of protease inhibitors and the nonnucleoside reverse transcriptase inhibitor nevirapine on a routine basis.

Adult↗

Saquinavir soft-gel capsules (Fortovase) give lower exposure than expected, even after a high-fat breakfast.

BACKGROUND: The soft-gel capsule (sgc) of saquinavir has been developed in order to improve the poor oral bioavailability of the original hard-gel capsules. However, in a Dutch study population using saquinavir-sgc plasma levels were lower than expected. We hypothesised that this was caused by differences in the amount of fat in the meals of the study populations. METHODS: 8-h steady-state plasma curves after observed ingestion of 1200 mg saquinavir-sgc were recorded, concomitantly with a normal breakfast (600 kcal, 33% fat) on the first day, and a high-fat breakfast (1040 kcal, 54% fat) on the second day. Additionally, a comparison was made between saquinavir hard-gel capsules and saquinavir-sgc with or without grapefruit juice (n = 1). Furthermore, a comparison between saquinavir-sgc and ritonavir + saquinavir-sgc 400/400 mg bid was made (n = 1). RESULTS: Although saquinavir exposure was improved by fat, grapefruit juice or ritonavir, exposure to saquinavir for all recorded curves was lower than expected. A large proportion of trough concentrations was below the efficacy threshold. CONCLUSION: Intake of squinavir-sgc with high-fat meals or grapefruit juice may improve the pharmacokinetic profile. However, plasma concentrations may then still be lower than expected and insufficient for good antiviral efficacy. Probably the only way to reach adequate saquinavir concentrations is by combining saquinavir with ritonavir.

Adult↗

High-performance liquid chromatography of HIV protease inhibitors in human biological matrices.

Methods for HPLC analysis of protease inhibitors (PIs) in human biological matrices were reviewed. Assays have been developed for analysis of single PIs or for simultaneous measurement of multiple PIs in plasma-serum, saliva, cerebrospinal fluid and semen. Liquid-liquid extraction was most often applied for sample pretreatment, but solid-phase extraction and protein precipitation were used as well. Reversed-phase or ion-pair chromatography have been used to separate PIs. Detection of PIs should be sensitive enough for quantitation of plasma concentrations below trough levels of single PIs, or below proposed therapeutic thresholds for PIs. The large majority of assays employs UV detection. As the potential for interferences is large, the selectivity of every method should be evaluated properly. The available high-performance liquid chromatography (HPLC) methods have been applied in clinical pharmacokinetic studies and for therapeutic drug monitoring of PIs. Participation in an interlaboratory quality control program is recommended for every laboratory engaged in the bioanalysis of PIs.

Chromatography, High Pressure Liquid↗

Limited patient adherence to highly active antiretroviral therapy for HIV-1 infection in an observational cohort study.

BACKGROUND: Adherence to highly active antiretroviral therapy (HAART) for human immunodeficiency syndrome type 1 (HIV-1) infection is essential to sustain viral suppression and prevent drug resistance. We investigated adherence to HAART among patients in a clinical cohort study. METHODS: Patients receiving HAART had their plasma concentrations of protease inhibitors or nevirapine measured and completed a questionnaire on adherence. We determined the percentage of patients who reported taking all antiretroviral medication on time and according to dietary instructions in the past week. Drug exposure was compared between patients reporting deviation from their regimen and fully adherent patients. Among patients who received HAART for at least 24 weeks, we assessed the association between adherence and virologic outcome. RESULTS: A total of 224 of 261 eligible patients completed a questionnaire. Forty-seven percent reported taking all antiretroviral medication on time and according to dietary instructions. Patients who reported deviation from their regimen showed lower drug exposure compared with fully adherent patients (median concentration ratio, 0.81 vs 1.07; P =.001). Among those receiving HAART for at least 24 weeks, patients reporting deviation from their regimen were less likely to have plasma HIV-1 RNA levels below 500 copies/mL (adjusted odds ratio, 4.0; 95% confidence interval, 1.4-11.6) compared with fully adherent patients. CONCLUSIONS: Only half of the patients took all antiretroviral medication in accordance with time and dietary instructions in the preceding week. Deviation from the antiretroviral regimen was associated with decreased drug exposure and a decreased likelihood of having suppressed plasma HIV-1 RNA loads. Patient adherence should remain a prime concern in the management of HIV-1 infection.

