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Constance Delaugerre

Publications and source records attributed to Constance Delaugerre.

At least 19 recordsLinked to original sources

Population analysis of weight-, age-, and sex-related differences in the pharmacokinetics of lopinavir in children from birth to 18 years.

The pharmacokinetics of lopinavir were investigated by the use of a population approach performed with the nonlinear mixed effect modeling program NONMEM and 157 children ranging in age from 3 days to 18 years. The pharmacokinetics of lopinavir were well described by a one-compartment model in which the absorption and the elimination rate constants were equal. Typical population estimates of the apparent volume of distribution (V/F) and plasma clearance (CL/F) were 24.6 liters and 2.58 liters/h, respectively. The lopinavir V/F and CL/F were both related to body weight (BW), with an important increase in weight-normalized CL/F for the lowest BW. Combined treatment with lopinavir and nevirapine was found to increase the CL/F. The lopinavir CL/F was also age and sex related, as a 39% increase was observed after the age of 12 years for boys compared to the CL/F for girls. The consequences of these pharmacokinetic discrepancies and the necessity to modify the currently recommended dosage regimen should be further investigated.

Adolescent↗

Repeated HIV-1 resistance genotyping external quality assessments improve virology laboratory performance.

The performance of French virology laboratories belonging to the ANRS network has been assessed annually for 3 years. The performance of these laboratories was compared between the years 2002 and 2003. Ten and 7 coded samples were sent to 38 virology laboratories in 2002 and 45 virology laboratories in 2003, respectively. Each panel of coded samples included at least one HIV-negative control, a pair of duplicate specimens, samples with a wide range of viral loads, and samples with a large number of resistance mutations. The laboratories used their standard sequencing procedures and were asked to report the amino acids at codons associated with resistance mutations, based on the IAS-USA expert panel list. The reference amino acid sequences were defined as those most frequently reported by the participants. The specificity of detection of RT mutations was significantly better in 2003 (99.9%) than in 2002 (99.7%) (P = 0.05). There was no difference between 2002 and 2003 in the specificity of detection of protease mutations (99.6% and 99.8%) or the sensitivity of detection of RT mutations (98.8% and 98.2%). The sensitivity of detection of protease mutations improved significantly between 2002 and 2003 (97.6% and 99.0%, respectively; P = 0.037). The proportion of laboratories reporting fully accurate results, in terms of amplification, specificity, sensitivity, and reproducibility, tended to increase between 2002 and 2003 (P = 0.077). No errors were made by 19% of laboratories in 2002, compared to 42% in 2003. These results show the value of repeated external quality assessments.

Clinical Laboratory Techniques↗

Change to a once-daily combination including boosted atazanavir in HIV-1-infected children.

BACKGROUND: Pediatric experience with atazanavir combined with antiretroviral drugs administered once daily is very limited. OBJECTIVE: The objective of this prospective, single-center observation study was to evaluate efficacy and tolerance of once-a-day ritonavir-boosted atazanavir, including treatment. RESULTS: Antiretroviral treatment of 23 children and adolescents with a median age of 16 years (range, 10-19 years) was changed to a single daily dose of a combination of ritonavir-boosted atazanavir and 2 other nucleoside or nonnucleoside analogs. The single daily dosing was expected to improve adherence to treatment. The mean follow-up period was 12 months (range, 6-17 months). At the time of the treatment switch, the previous treatment had been effective in 11 children (plasma viral load [pVL] <50 copies/mL) and not effective in 12 (pVL >50 copies/mL). None of the viral genotypes had resistance to atazanavir. The susceptibility score for the drugs used in combination with atazanavir (GSS) was at least 1.5 in 12 of 20 children. The atazanavir dose was 300 mg per day for children weighing more than 50 kg and 200 mg per day for children weighing 30 to 50 kg, in all cases associated with 100 mg ritonavir. During follow up, the mean atazanavir plasma concentration at 12 to 15 hours was 2.18 +/- 1.19 mg/L. Tolerance was good in most patients, but 4 children chose to stop treatment because of icterus (n = 2) or persistent nausea and vomiting (n = 2). In 6 of the 12 children in whom treatment was not virologically effective before the switch, pVL was below 50 copies/mL after 1 to 3 months of treatment. Poor compliance and virologic failure persisted in the other 6 children. Seven of the 11 children with good virologic control before the switch continued to have undetectable pVL but 4 experienced virologic failure after 1, 1, 3 or 12 months of treatment despite good compliance. Insufficient antiviral potency of associated drugs could have been the cause of 2 of these 4 unexpected virologic failures. CONCLUSION: In these children with extensive previous treatment, the change to a once-daily treatment, including ritonavir-boosted atazanavir, was associated with a significant risk of virologic failure.

