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D Descamps

Publications and source records attributed to D Descamps.

At least 37 records · Page 2Linked to original sources

Efficacy and tolerability of stavudine plus lamivudine in treatment-naive and treatment-experienced patients with HIV-1 infection.

BACKGROUND: A combination of two nucleoside analogues is currently the core of any antiretroviral regimen for HIV-1 infection. Stavudine plus lamivudine has shown an additive effect in vitro, as well as an absence of overlapping toxicity and cross-resistance. OBJECTIVE: To evaluate the antiviral efficacy of stavudine plus lamivudine in treatment-naive patients and in patients previously treated with other nucleoside reverse transcriptase inhibitors. DESIGN: Prospective, open-label pilot study. SETTING: Three urban clinical centers in Paris. PATIENTS: 83 patients with CD4+ cell counts between 50 and 400 cells/mm3 (42 treatment-naive and 41 treatment-experienced patients). INTERVENTIONS: Stavudine, 40 mg twice daily (30 mg twice daily in patients with a body weight < or = 60 kg), and lamivudine, 150 mg twice daily. MEASUREMENTS: Primary end points for efficacy included changes in plasma viral load and CD4+ cell count at 24 weeks compared with baseline. RESULTS: Therapy with stavudine plus lamivudine resulted in a median decrease of 1.66 log10 (10(1.66)) (range, -3.04 to -0.79 log10) in plasma HIV-1 RNA; the median increase in CD4+ cell count was 108 cells/mm3 (range, -58 to 406 cells/mm3) at week 24 in treatment-naive patients. In treatment-experienced patients, the median reduction in plasma HIV-1 RNA was 0.55 log10 (range, -2.86 to 0.52 log10), and the median increase in CD4+ cell count was 46 cells/mm3 (range, -188 to 311 cells/mm3). The percentages of patients with less than 3000 HIV-1 RNA copies/mL and less than 400 copies/mL at 24 weeks were, respectively, 57% (95% CI, 41% to 72%) and 26% (CI, 12% to 40%) among treatment-naive patients and 22% (CI, 10% to 38%) and 5% (CI, 1% to 17%) among treatment-experienced patients. Of 82 patients, 14 (17%) experienced grade 3 or 4 toxicity and 2 discontinued therapy because of intolerance toward treatment. CONCLUSION: Stavudine plus lamivudine seems to have a potent antiviral effect in treatment-naive and treatment-experienced patients. No major drug-limiting toxicity was found. This two-nucleoside combination should be considered in multidrug therapy for HIV.

Adult↗

Highly sensitive method for amplification of human immunodeficiency virus type 2 DNA.

We evaluated a new human immunodeficiency virus type 2 (HIV-2) DNA amplification strategy based on peripheral blood mononuclear cell long PCR (XL PCR) followed by nested PCR amplification. The primers used were located in the highly conserved long terminal repeat and in the pol regions of the genome. Five primer pairs corresponding to different regions of the HIV-2 env gene were used in the nested step. Samples from 42 patients were tested, which yielded positive amplification with at least two primer pairs in 40 (95%) samples. A primer pair (EB2/EB5) located on the V3 region succeeded in amplifying proviral DNA in 40 samples.

DNA Primers↗

Line probe assay for detection of human immunodeficiency virus type 1 mutations conferring resistance to nucleoside inhibitors of reverse transcriptase: comparison with sequence analysis.

We compared the line probe assay (LiPA) to sequence analysis for the detection of mutations conferring resistance to nucleoside inhibitors of human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT). Plasma samples from 40 patients who had received zidovudine, dideoxyinosine, and dideoxycytosine, alone or in combination, and who were enrolled in the ALTIS 2 clinical trial (lamivudine [3TC] plus stavudine) were tested at enrollment and at week 24. RT PCR products from plasma were used for LiPA, and DNA was used for sequence analysis. LiPA gave uninterpretable results for 8.5% of the analyzed codons corresponding to 63 samples, mainly for codons 41, 69, and 70. Several minor discrepancies between the two methods occurred, mainly due to the ability of LiPA to detect mixed populations while sequence analyses detect a single homogeneous population. LiPA is suitable for detecting mixed populations and easy to implement in clinical laboratories and might be useful for epidemiological surveys of primary HIV-1 resistance.

Anti-HIV Agents↗

Switch to unusual amino acids at codon 215 of the human immunodeficiency virus type 1 reverse transcriptase gene in seroconvertors infected with zidovudine-resistant variants.

