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Rapid detection of the HIV type 1 reverse transcriptase codon T215Y by reverse transcription-polymerase chain reaction with fluorogenic probes.

Early detection of viral mutations, particularly those mutations associated with cross-resistance to antiretroviral drugs, is critical both for understanding the mechanism of drug resistance and for the clinical management of patients infected with HIV-1. One of the frequently observed mutations in the HIV-1 reverse transcriptase (RT)-coding region is ACC --> TAC at codon 215, resulting in a change of wild-type threonine (T) to tyrosine (Y); this mutation has been associated with decreased phenotypic susceptibility to zidovudine (ZDV). We describe a technique for the detection of the T215Y mutation using reverse transcription-polymerase chain reaction (RT-PCR) amplification of viral sequences and a 5' nuclease assay requiring fluorogenic probes. In addition to detecting the presence of the ACC --> TAC mutation at codon 215, this assay provides an increased ability to detect low levels of mutant species in a mixed population, relative to conventional sequencing. Further advantages of this technique include the rapid and high-throughput nature of the assay, the accuracy of the assay relative to conventional DNA sequencing, and the convenience of combining RT-PCR virus amplification with the allelic discrimination assay, without the need for purification of PCR products.

Anti-HIV Agents↗

Rare mutations at codon 103 of HIV-1 reverse transcriptase can confer resistance to non-nucleoside reverse transcriptase inhibitors.

BACKGROUND: The K103N mutation in HIV-1 reverse transcriptase (RT) confers high-level resistance to current non-nucleoside reverse transcriptase inhibitors (NNRTI). The prevalence and resistance profile of HIV-1 with other substitutions at RT codon 103 is less well documented. METHODS: K103 substitutions among over 70,000 clinical samples submitted for routine antiretroviral resistance testing at two independent centres were examined. Phenotypic resistance profiles of isolates harboring rare K103 variants in the absence of known NNRTI-associated resistance mutations were retrieved from Virco's correlative genotype/phenotype database. Genotyped samples with known treatment histories were retrieved from the British Columbia Centre for Excellence in HIV/AIDS database. Site-directed mutants containing K103 variants were constructed and phenotyped. RESULTS: K103N, R and S were observed in 29, 1.8, and 0.9% of Virco isolates and in 16, 1.5 and 0.4% of British Columbia isolates. K103T/Q/H substitutions were observed only rarely (<0.2%). The prevalence of unusual codon 103 substitutions remained stable over 5 years, except K103S, which increased over fourfold in both datasets. K103R/Q-containing clinical isolates remained phenotypically susceptible to NNRTI, whereas K103S/T/H-containing isolates showed over 10-fold decreased NNRTI susceptibility. Among patients with a known treatment history, K103S/T/H were observed primarily in individuals failing NNRTI-containing regimens. Site-directed mutants confirmed decreased susceptibility to NNRTI in K103S/T/H-containing recombinants. CONCLUSION: Variants at HIV RT codon 103 other than K103N are observed relatively rarely in clinical isolates, but K103 S, T and H confer decreased susceptibility to NNRTI. These data are relevant for interpretive genotype algorithms and in the design of assays specific to RT codon 103 mutations.

Amino Acid Substitution↗

A new insertion in the HIV-1 reverse transcriptase gene inducing major resistance to non-nucleoside reverse transcriptase inhibitors.

We identified an HIV-1 isolate with a 3 base pairs insertion in the 100-105 region of the reverse transcriptase gene (RT) along with a G190E and a V75A mutation. Virus carrying the insertion alone or in association with G190A was not infectious. The association of G190E and the 100-105 insertion displayed a high level of resistance to non-nucleoside reverse transcriptase inhibitors; the addition of the insertion to G190E may increase the activity of RT.

DNA Transposable Elements↗

Triple nucleoside reverse transcriptase inhibitor- vs. nonnucleoside reverse transcriptase inhibitor-containing regimens as first-line therapy: efficacy and durability in a prospective cohort of French HIV-infected patients.