Adenine↗

Virological and pharmacological factors associated with virological response to salvage therapy after an 8-week of treatment interruption in a context of very advanced HIV disease (GigHAART ANRS 097).

Both highly potent antiretroviral drug rescue multi therapy and treatment interruption (TI) have been suggested to be effective in HIV-1 infected-patients with multiple treatment failure. GigHAART-ANRS 097 was the only randomized trial during which an 8-week TI was beneficial in heavily pre-treated patients with multi-drug resistant virus on resuming a multiple-drug salvage regimen. The aim of this study was to analyze virological and pharmacological factors associated with a virological response. Clonal resistance analysis showed that although the viral population was highly mutated and nearly monoclonal at baseline, the 8-week interruption therapy allowed the re-emergence of more susceptible quasispecies to the subsequent salvage therapy, which were not detected by classical genotypic resistance testing. The fact that not every viral clone harbored all resistance viral mutations could explain a part of the virological response to a six to eight drug regimen for patients enrolled in the TI group. This phenomenon was associated with a transient virological response after the use of a GigHAART therapy, but was followed by the re-emergence of baseline resistance pattern and acquisition of additional mutations in patients failing this strategy. A combined factor of protease inhibitor (PI) concentration and genotypic score, expressed as a genotypic inhibitory quotient (GIQ), was used to assess the importance of genotypic resistance and plasma drug levels in the rate of response to multiple PI combination. The GIQ of each PI used in the regimen was not associated with virological success. However, the sum of PI GIQs was predictive of a virological response. These results suggest that pharmacological enhancement might overcome viral resistance and that there is some benefit in adding the activity of several boosted-PIs to improve the response to a salvage regimen.

Anti-HIV Agents↗

Selection of a rare resistance profile in an HIV-1-infected patient exhibiting a failure to an antiretroviral regimen including tenofovir DF.

The human immunodeficiency virus type 1 (HIV-1) resistance profile, K65R, K70E and M184V, on reverse transcriptase gene was associated with the virologic rebound consecutively to the switch of lopinavir/r to tenofovir DF in a stable regimen with nucleoside backbone of abacavir, lamivudine and didanosine. The high selective pressure on the same resistance pathway was probably associated with the loss of antiviral potency, even in well-controlled patient.

Adenine↗

Predictive factors of virologic success in HIV-1-infected children treated with lopinavir/ritonavir.

Predictive factors of the virologic success of the use of lopinavir/ritonavir (LPV/r) in HIV-infected children are unknown, especially in children who have been pretreated with protease inhibitors (PIs). This longitudinal, single-center, observational study included 69 children (21 PI-naive and 48 PI-experienced) who had received LPV/r for at least 3 months. The mean (+/- SD) age was 10.3 +/- 4.8 years, and the mean baseline of CD4 percentage and HIV-1 RNA was 14.9% +/- 9.8% and 4.8 +/- 1.05 log10 copies/mL, respectively. The mean duration of follow-up was 16.5 +/- 8.3 months. At 6, 12, and 18 months, 52%, 57%, and 49% of all children, respectively, had a viral load less than 50 copies/mL. The risk of virologic failure, defined as 2 consecutive viral loads greater than 1000 copies/mL, was significantly higher when the children were previously treated with PIs and when the baseline LPV mutation score exceeded 3 mutations. In the pretreated children, the ratio of the plasma LPV maximal concentration to the baseline LPV score mutation was also associated with failure, independently of resistance score. Finally, in children failing an LPV-containing regimen, accumulation of additional PI-associated resistance mutations was evidenced in viral isolates from children with prior PI treatment, even with viral replication levels less than 10,000 copies/mL. In pretreated children, LPV plasma levels should be optimized in an attempt to achieve sufficient drug concentrations to overcome the resistance level.

Child↗

Benefit of treatment interruption in HIV-infected patients with multiple therapeutic failures: a randomized controlled trial (ANRS 097).