Acquired Immunodeficiency Syndrome↗

Indinavir crystallization around the loop of Henle: experimental evidence.

OBJECTIVE: To determine the probable site of the nephron and the plasma indinavir (IDV) concentration at which intrarenal IDV crystallization occurs. DESIGN: We performed in vitro crystallization experiments in IDV solutions simulating conditions found in the nephron. METHODS: To determine intrarenal IDV concentrations at which conditions in the nephron allow crystallization, several concentrations of IDV basic solutions (0-800 mM) were titrated from pH 4.0 to higher pH values until crystals formed within 1 minute. Based on the combination of pH and ionic strength at which crystals formed, we determined the site of the nephron at which this combination was first attained. Based on the capacity for concentration at that site, we were able to measure the corresponding plasma IDV concentration. RESULTS: Under conditions normally found at the proximal tubule (i.e., pH 6.7 and ionic strength of 200 mM), IDV crystallized at 200 mg/L. Under conditions applying to the loop of Henle, pH 7.4 and ionic strength of 200 mM, IDV crystallized at 125 mg/L, which would correspond to a plasma IDV concentration of 8 mg/L. CONCLUSIONS: IDV crystallization is most likely in the loop of Henle and may already start at plasma IDV concentrations as low as 8 mg/L. Increasing hydration does not reduce the risk of IDV crystallization in the loop of Henle but instead prevents IDV crystallization and aggregation in the lower urinary tract. It remains to be confirmed whether prevention of high IDV plasma concentrations will reduce the risk of IDV crystallization in the loop of Henle.

Crystallization↗

Analysis of variation in plasma concentrations of nelfinavir and its active metabolite M8 in HIV-positive patients.

OBJECTIVE: To characterize sources of variation in plasma concentrations of nelfinavir and its active metabolite M8 and to evaluate the use of therapeutic drug monitoring for nelfinavir treatment. METHODS: Plasma samples and patient's characteristics were obtained from outpatient clinic. Differences between groups of patients were studied by comparing the observed plasma concentrations with the corresponding concentration on a pharmacokinetic population curve based on median plasma levels. RESULTS: Plasma samples (618) were available from 355 patients taking 1250 mg nelfinavir twice daily. The median ratio between M8 and nelfinavir concentrations was 0.29. This ratio appeared to be independent of the time after ingestion. Statistically significantly lower M8 concentrations were found in Black and Asian patients, or when comedication with CYP3A4 inducers was used. Coadministration of CYP2C19 inhibitors, such as omeprazole, decreased the median M8/nelfinavir ratio. Nevertheless, nelfinavir concentrations and summed concentrations of nelfinavir and M8 were only marginally affected in these patients. Diarrhoea was identified as a cause for lower nelfinavir concentrations, without changing the M8/nelfinavir ratio. In a number of patients with suspected therapy failure or intoxication, abnormal nelfinavir plasma concentrations were found. Dose adjustments based on nelfinavir plasma levels were helpful in a number of patients. CONCLUSION: This study shows that the total concentration of nelfinavir and M8 together is not significantly influenced when variation in M8 levels occurs. Consequently, measuring M8 concentrations in addition to nelfinavir concentrations is not required for the purpose of therapeutic drug monitoring for this drug.

Adolescent↗

A retrospective, cohort-based survey of patients using twice-daily indinavir + ritonavir combinations: pharmacokinetics, safety, and efficacy.

OBJECTIVE: To describe the pharmacokinetics, safety, and efficacy of twice-daily indinavir + ritonavir regimens DESIGN: A cohort-based survey of HIV-infected patients who either used indinavir 800 mg + ritonavir 100 mg twice daily or indinavir 400 mg + ritonavir 400 mg twice daily. METHODS: Data were extracted from a database of samples sent to our laboratory for measurement of indinavir + ritonavir plasma concentrations. Patient characteristics, safety, and efficacy measurements were collected by retrospective chart review. RESULTS: 100 Patients using 800-mg indinavir + 100-mg ritonavir twice daily and 32 patients using 400-mg indinavir + 400-mg ritonavir twice daily were eligible. Median peak and trough concentrations of indinavir were 6.8 and 0.77 mg/L in the 800/100 group and 2.6 and 0.45 mg/L in the 400/400 group. The most frequently found side effects were nausea and vomiting, which occurred in 22.1% and 34.9% of the patients in the 800/100 and the 400/400 groups, respectively. Viral load data were analyzed for patients who switched from 800-mg indinavir three times daily to one of the indinavir + ritonavir twice daily regimens. At the time of switch 63% (800/100 group) and 60% (400/400 group) had an undetectable viral load and this increased to 77% and 70%, respectively, during follow-up. Patients who switched to the 400/400 group discontinued treatment more frequently than patients who switched to the 800/100 group (70% vs. 26%, p =.008). CONCLUSIONS: Indinavir + ritonavir regimens show improved pharmacokinetic properties, allowing twice-daily dosing with food. Clinical data suggest that safety and efficacy is at least as good as with indinavir three-times-daily regimens without ritonavir. Prospective, comparative trials are needed to properly assess the role in HIV therapy of these twice-daily indinavir + ritonavir regimens.