OBJECTIVE: Based on the short-term results of the AIDS Clinical Trials Group (ACTG) A5095 trial, zidovudine (ZDV)/lamivudine (3TC)/abacavir (ABC) is no longer recommended as a first-line antiretroviral regimen. Data on the efficacy of this triple nucleoside reverse transcriptase inhibitor (NRTI) combination compared with the gold-standard nonnucleoside reverse transcriptase inhibitor (NNRTI) regimen could provide important information. METHODS: Patients were selected from three prospective cohorts of patients who received first-line therapy with ZDV/3TC plus an NNRTI or ABC, started after January 1998. Immunovirological changes and the proportion of treatment discontinuations were compared between groups. RESULTS: Of the 380 patients, 190 started on ABC [the triple-NRTI group (3N)] and 190 on NNRTI. At baseline, there was no statistical difference between the NNRTI and 3N groups for age (mean=38 years), sex (66% male) or CD4 cell count (mean=305 cells/muL). Mean baseline plasma HIV-1 viral load (pVL) was higher in the 3N group (4.6 vs. 4.3 log10 HIV-1 RNA copies/mL: P<0.01). Lower and higher estimates of median pVL decrease at month 24 were 2.05 and 4.76 log10 copies/mL in the 3N group, and 1.73 and 4.31 log10 copies/mL in the NNRTI group (not significant). CD4 cell count evolution did not differ between groups. Treatment discontinuation occurred in 45% vs. 44% of patients in the NNRTI and 3N groups, respectively, after median durations of 9 and 4 months, respectively (P=0.02). CONCLUSIONS: In this prospective cohort, 3N and NNRTI regimens as first-line therapy produced similar immunovirological responses.

Adult↗

ATP-dependent removal of nucleoside reverse transcriptase inhibitors by human immunodeficiency virus type 1 reverse transcriptase.

Removal of nucleoside chain terminator inhibitors mediated by human immunodeficiency virus (HIV) reverse transcriptase (RT) using ATP as an acceptor molecule has been proposed as a novel mechanism of HIV resistance. Recombinant wild-type and mutant HIV type 1 (HIV-1) RT enzymes with thymidine analog resistance mutations D67N, K70R, and T215Y were analyzed for their ability to remove eight nucleoside reverse transcriptase inhibitors in the presence of physiological concentrations of ATP. The order for the rate of removal of the eight inhibitors by the mutant RT enzyme was zidovudine (AZT) > stavudine (d4T) >> zalcitabine (ddC) > abacavir > amdoxovir (DAPD) > lamivudine (3TC) > didanosine (ddI) > tenofovir. Thymidine analogs AZT and d4T were the most significantly removed by the mutant enzyme, suggesting that removal of these inhibitors by the ATP-dependent removal mechanism contributes to the AZT and d4T resistance observed in patients with HIV expressing thymidine analog resistance mutations. ATP-dependent removal of tenofovir was 22- to 35-fold less efficient than removal of d4T and AZT, respectively. The addition of ATP and the next complementary deoxynucleoside triphosphate caused a reduction of ATP-mediated removal of d4T, ddC, and DAPD, while AZT and abacavir removal was unaffected. The reduction of d4T, ddC, and DAPD removal in the presence of the deoxynucleoside triphosphate could explain the minor changes in susceptibility to these drugs observed in conventional in vitro phenotypic assays using cells that have higher deoxynucleoside triphosphate pools. The minimal removal of abacavir, ddC, DAPD, 3TC, ddI, and tenofovir is consistent with the minor changes in susceptibility to these drugs observed for HIV mutants with thymidine analog resistance mutations.

Adenine↗

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↗

Sensitive detection and quantification of particle-associated reverse transcriptase in plasma of HIV-1-infected individuals by the product-enhanced reverse transcriptase (PERT) assay.

Tests for the enzyme reverse transcriptase (RT) should permit the detection of all infectious retroviruses, provided that these are present as extracellular particles. The capability of a new procedure, named product-enhanced reverse transcriptase (PERT) assay, to detect HIV-1 in fresh human plasma was compared with that of the polymerase chain reaction (PCR) for viral RNA. Both procedures had identical dilution endpoints corresponding to 10(2) particles/ml. All 30 samples from HIV-1 positive patients at different stages contained RT activity whose level was significantly correlated with viral RNA and corresponded to 553-417,000 particles/ml. In HIV-1 low titer performance and seroconversion panels, the PERT assay detected more positives than PCR for viral RNA. Three of 160 blood donors exhibited elevated RT activity, indicating a prevalence of 1.9% (95% CI 0.4-5.3%). One positive donor, with laboratory parameters suggesting a mild chronic liver impairment, exhibited RT activity comparable to that of HIV positives, but was consistently negative by various tests for hepatitis viruses, cytomegalovirus, the HIVs and HTLVs. The results suggest that the PERT assay is more sensitive for detection of HIV-1 contamination of plasma than RNA PCR. However, it is not affected adversely by viral sequence variability, and may therefore, also detect HIV-1 subtype O, and additional retroviruses as yet undetectable by PCR.