BACKGROUND: Both highly potent antiretroviral drug rescue therapy and treatment interruption have been suggested to be effective in patients with multiple treatment failure. OBJECTIVE: To assess both the benefits and risks of an 8-week treatment interruption associated with a six to nine-drug rescue regimen in patients with multiple treatment failures. DESIGN: A randomized comparative controlled trial in 19 university hospitals in France. PATIENTS: Sixty-eight HIV-infected patients with multiple previous treatment failures and CD4 cell counts less than 200 x 10(6) cells/l and plasma HIV-1-RNA levels of 50,000 copies/ml or greater. MEASUREMENTS: The primary efficacy outcome was the proportion of patients with at least a 1 log10 decrease (copies/ml) in the plasma HIV-1-RNA level after 12 weeks of therapy. RESULTS: Treatment interruption followed by multidrug salvage therapy led to a greater proportion of patients achieving virological success (i.e. 1 log10 decrease) at 12 weeks compared with patients receiving multidrug therapy alone (62 versus 26%, intent-to-treat analysis; P = 0.007). The median decrease in the HIV-1-RNA level was -1.91 and -0.37 log10 copies/ml (P = 0.008), respectively. Treatment interruption led to an increase in the number of sensitive drugs of the multidrug regimen (71 versus 35% of regimen with at least two sensitive drugs; P = 0.004). Factors associated with virological success were treatment interruption, the reversion of at least one mutation to wild type, adequate plasma drug concentration, and the use of lopinavir. CONCLUSION: Treatment interruption was beneficial for treatment-experienced HIV-infected patients with advanced HIV disease and multidrug-resistant virus.

Adolescent↗

Thymidine analogue reverse transcriptase inhibitors resistance mutations profiles and association to other nucleoside reverse transcriptase inhibitors resistance mutations observed in the context of virological failure.

During ZDV or d4T exposure, mutations at codons 41, 67, 70, 210, 215, and 219 can be selected and were named thymidine analogue mutations (TAMs). Some previous results suggested that different TAMs patterns could exist and that the kind of TAMs pattern could influence the virological response to some nucleoside reverse transcriptase inhibitors (NRTIs). In order to get more data about the relative prevalence of these patterns, their associations with other NRTI resistance mutations and the identification of the different stages observed during the acquisition of TAMs under treatment by NRTIs, we collected 1,098 RT sequences harbouring at least one TAM from patients failing to antiretroviral regimen. Sequences were stored in a database designed specifically to allow the retrieval of sequences that met specific criteria such as the occurrence and frequency of a particular mutation, the nature and frequency of the amino acid substitution at a given codon, and/or the rate of association between resistance mutations. Two pathways of TAMs can be identified: profile #1 (T215Y mutation linked) and profile # 2 (T215F mutation linked). The frequency of selection of profile # 1 is two times higher than profile # 2. The E44D/A + V118I complex, 69 insertions, and L74V mutation are associated to profile #1, whereas the Q151M complex and M184V mutation are associated to both profiles. As some NRTI resistance mutations were associated preferentially with profile #1, further studies are needed to explore if, the weaker efficacy observed on viruses harbouring this profile using some NRTIs, could be explained by the TAMs profile itself or the other associated NRTI resistance mutations.

Anti-HIV Agents↗

Resistance profiles observed in virological failures after 24 weeks of amprenavir/ritonavir containing regimen in protease inhibitor experienced patients.

Amprenavir (APV) is an HIV protease inhibitor (PI) used for the treatment of either naive or PI-experienced HIV-infected patients. Several genotypic resistance pathways in protease gene have been described to be associated to unboosted APV failure (I50V, V32I + I47V, I54L/M, or less commonly I84V, which may be accompanied by one ore more accessory mutations such as L10F, L33F, M46I/L). The aims of this study were to investigate the efficacy up to week 24 of an APV plus ritonavir containing regimen in PI experienced patients and to determine the genotypic resistance profiles emerging in patients failing to this therapy. Forty-nine, PI experienced but APV naïve patients were treated with APV (600 mg bid) plus ritonavir (100 mg bid). By intent-to-treat analysis, the median decrease in viral load (VL) was -1.32 log10 (min +0.6; max -2.8) and -1.46 log10 (min +0.5; max -2.8) 12 and 24 weeks after initiating APV plus ritonavir regimen, respectively. Twelve patients harboured a VL >200 copies/ml at week 24. Among these patients, the selection of mutations previously described with the use of APV as first PI (V32I, L33F, M46I/L, I50V, 54M/L, and I84V) was observed. However, in some cases, mutations classically described after the use of other PIs (V82F and L90M) were selected but always with APV-specific mutations. There was no relation between the resistance pathways selected with either APV or ritonavir plasma minimal concentration, but higher APV plasma minimal concentration were associated with a lower rate of resistance mutations selection.