Cohort Studies↗

The effect of fluconazole on ritonavir and saquinavir pharmacokinetics in HIV-1-infected individuals.

AIMS: To study the effect of fluconazole on the steady-state pharmacokinetics of the protease inhibitors ritonavir and saquinavir in HIV-1-infected patients. METHODS: Five subjects treated with saquinavir and three with ritonavir received the protease inhibitor alone (saquinavir 1200 mg three times daily, ritonavir 600 mg twice daily) on day 1, and the same protease inhibitor in combination with fluconazole (400 mg on day 2 and 200 mg on days 3 to 8). Pharmacokinetic parameters were determined on days 1 and 8. RESULTS: In the saquinavir group, the median increase in the area under the plasma concentration vs time curve was 50% from 1800 microg l(-1) h to 2700 microg l(-1) h (P = 0.04, median increase: 900 microg l(-1) h; 2.5 and 97.5 percentile: 500-1300), and 56% for the peak concentration in plasma (from 550 to 870 microg l(-1), P = 0.04; median increase: 320 microg l(-1) h, 2.5 and 97.5 percentile: 60-450 microg l(-1)). In the ritonavir group, there were no detectable changes in the pharmacokinetic parameters on addition of fluconazole. CONCLUSIONS: Because of the favourable safety profile of saquinavir, dose adjustments are probably not necessary with concomitant use of fluconazole, as is the case for ritonavir.

Administration, Oral↗

Pharmacokinetics of the protease inhibitor indinavir in human immunodeficiency virus type 1-infected children.

The objective of this study was to evaluate the pharmacokinetics of indinavir in human immunodeficiency virus-infected children as part of a prospective, open, uncontrolled, multicenter study in The Netherlands. Human immunodeficiency virus type 1-infected children were monitored over 6 months of treatment with zidovudine (120 mg/m(2) every 8 h [q8h]), lamivudine (4 mg/kg of body weight q12h), and indinavir (33mg/kg of metabolic weight [MW] q8h). Four weeks after the start of treatment, the steady-state pharmacokinetics of indinavir were determined by high-pressure liquid chromatography. If patients had an indinavir area under the concentration-time curve (AUC) of below 10 or above 30 mg/liter. h, a dose increase or a dose reduction was made and pharmacokinetic measurements were repeated 4 weeks later. Nineteen patients started with the dose of 33 mg/kg of MW q8h. The median AUC (range) was 10.5 (2.8 to 51.0) mg/liter. h. The median AUC (range) in 17 children treated with 50 mg/kg of MW q8h was 20.6 (4.1 to 38.7) mg/liter. h. Finally, five patients had a dose increase to 67 mg/kg of MW q8h, resulting in a median AUC (range) of 36.6 (27.2 to 80.0) mg/liter. h. After 6 months of treatment, there were 11 children with an AUC of below 20 mg/liter. h, of whom 5 (45%) had a detectable viral load, while this was the case in none of the 11 children with an AUC of higher than 20 mg/liter. h. We conclude that the optimal dose of indinavir in children to obtain drug exposure similar to that observed in adult patients is 50 mg/kg of MW q8h, which approximates 600 mg/m(2) q8h. It would even be better to adjust the indinavir dose based on an AUC of greater than 20 mg/liter. h.

Adolescent↗

Durable HIV-1 suppression with indinavir after failing lamivudine-containing double nucleoside therapy: a randomized controlled trial.