Base Sequence↗

Analysis of human telomerase reverse transcriptase mRNA (hTERT) expression in myxoid liposarcomas using LightCycler real-time quantitative reverse transcriptase-polymerase chain reaction.

We describe a convenient, nonradioactive reverse transcription--polymerase chain reaktion (RT-PCR) method for the rapid and accurate quantitative detection of the human telomerase catalytic subunit human telomerase reverse transcriptase (hTERT) mRNA. The LightCycler TeloTAGGG hTERT Quantification Kit (Roche Molecular Biochemicals) was designed to be used for the highly sensitive and quantitative detection of hTERT mRNA relative to the house-keeping gene porphobilinogen deaminase (PBGD). As a tumor progression model, we investigated 26 myxoid liposarcomas (11 pure myxoid grade I, 15 myxoid/round cell grade II/III) for the hTERT expression level and compared the results of the new method with former measurements performed in silver-stained polyacrylamide gels. Both methods revealed similar results, with real-time RT-PCR being the more accurate quantification technique, which also saves time and material. Elevated hTERT expression (cut-off ratio x 100 at 1.3) was an indicator of round cell components and hence for tumor progression in myxoid liposarcoma. The new method is capable of differentiating between pure myxoid and myxoid/round cell liposarcomas for hTERT-expression more accurately.

Computer Systems↗

Chemiluminescent enzyme-linked immunoassay for reverse transcriptase, illustrated by detection of HIV reverse transcriptase.

A chemiluminescent assay for reverse transcriptase (RT) of the human immunodeficiency virus 1 was developed using biotin-labeled oligodeoxythymidylic acid (biotin oligo-dT) and digoxigenin-deoxyuridine triphosphate instead of tritiated thymidine triphosphate. After the RT reaction, the newly polymerized strand from biotin oligo-dT contained digoxigenin labels. This nucleotide was bound to a streptavidin-coated microtiter plate by the reaction to biotin. At the detection step, an alkaline phosphatase-conjugated antibody to digoxigenin was added, followed by the reaction of a chemiluminescent substrate for this enzyme. This method shows very close correlation with the isotopic assay using purified avian myeloblastosis virus reverse transcriptase (RT). This assay was also compared with the isotopic RT assay using lymphocytes infected in vitro with HTLV-IIIB and again demonstrated a close correlation. The total assay time after the RT reaction step was less than 100 min.

Alkaline Phosphatase↗

Mutation L210W of HIV-1 reverse transcriptase in patients receiving combination therapy. Incidence, association with other mutations, and effects on the structure of mutated reverse transcriptase.

Mutation L210W of HIV-1 reverse transcriptase (RT) is one of the six main mutations that confer in vivo resistance to zidovudine. Surprisingly, this mutation has received scant appraisal and its contribution to the genotypic resistance to nucleoside analogs is not well understood. The aim of this study was: (1) to study the frequency of mutation L210W in a large collection of HIV-1 sequences (2,049 samples, including 395 DNA and 1,654 RNA sequences) from patients receiving combination therapy, and (2) to analyze its association with the other mutations that confer resistance to zidovudine. A mutation at codon 210 (mainly L210W) was found in 647 (32%) of the 2,049 sequences analyzed. Only 43 (<7%) of these 647 genomes were also mutated at codon 70 (p < 10(-5)). In contrast, 98% of these 647 sequences were also mutated at codon 215 (essentially T215Y/F), and 94% at codon 41 (mainly M41L). These data showing a close association between L210W, T215Y/F, and M41L, and a mutual exclusion between K70R and L210W, were confirmed by analyzing the sequences stored in the HIV-1 sequences available through the Stanford HIV RT and Protease Database. Follow-up studies demonstrated that L210W appeared always after T215Y/F. This observation is consistent with crystallographic studies which suggested that the aromatic side chain of Trp 210 could stabilize the interaction of Phe/Tyr215 with the dNTP-binding pocket. This molecular cross-talk between amino acid chains occurs nearby the conserved Asp113 residue. Since the lateral chain of Arg70 may also interact with Asp113, this is likely to create a sterical hindrance around this residue. Thus, the R-->K reversion of codon 70 may represent a compensatory mechanism allowing a functional rearrangement of the dNTP-binding pocket in the mutated RT.