Sequences of the human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) domain were determined by direct sequencing of HIV-1 RNA in successive plasma samples from eight seroconverting patients infected with virus bearing the T215Y/F amino acid substitution associated with zidovudine (ZDV) resistance. At baseline, additional mutations associated with ZDV resistance were detected. Three patients had the M41L amino acid change, which persisted. Two patients had both the D67N and the K70R amino acid substitutions; reversion to the wild type was seen at both positions in one of these patients and at codon 70 in the other one. Reversion to the wild type at codon 215 was observed in only one of eight patients. Unusual amino acids, such as aspartic acid (D) and cysteine (C), appeared at position 215 in four patients during follow-up. These variants isolated by coculturing were sensitive to ZDV. Overgrowth of these variants suggests that they have better fitness than the original T215Y variant. Intraindividual nucleoside substitutions over time were 10 times more frequent in codons associated with ZDV resistance (41, 67, 70, 215, and 219) than in other codons of the RT domain. The predominance of nonsynonymous substitutions observed over time suggests that most changes reflect adaptation of the RT function. The variance in sequence evolution observed among patients, in particular at codon 215, supports a role for chance in the evolution of the RT domain.

Amino Acids↗

Human immunodeficiency virus type 1 subtype F reverse transcriptase sequence and drug susceptibility.

We sequenced and phylogenetically analyzed the reverse transcriptase (RT) regions of the pol genes of 14 human immunodeficiency virus type 1 (HIV-1) isolates from Romanian patients, which were classified as subtype F on the basis of env gene structure. The RT sequences showed that the strains clustered phylogenetically and were equidistant from other HIV-1 subtypes as shown by the neighbor-joining and maximum-likelihood methods, allowing us to define HIV-1 subtype F according to the pol classification. The subtype F RT sequences differed from reported group M RT sequences by 10.94% (for nucleotides) and 7.6% (for amino acids). Phenotypic analysis of subtype F susceptibility to three classes of antiretroviral compounds showed an increase in the 50% inhibitory concentration of the tetrahydroimidazo[4,5,1-jk] [1,4]-benzodiazepin-2-(1H)-one and -thione (TIBO) derivate R82913 for one strain which was naturally resistant to this compound. This first report of subtype F pol sequences confirms the perfect correlation between the phylogenetic positions determined by env and pol analyses and suggests that virus variability might influence the efficacy of antiretroviral treatments. This finding warrants a global evaluation of the phenotypic and genotypic susceptibility of HIV-1 subtypes to antiretroviral drugs.

Adult↗

HIV-1 viral load, phenotype, and resistance in a subset of drug-naive participants from the Delta trial. The National Virology Groups. Delta Virology Working Group and Coordinating Committee.

BACKGROUND: The Delta trial showed that combination therapy (zidovudine plus didanosine and zidovudine plus zalcitabine) substantially lengthened life and reduced disease progression compared with zidovudine monotherapy. We did a nested virological study in three countries (France, the Netherlands, and the UK) to investigate changes in markers for viral load and antiretroviral-drug resistance during therapy. METHODS: 240 zidovudine-naive HIV-1-infected patients were randomly assigned zidovudine only (n = 87), zidovudine plus didanosine (n = 80), or zidovudine plus zalcitabine (n = 73). Viral load in peripheral-blood mononuclear cells and plasma was measured by quantitative culture. Plasma HIV-1 RNA was measured by reverse-transcriptase PCR amplification, and serum p24 antigen by ELISA. Resistance to antiretroviral drugs was measured phenotypically by culture and genotypically by detection and quantification of drug-related point mutations in the pol gene. Analyses were done by intention to treat. FINDINGS: The reduction in viral load was greatest 4-12 weeks after the start of therapy and was most pronounced in the combination-therapy study groups (median reductions of RNA at 4 weeks 1.58, 1.28, and 0.49 log10 copies/mL for zidovudine plus didanosine, zidovudine plus zalcitabine, and zidovudine only, respectively). RNA levels at 8 weeks were predictive of disease progression and death after allowance for baseline values. At 48 weeks, the proportion of participants with phenotypic zidovudine resistance was similar in all three groups: didanosine and zalcitabine resistance were rare; zidovudine genomic resistance correlated with phenotypic resistance (r = 0.54, p < 0.0001) and developed earlier in the combined-therapy groups. However, participants in the zidovudine monotherapy group had higher circulating loads of resistant virus than those in the combined-therapy groups. INTERPRETATION: Combined antiretroviral therapy was more efficient at lowering virus load than monotherapy. Although zidovudine resistance was common in monotherapy and combined-therapy groups, circulating concentrations of resistant virus were substantially lower in the combination groups, which is likely to be a result of the continued antiviral activity of didanosine or zalcitabine.