OBJECTIVE: To assess the durability of the antiretroviral effect in plasma and cerebrospinal fluid (CSF) of antiviral therapy intensification, produced by the addition of indinavir from week 12 onwards to the original regimen of zidovudine/lamivudine or stavudine/lamivudine, after 72 weeks of follow-up using an ultrasensitive HIV-1 RNA assay. To assess CSF concentrations of indinavir at week 48. DESIGN: In a prospectively, randomized, open, single-centre study, antiretroviral-naive patients (CD4 cell count > or =200 cells/microl and a plasma HIV-1 RNA level 10,000 copies/ml) were assigned to a combination of zidovudine/lamivudine or stavudine/lamivudine. Indinavir could be added to the double nucleoside analogue regimen from week 12 or thereafter in case the plasma HIV RNA level was insufficiently suppressed (>500 copies/ml). RESULTS: Forty-seven patients were enrolled (23 stavudine/lamivudine and 24 zidovudine/lamivudine), of whom 33 completed a follow-up of 72 weeks. Indinavir was added in 89% (42/47) of the patients. Only one discontinuation occurred due to virological failure. At week 72, the median plasma HIV-1 RNA levels in the zidovudine/lamivudine group had decreased from 4.80 log10 copies/ml to <500 copies/ml in 100% of patients and <50 copies/ml in 86.6% of the patients. In the stavudine/lamivudine group the plasma HIV-1 RNA decreased from 4.98 log10 copies/ml at baseline to <500 copies/ml in 100% of patients and <50 copies/ml in 66.7% of the patients. On an intent-to-treat basis these figures were 54.2 and 52.2% for zidovudine/lamivudine and stavudine/lamivudine, respectively, for the 50 copies/ml assay. The median CD4 cell count increased from 315 cells/microl, with 150 cells/microl in the zidovudine/lamivudine arm, and from 290 cells/microl, with 310 cells/microl in the stavudine/lamivudine arm (P=0.0001). However, the percentage of CD4 cells did not differ in each group. In the zidovudine/lamivudine group 9/10 and 5/5, and in the stavudine/lamivudine group 11/11 and 6/6 had a CSF HIV-1 RNA level <50 copies/ml at week 12 and 48, respectively. The CSF indinavir concentration ranged from 50 to 170 ng/ml. CONCLUSION: The long-term HIV-1 suppression observed in this study is remarkable, as adding a single antiretroviral agent to a failing regimen goes against current notions of adequate therapy.

Acquired Immunodeficiency Syndrome↗

Dose-finding study of a once-daily indinavir/ritonavir regimen.

In antiretroviral therapy, to improve compliance the need is increasing to develop regimens that combine potency and safety with convenient dosing. The objective of our study was to find a once-daily dosing regimen of a HIV-protease inhibitor, indinavir (IDV), by combining it with ritonavir (RTV). In the study, 12 healthy volunteers took a single IDV dose of 800 mg on day 1. Plasma and urine sampling was done for 12 hours. From day 2 to day 21, participants took RTV liquid 200 mg (group A) or 400 mg (group B) once daily. Repeated pharmacokinetic sampling was performed over the course of 24 hours, after single doses of indinavir 400 mg (day 15), 800 mg (day 18), and 1200 mg (day 21). The best dosage regimen in this pharmacokinetic study was selected based on efficacy and tolerability criteria. The study comprised 10 male and 2 female healthy volunteers, mean age, 25 years (range, 18-50 years), mean weight, 70 kg (range, 52-83 kg). One male participant discontinued on day 8 due to influenza. All other participants completed the study without the occurrence of serious adverse events. RTV inhibited indinavir plasma clearance by 51% to 70%, leading to increased and prolonged IDV exposure. Renal clearance was influenced by the addition of RTV and dosage increments of IDV. The efficacy criterion was best fulfilled by 1200 mg IDV/400 mg RTV, whereas this combination performed most poorly on tolerability criteria. Based on the single dose data, a once-daily regimen of IDV with a low dose of RTV is possible. The best dosage regimen to start with among those studied here appears to be 1200 mg IDV/400 mg RTV, which could be decreased at steady state to 800 IDV/400 RTV or 1200 IDV/200 RTV if toxicity occurs. Steady-state pharmacokinetic data of once-daily IDV/RTV regimens in HIV-infected patients are warranted.

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↗