Amino Acid Sequence↗

Simultaneous determination of the HIV nucleoside analogue reverse transcriptase inhibitors lamivudine, didanosine, stavudine, zidovudine and abacavir in human plasma by reversed phase high performance liquid chromatography.

A reversed phase high performance liquid chromatography method was developed for the simultaneous quantitative determination of the nucleoside reverse transcriptase inhibitors (NRTIs) lamivudine, didanosine, stavudine, zidovudine and abacavir in plasma. The method involved solid-phase extraction with Oasis MAX cartridges from plasma, followed by high performance liquid chromatography with a SymmetryShield RP 18 column and ultraviolet detection set at a wavelength of 260 nm. The assay was validated over the concentration range of 0.015-5 mg/l for all five NRTIs. The average accuracies for the assay were 92-102%, inter- and intra-day coefficients of variation (CV) were <2.5% and extraction recoveries were higher than 97%. This method proved to be simple, accurate and precise, and is currently in use in our laboratory for the quantitative analysis of NRTIs in plasma.

Anti-HIV Agents↗

Rapid quantification of delavirdine, a novel non-nucleoside reverse transcriptase inhibitor, in human plasma using isocratic reversed-phase high-performance liquid chromatography with fluorescence detection.

Delavirdine is a novel non-nucleoside reverse transcriptase inhibitor for the treatment of HIV-1-infected patients. A simple and rapid high-performance liquid chromatographic method for the quantification of delavirdine in human plasma suitable for drug monitoring in patients is described. Sample pretreatment consists of protein precipitation with acetonitrile and subsequent evaporation of the extract to concentrate the analyte. The drug is separated from endogenous compounds by isocratic reversed-phase, high-performance liquid chromatography coupled with fluorescence detection. The optimal excitation and emission wavelengths are 300 and 425 nm, respectively. The method has been validated over the range of 50-50 000 ng/ml using only 200 microl of plasma samples. The assay is linear over this concentration range as indicated by the F-test for lack of fit. Within- and between-day precisions are less than 4.4% for all quality control samples. The lower limit of quanititation is 50 ng/ml. Recovery of delavirdine from human plasma is 93.8%. Delavirdine is stable under various conditions, for example 1 h at 60 degrees C and one week at 4 degrees C. This validated assay is suited for use in pharmacokinetic studies with delavirdine and can readily be implemented in the setting of a hospital laboratory for the monitoring of delavirdine concentrations.

Anti-HIV Agents↗

Quantitative determination of efavirenz (DMP 266), a novel non-nucleoside reverse transcriptase inhibitor, in human plasma using isocratic reversed-phase high-performance liquid chromatography with ultraviolet detection.

Efavirenz is a novel non-nucleoside reverse transcriptase inhibitor for the treatment of HIV-1-infected individuals. A simple and rapid high-performance liquid chromatographic method for the quantification of efavirenz in human plasma suitable for therapeutic drug monitoring in plasma is described. Sample pretreatment consists of protein precipitation with acetonitrile and subsequent evaporation of the extract to concentrate the analyte. The drug is separated from endogenous compounds by isocratic reversed-phase high-performance liquid chromatography with ultraviolet detection at 246 nm. The method has been validated over the range of 10 to 10,000 ng/ml using a volume of 250 microl of plasma. The assay is linear over this concentration range as indicated by the F-test for lack of fit. Within- and between-day precisions are less than 4.3% for all quality control samples. The lower limit of quantitation is 10 ng/ml and the recovery of efavirenz from human plasma is 106.4% (+/- 1.8%). Frequently co-administered drugs did not interfere with the described methodology. Efavirenz is stable under various relevant storage conditions, for example when stored for 24 h at room temperature. This validated assay is suited for use in pharmacokinetic studies with efavirenz and can readily be implemented in the setting of a hospital laboratory for the monitoring of efavirenz concentrations.

Acetonitriles↗

Quantitative determination of abacavir (1592U89), a novel nucleoside reverse transcriptase inhibitor, in human plasma using isocratic reversed-phase high-performance liquid chromatography with ultraviolet detection.