Anti-HIV Agents↗

[Drugs active against retroviruses].

Major advances in understanding the pathogenesis and treatment of human immunodeficiency virus (HIV) infection have been made recently. The reverse transcriptase and protease enzymes of HIV are currently the targets of antiretroviral therapy. Nucleoside analogues were the first class of antiretroviral drugs which demonstrated antiviral activity in treating patients. More recently protease inhibitors have provided new approaches in the treatment of HIV infection, with encouraging trial results in patients receiving combined therapy. This review presents their mechanisms of activity and patterns of resistance. Apart from these main drug groups many new compounds are under development.

Antiviral Agents↗

Human herpesvirus 6 infection associated with anticonvulsant hypersensitivity syndrome and reactive haemophagocytic syndrome.

Viral infections are thought to play a part in some cutaneous drug reactions. Human herpesvirus 6 (HHV6), which is the agent of exanthema subitum (sixth disease), has never been implicated in a drug reaction. We report a patient with severe phenobarbital-induced anticonvulsant hypersensitivity syndrome in whom a fulminant haemophagocytic syndrome was associated with HHV6 infection. We discuss the possible role of HHV6 in this reactive condition.

Adult↗

Susceptibility of human immunodeficiency virus type 1 group O isolates to antiretroviral agents: in vitro phenotypic and genotypic analyses.

We investigated the phenotypic and genotypic susceptibility of 11 human immunodeficiency virus type 1 (HIV-1) group O strains to nucleoside and nonnucleoside reverse transcriptase (RT) inhibitors and protease inhibitors in vitro. Phenotypic susceptibility was determined by using a standardized in vitro assay of RT inhibition, taking into account the replication kinetics of each strain. HIV-1 group M and HIV-2 isolates were used as references. DNA from cocultured peripheral blood mononuclear cells was amplified by using pol-specific group O primers and cloned for sequencing. Group O isolates were highly sensitive to nucleoside inhibitors, but six isolates were naturally highly resistant to all of the nonnucleoside RT inhibitors tested. Phylogenetic analysis of the pol gene showed that these isolates formed a separate cluster within group O, and genotypic analysis revealed a tyrosine-to-cysteine substitution at residue 181. Differences in susceptibility to saquinavir and ritonavir (RTV) were not significant between group O and group M isolates, although the 50% inhibitory concentration of RTV for group O isolates was higher than that for the HIV-1 subtype B strains. The study of HIV-1 group O susceptibility to antiretroviral drugs revealed that the viruses tested had specific phenotypic characteristics contrasting with the group M phenotypic expression.

Amino Acid Sequence↗

Interstitial cells of Cajal in human colon and in Hirschsprung's disease.

BACKGROUND & AIMS: Subpopulations of interstitial cells of Cajal are regarded as the source of spontaneous slow waves of the gut musculature (pacemaker cells). Their ontogeny remains unclear, but a role of the tyrosine kinase receptor c-kit in their development has recently been recognized. This study examined the interstitial cells in the human colon and in Hirschsprung's disease (aganglionosis). METHODS: The distribution of the c-kit receptor was studied using specific antibodies in 5 normal patients, 10 patients with Hirschsprung's disease, and 3 patients with diversion loop enterostomies. c-kit immunohistochemistry was also combined with reduced nicotinamide adenine dinucleotide phosphate diaphorase histochemistry or with c-kit ligand (stem cell factor) immunohistochemistry. Transmission electron microscopy was performed in 1 patient with Hirschsprung's disease. RESULTS: c-kit immunoreactivity labeled a network of interstitial cells at the outer edge of the submucosa, in the muscular layers, and around the myenteric plexus. In aganglionic segments, interstitial cells were scarce and its network appeared disrupted. Interstitial cells of Cajal were identified in aganglionic regions by electron microscopy. Interstitial cells of Cajal are identifiable in newborns and exhibit similar distribution in diversion loops independent of contact with luminal nutrients. CONCLUSIONS: Our morphological data may explain the abnormal spontaneous electrical activity in aganglionic segments of Hirschsprung's disease and may give new insight into the ontogeny of interstitial cells.