Adult↗

Clinically relevant interpretation of genotype and relationship to plasma drug concentrations for resistance to saquinavir-ritonavir in human immunodeficiency virus type 1 protease inhibitor-experienced patients.

It has been shown that virological protease inhibitor (PI) resistance mutations present at the initiation of saquinavir (SQV) plus ritonavir (RTV) therapy in PI-experienced patients are the strongest predictors of virological response. But most of the current resistance algorithms are adapted for unboosted SQV regimens. We applied a stepwise methodology for the development and validation of a clinically relevant genotypic resistance score for an SQV (800 mg twice per day [b.i.d.]) plus RTV (100 mg b.i.d.)-containing regimen. PI-experienced patients treated by this regimen achieved a human immunodeficiency virus plasma viral load (VL) of <200 copies/ml at months 3 to 5 for 41.7% of subjects. Adjusted in a multivariate analysis, taking into account all the confounding factors, such as the nucleoside used, five mutations were combined in a resistance score associated with a reduced virological response to an SQV-plus-RTV regimen: L24I, I62V, V82A/F/T/S, I84V, and L90IM. Patients with isolates harboring 0 to 1 mutation among the score achieved -2.20 log10 and -1.23 log10 copies/ml of VL reduction, respectively, while it was -0.27 log10 copies/ml for those with at least two mutations, classifying the isolates as "no evidence of resistance" (0 or 1 mutation) or "resistance " (> or =2 mutations). The minimum concentration in plasma (Cmin) of SQV alone was not associated with the virological response. However, the combination of the SQV Cmin and the genotypic score, expressed as the genotypic inhibitory quotient, was predictive of the virological response, suggesting that the interpretation of SQV concentrations in plasma should be done only in the context of the resistance index provided by viral genotype for PI-experienced patients.

Codon↗

Comparison of the dynamics of resistance-associated mutations to nucleoside reverse transcriptase inhibitors, nonnucleoside reverse transcriptase inhibitors, and protease inhibitors after cessation of antiretroviral combination therapy.

The dynamics of mutations associated with resistance to antiretroviral drugs were analyzed after cessation of therapy. The results showed that the kinetics of the shift to wild-type amino acid residues were significantly faster for protease inhibitors, intermediate for nonnucleoside reverse transcriptase inhibitors, and slower for nucleoside reverse transcriptase inhibitors.

Anti-HIV Agents↗

Persistence of multidrug-resistant HIV-1 without antiretroviral treatment 2 years after sexual transmission.

OBJECTIVES: To understand the virological mechanisms of 2-year persistence of multidrug-resistant virus without selective antiretroviral pressure in HIV-1-infected patients. PATIENTS AND METHODS: Two patients were contaminated recently by their HIV-1-infected partners, who had received, before the transmission, all available antiretroviral drugs and who exhibited a severe therapeutic failure. The resistance mutations analysis was performed by clonal sequencing of 1.2 kb of pol gene in plasma of index and sources patients. Sequencing of HIV-1 DNA was performed in PBMCs of index patients. RESULTS: Genotypic testing performed in index patients at time of seroconversion showed resistance mutations to three classes of drugs. All mutations were linked on the same viral genome and all quasispecies carried all mutations. No wild-type virus was detected. The same results were found in source patients and showed that all mutations were transmitted. In the index patients, all mutations persisted over 2 years without antiretroviral treatment. Moreover, the resistance mutations were all archived in the cellular reservoir. Viral load and CD4 count of index patients remained unchanged during 2 years of follow-up. DISCUSSION: Only multidrug-resistant viruses were detected in the source patients and could be transmitted in index patients. In the latter, an expansion of predominant multidrug-resistant quasispecies and the 'archival' of all mutations were observed. These results explain the persistence of mutations and suggest that it is highly difficult to return to a wild-type viral population, sensitive to an antiretroviral treatment. The treatment of index patients is limited and the major risk is the transmission of these multidrug-resistant viruses. This work was presented in part in the XII International HIV Drug Resistance Workshop, Los Cabos, Mexico, June 2003; and in the 2nd IAS Conference on HIV Pathogenesis & Treatment, Paris, France, July 2003.

Adult↗

Genotypic inhibitory quotient as predictor of virological response to ritonavir-amprenavir in human immunodeficiency virus type 1 protease inhibitor-experienced patients.