Abacavir is a novel nucleoside reverse transcriptase inhibitor for the treatment of HIV-1 infection. A simple and rapid high-performance liquid chromatographic method for the quantification of abacavir in human plasma suitable for pharmacokinetic research purposes is described. Sample pretreatment consists of protein precipitation with perchloric acid. The supernatant is injected directly into the chromatographic system after centrifugation. The drug is separated from endogenous compounds by isocratic reversed-phase high-performance liquid chromatography with ultraviolet detection at 285 nm. The method has been validated over the range of 20-2000 ng/ml using a volume of 300 microl of plasma. The assay is linear over this concentration range as indicated by the F-test for lack-of-fit. Within- and between-day precisions are less than 7.5% for all quality control samples. The lower limit of quantitation is 20 ng/ml and the recovery of abacavir is 88.1% (+/-1.3%). Frequently coadministered drugs did not interfere with the described methodology. Abacavir is stable in human plasma under various relevant storage conditions, for example when stored for 51 days at -20 degrees C. This validated assay is suited for use in pharmacokinetic studies with abacavir in human plasma and can readily be implemented in the setting of a hospital laboratory for the monitoring of abacavir concentrations.

Acquired Immunodeficiency Syndrome↗

Detection of telomerase status by semiquantitative and in situ assays, and by real-time reverse transcription-polymerase chain reaction (telomerase reverse transcriptase) assay in bladder carcinomas.

OBJECTIVE: To investigate whether telomerase activity could be used as a diagnostic and/or prognostic marker of bladder carcinoma, by assessing telomerase activity using semiquantitative and in situ methods, and quantifying telomerase reverse transcriptase (hTERT) mRNA expression in a series of bladder carcinomas. MATERIAL AND METHODS: Telomerase activity was detected by the telomeric repeat amplification protocol (TRAP) assay using a telomerase polymerase chain reaction (PCR) enzyme-linked immunosorbent assay (ELISA) kit on a series of 29 bladder carcinomas and on three normal bladder samples. hTERT mRNA levels were quantified using real-time quantitative reverse transcription (RT)-PCR. For the in situ detection of telomerase activity, the same telomerase PCR ELISA kit was used and applied to frozen-tissue sections only for discordant cases between telomerase activity and hTERT mRNA status. RESULTS: Telomerase activity was positive in 15 of the 29 bladder carcinomas (52%) and negative for the three normal bladder samples. hTERT was detected and quantified in all tumour samples, with major differences in hTERT values. None of the three normal bladder samples had quantifiable hTERT mRNA, giving complete sensitivity and specificity for the method in diagnosing bladder carcinoma. Comparing the results of RT-PCR and TRAP assay showed a significant association between the enzyme activity and levels of hTERT mRNA expression, with only five discordant cases, most of them being TRAP-negative and hTERT-positive. Among these cases the in situ results of telomerase activity were concordant with hTERT mRNA levels by RT-PCR and not with TRAP assay results, as nuclear fluorescence of malignant epithelial cells. The semiquantitative evaluation of positive cell numbers showed a heterogeneity of telomerase activity within the tumour tissue. There was a significant correlation between RT-PCR and histopathological variables (grade and stage), and a significant correlation between TRAP assay results and histopathological grade. CONCLUSION: Detecting hTERT mRNA by RT-PCR seems to be a promising method, with a much better sensitivity than the TRAP assay in diagnosing bladder carcinomas, and a better correlation with histopathological variables. False-negative cases on the TRAP assay are explained by the heterogeneity of telomerase activity within tumour cells. Thus evaluating hTERT gene expression levels could be used as a marker of malignant progression, useful in the early diagnosis and follow-up of bladder carcinomas.

DNA-Binding Proteins↗

Contacts between reverse transcriptase and the primer strand govern the transition from initiation to elongation of HIV-1 reverse transcription.

HIV-1 reverse transcriptase (RT) utilizes RNA oligomers to prime DNA synthesis. The initiation of reverse transcription requires specific interactions between HIV-1 RNA, primer tRNA3Lys, and RT. We have previously shown that extension of an oligodeoxyribonucleotide, a situation that mimicks elongation, is unspecific and differs from initiation by the polymerization rate and dissociation rate of RT from the primer-template complex. Here, we used replication intermediates to analyze the transition from the initiation to the elongation phases. We found that the 2'-hydroxyl group at the 3' end of tRNA had limited effects on the polymerization and dissociation rate constants. Instead, the polymerization rate increased 3400-fold between addition of the sixth and seventh nucleotide to tRNA3Lys. The same increase in the polymerization rate was observed when an oligoribonucleotide, but not an oligodeoxyribonucleotide, was used as a primer. In parallel, the dissociation rate of RT from the primer-template complex decreased 30-fold between addition of the 17th and 19th nucleotide to tRNA3Lys. The polymerization and dissociation rates are most likely governed by interactions of the primer strand with helix alphaH in the p66 thumb subdomain and the RNase H domain of RT, respectively.