Child, Preschool↗

Lack of screening test sensitivity during HIV-1 non-subtype B seroconversions.

OBJECTIVE: To evaluate the serological consequences of HIV-1 group M diversity we studied the ability of screening tests to detect anti-HIV antibodies in early seroconverters infected by different HIV subtypes. SETTING: Virology Department, Bichat-Claude Bernard Hospital, Paris, France. DESIGN AND METHODS: Symptomatic patients with serial samples and with infective strains characterized by heteroduplex mobility assay. In each case, two sera were selected. The first (pre-seroconversion sample) was the last p24 antigen-positive/Western blot-non-reactive sample. The second (seroconversion sample) was the first Western blot-reactive sample. One second-generation enzyme immunoassay (EIA; Abbott) based on anti-human immunoglobulin (Ig) G-conjugate and three third generation EIA (Abbott; Enzygnost; Genscreen) based on the double antigen sandwich principle, detecting IgM and IgG, were used. RESULTS: Ten patients had subtype B strains and nine had non-B strains (seven were A, one E and one G). The Abbott third-generation test was more sensitive than the second generation test for pre-seroconversion subtype B samples (nine versus four out of 10; P < 0.05), but not for non-B subtypes; only two of the nine non-B sera tested were positive by both EIA. Positivity rates and optical densities differed (P < 0.05) between B and non-B subtypes in all third-generation EIA. There was no significant difference between the subtype B and non-B groups with regard to the interval between the pre-seroconversion sample and the seroconversion sample (subtype B, 6.7 +/- 2.6 days; non-B, 5.2 +/- 1.7 days). No significant difference in positivity rates and optical densities were found between B and non-B subtypes in these seroconversion samples. CONCLUSION: The shorter time since HIV infection required for sera to become reactive in third-generation EIA screening tests is due to better sensitivity for subtype B strains only. These results stress the importance of strict donor selection, the need to test screening kits against large panels of all subtypes, and the place of p24 antigen testing in closing the window of seroconversion.

Antibodies, Viral↗

Multicenter comparison of three commercial methods for quantification of human immunodeficiency virus type 1 RNA in plasma.

Three procedures for the quantification of human immunodeficiency virus type 1 (HIV-1) RNA from plasma were compared at three laboratories. The comparison involved the Quantiplex branched DNA assay (version 1.0) by Chiron Diagnostics, the NASBA-QT assay by Organon Teknika, and the Amplicor Monitor assay by Roche Molecular Systems. The laboratories performed each of the three assays with the same sets of reconstructed HIV-1-infected human plasma samples, cross-sectionally collected clinical plasma samples and longitudinally collected plasma samples from patients starting zidovudine therapy. Analysis of the reconstruction panel results for interlaboratory variation demonstrated that no laboratory differences in results were detected for any of the assays. A comparison of the reproducibilities of duplicate samples analyzed by batch and in separate assay runs demonstrated that the reproducibilities of the test results were similar within one assay and appeared to be independent of the HIV-1 concentration. The best reproducibility was obtained with the Quantiplex assay, but all three assays demonstrated equal reliability, which was independent of batched or unbatched analysis of replicate samples. Differences in the absolute concentrations calculated were observed for the assays, in particular in the analysis of reconstructed samples. In all assays, similar changes in plasma HIV-1 RNA concentrations were determined for longitudinally collected clinical samples.

Biomarkers↗

[Virulence of human immunodeficiency virus].

Virulence is relative capacity of a virus, compared to other closely related viruses, to produce disease in a host. Viral strains considered as virulent have been described in HIV-1 infected patients. They are characterized in vitro by enhanced cellular host range, rapid kinetic of replication and increased capacity of syncytium induction. Some genetic modification of the V3 loop in the envelope gene have been associated with the emergence of these strains. But at AIDS diagnosis, and even at the terminal stage of AIDS, only about half of the patients harbour syncytium inducing variants. There are much evidence for continuous viral replication throughout all stages of HIV-1 infection. There is no viral latency state in the natural HIV infection. This increasing viral burden might have a pivotal role in the pathogenesis of HIV disease. HIV-2 is less pathogenic than HIV-1. The nature of the viral determinants responsible for this reduced virulence remains unknown. In the simian immunodeficiency virus model, virulent and avirulent strains have been described and the nef gene seems to have a critical role in pathogenicity.

Acquired Immunodeficiency Syndrome↗