Forty-nine protease inhibitor (PI)-experienced but amprenavir (APV)-naïve patients experiencing virological failure were treated with ritonavir (RTV) (100 mg twice a day [b.i.d.]) plus APV (600 mg b.i.d.). Patients responded to therapy with a median viral load decrease of -1.32 log(10) by week 12. The addition of low-dose RTV enhanced the minimal APV concentration in plasma (APV C(min)) up to 10-fold compared with that obtained with APV (1,200 mg b.i.d.) without RTV. Baseline PI resistance mutations (L10F/I/V, K20M/R, E35D, R41K, I54V, L63P, V82A/F/T/S, I84V) identified by univariate analysis and included in a genotypic score and APV C(min) at week 8 were predictive of the virological response at week 12. The response to APV plus RTV was significantly reduced in patients with six or more of the resistance mutations among the ones defined above. The genotypic inhibitory quotient, calculated as the ratio of the APV C(min) to the number of human immunodeficiency virus type 1 protease mutations, was a better predictor than the virological or pharmacological variables used alone. This genotypic inhibitory quotient could be used in therapeutic drug monitoring to define the concentrations in plasma needed to control replication of viruses with different levels of PI resistance, as measured by the number of PI resistance mutations.

Adult↗

Interruption of nonnucleoside reverse transcriptase inhibitor (NNRTI) therapy for 2 months has no effect on levels of human immunodeficiency virus type 1 in plasma of patients harboring viruses with mutations associated with resistance to NNRTIs.

A 2-month interruption of only nonnucleoside reverse transcriptase inhibitors (NNRTIs) for patients carrying mutations associated with resistance to NNRTIs was followed by no change in either viral load or CD4 cell counts. These data suggest that these compounds have lost all of their in vivo antiviral activity in such cases.

Alkynes↗

Increase of HIV-1 pro-viral DNA per million peripheral blood mononuclear cells in patients with advanced HIV disease (CD4<200 cells/mm3) receiving interleukin 2 combined with HAART versus HAART alone (ANRS-082 trial).

OBJECTIVE: To assess the effect of interleukin (IL)-2 combined with highly active antiretroviral therapy (HAART) on HIV-1 pro-viral DNA quantification in HIV-1-infected patients with CD4<200/mm3. PATIENTS AND METHODS: Seventy patients with CD4<200 cells/mm3 and CV<1000 copies/ml were enrolled in a 6-month randomized controlled study to evaluate the subcutaneous injection of IL-2 in addition to HAART versus HAART alone. Then, in a non-comparative phase from week 28 to week 80, IL-2 was proposed to patients from both groups. The HIV-1 pro-viral DNA was quantified at baseline, week 24 and week 50 by a real-time polymerase chain reaction (PCR) assay in peripheral blood mononuclear cells (PBMC). Analysis of resistance mutations was performed at baseline and after 6-months of IL-2. RESULTS: HIV-1 DNA level in PBMC increased significantly in patients treated with 6 months of HAART combined to IL-2 (+0.24 log10, P=0.009) compared to a slight decrease in patients treated with HAART alone (-0.05 log10). Moreover, a DNA increase was observed in control group patients when receiving 6 months of IL-2 (+0.34 log10). No increase of HIV-1 DNA was seen when this measure was expressed per million CD4 cells; it was probably hidden by the intense increase of CD4 lymphocytes after 6 months of IL-2 administration. No evolution of resistance mutations in pro-viral DNA was observed during 6 months of IL-2, despite the increase of pro-viral DNA and the occurrence of transient increase of viraemia. CONCLUSION: Administration of IL-2 combined with HAART in HIV-1 infected-patients with advanced disease led to an increase of HIV-1 pro-viral DNA per million PBMC without virological failure or emergence of resistance.

Anti-HIV Agents↗

Human immunodeficiency virus (HIV) Type 1 reverse transcriptase resistance mutations in hepatitis B virus (HBV)-HIV-coinfected patients treated for HBV chronic infection once daily with 10 milligrams of adefovir dipivoxil combined with lamivudine.

Adefovir dipivoxil (ADV) at a suboptimal concentration for human immunodeficiency virus type 1 (HIV-1) (10 mg once daily) can be used to treat hepatitis B virus (HBV) infection in HIV-1-HBV-coinfected patients and does not, even in the case of uncontrolled HIV-1 replication, select for either ADV mutations at codons 65 and 70 or any other particular HIV-1 reverse transcriptase resistance profile.

Adenine↗