Animals↗

Reverse transcriptase mutations 118I, 208Y, and 215Y cause HIV-1 hypersusceptibility to non-nucleoside reverse transcriptase inhibitors.

BACKGROUND: HIV-1 hypersusceptibility to non-nucleoside reverse transcriptase inhibitors (NNRTI) improves the response to NNRTI-containing regimens. The genetic basis for NNRTI hypersusceptibility was partly defined in our earlier analyses of a paired genotype-phenotype dataset of viral isolates from treatment-experienced patients, in which we identified reverse transcriptase mutations V118I, H208Y, and T215Y as being strongly associated with NNRTI hypersusceptibility. OBJECTIVES: We evaluated the role of these mutations in NNRTI hypersusceptibility by site-directed mutagenesis and phenotypic analysis of HIV-1 recombinants. METHODS: Drug susceptibility and replication capacity were determined in single cycle assays. Hypersusceptibility was defined by a statistically significant (P < 0.01; Student's t-test) mean fold-change in 50% inhibitory concentration (IC50) of less than 0.4. RESULTS: The single mutations V118I, H208Y, and T215Y did not show hypersusceptibility to efavirenz with mean fold-change of 0.58, 0.55, and 0.70, respectively (P < 0.01 and P = 0.12). The H208Y/T215Y and V118I/H208Y/T215Y mutants showed marked hypersusceptibility to efavirenz, having mean fold-change values of 0.27 and 0.20, respectively (P < 0.001). In addition, H208Y/T215Y, V118I/T215Y, and V118I/H208Y/T215Y were hypersusceptible to delavirdine and nevirapine. The V118I/T215Y mutant was not replication impaired; whereas H208Y/T215Y and V118I/H208Y/T215Y had significantly (P < 0.01) reduced replication capacities of 40 and 35% of wild-type, respectively. CONCLUSION: Different combinations of V118I, H208Y, and T215Y produce NNRTI hypersusceptibility. The V118I/T215Y mutant is hypersusceptible to delavirdine and nevirapine without reduced replication capacity, whereas the H208Y/T215Y and V118I/H208Y/T215Y mutants are hypersusceptible to all NNRTI and show impaired replication. These findings suggest that more than one mechanism is involved in NNRTI hypersusceptibility.

Alkynes↗

Simple and simultaneous determination of the hiv-protease inhibitors amprenavir, atazanavir, indinavir, lopinavir, nelfinavir, ritonavir and saquinavir plus M8 nelfinavir metabolite and the nonnucleoside reverse transcriptase inhibitors efavirenz and nevirapine in human plasma by reversed-phase liquid chromatography.

Several studies suggest that therapeutic drug monitoring of protease inhibitors and nonnucleoside reverse transcriptase inhibitors may contribute to the clinical outcome of HIV-infected patients. Because of the growing number of antiretroviral drugs and of drug combinations than can be administered to these patients, an accurate high-performance liquid chromatographic (HPLC) method allowing the simultaneous determination of these drugs may be useful. To date, the authors present the first simultaneous HPLC determination of the new protease inhibitor atazanavir with all the others currently in use (M8 nelfinavir metabolite included) and the 2 widely used nonnucleoside reverse transcriptase inhibitors efavirenz and nevirapine. This simple HPLC method allows the analysis all these drugs at a single ultraviolet wavelength following a 1-step liquid-liquid extraction procedure. A 500-muL plasma sample was spiked with internal standard and subjected to liquid-liquid extraction using by diethyl ether at pH 10. HPLC was performed using a Symmetry Shield RP18 and gradient elution. All the drugs of interest and internal standard were detected with ultraviolet detection at 210 nm. Calibration curves were linear in the range 50-10,000 ng/mL. The observed concentrations of the quality controls at plasma concentrations ranging from 50 to 5000 ng/mL for these drugs showed that the overall accuracy varied from 92% to 104% and 92% to 106% for intraday and day-to-day analysis, respectively. No metabolites of the assayed compounds or other drugs commonly coadministered to HIV-positive patients were found to coelute with the drugs of interest or with the internal standard. This assay was developed for the purpose of therapeutic monitoring (TDM) in HIV-infected patients.

Alkynes↗