Generic screening test for HIV infection.
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Biomedical subjects
Publications and source records attributed to François Simon.
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In a multicenter study a new automated screening assay, VIDAS HBsAg Ultra (long (L) and short (S) incubation protocol (Biomérieux, Marcy l'Etoile, France), was compared to a well established test (AxSYM HBsAg v2, Abbott Diagnostics, Wiesbaden, Germany) for the detection of hepatitis B virus (HBV) surface antigen (HBsAg). A total of 32 seroconversion panels, sera from the chronic phase of infection, dilution series of the WHO standard, S gene mutants (recombinant mutants and diluted and undiluted sera harbouring mutants with single or multiple amino acid (aa) substitutions, n = 40) and isolated anti-HBc positive samples were tested for the evaluation of sensitivity. Sera from HBsAg negative blood donors, pregnant women, hospitalized patients and potentially cross-reactive samples were investigated to determine the specificity of the new assay. The VIDAS HBsAg Ultra (L+S) had a higher sensitivity than the alternative assay for the detection of acute hepatitis B in seroconversion panels. The mean time of the diagnostic window was shortened with the VIDAS HBsAg Ultra (L) and (S) in comparison with the AxSYM HBsAg v2 by 1.06 and 0.66 days, respectively. The VIDAS HBsAg Ultra (L) did not detect one diluted sample out of six bearing the single aa G145R substitution, and two out of 12 diluted samples harbouring multiple aa substitutions. The analytical sensitivity of the assays varied from one surface mutant to another. While no false positive results were obtained with the VIDAS HBsAg Ultra (L+S) among potentially interfering samples, four false positives were detected with the AxSYM HBsAg v2. The respective values for sensitivity for the VIDAS HBsAg Ultra (L), (S) and the AxSYM HBsAg v2 were 99.07%, 97.87% and 94.14%. The specificities were 100% (VIDAS HBsAg Ultra L and S) and 99.6% (AxSYM HBsAg v2). In conclusion, the VIDAS HBsAg Ultra is highly sensitive and specific and represents an improvement for the detection of HBsAg in routine diagnostic laboratories.
Using DNA chip technology and real-time quantitative PCR, molecular profile of HBV strains infecting blood donors and patients in Dakar, Sénégal was studied. All HBsAg-positive blood donors (n = 175) and all patients who presented with chronic hepatitis B (n = 29) between 1st June 2003 and 31st July 2003 were studied. One patient, a blood donor, was coinfected by HCV, and nine patients had anti-HDV antibodies. Few persons in either group were HBeAg-positive. Viral load values were relatively low but correlated with biochemical abnormalities. Patients were infected mainly by genotype E (72%). Patients infected by genotype A (28%) tended to be younger than other patients. There was no significant difference between the blood donors and the patients with hepatitis B as regards virological markers, including viral load, when the HBV genotype was taken into account. The BCP A1762T and G1764A mutations were found in four patients and one patient, respectively; the two mutations were never found in the same patient. The W28* mutation at position 1896 of the core was detected in 19 of the 32 genotyped patients, 18 (83%) of whom had genotype E infection. ALT levels were not influenced by HBV mutations. This study shows a low frequency of clinical signs in HBsAg-positive blood donors, a relatively low level of viral replication, and a high frequency of pre-core mutants in this West African population. These results underline the importance of molecular characterization of HBV infection as specific treatments become available in this region.
An hepatitis B virus (HBV) molecular survey was conducted in five remote villages in the equatorial forest in Gabon, Central Africa. Two hundred seventy out of 311 inhabitants (86.8%) were HBV-infected or had evidence of past HBV infection. Chronic hepatitis corresponding to hepatitis B surface antigen (HBsAg) positivity was suspected in 27 (8.6%) of the HBV-infected subjects. High HBV viral loads were detected mainly in children aged 4-7 years. The pre-S/S domains were sequenced in 13 cases and 12 strains belonged to HBV-A genotype. In one case we found evidence for recombination between genotypes A and E. Phylogenetic analysis revealed that Gabonese HBV strains were distinct from HBV-A subgenotypes (A1 and A2). These new HBV strains from Gabon clustered with previously reported HBV-A3 subgenotype strains from Cameroon and Democratic Republic of Congo. The analysis of the pre-S2 domain allowed us to determine two amino acid substitutions (N/152/S and N/174/T) specific to the Central African HBV-A3 subgenotype strains and one amino acid substitution (P/155/Q) unique to these new Gabonese HBV-A3 subgenotype isolates. Two full genome sequences of two new Gabonese HBV isolates are also presented and confirm the distinctive HBV-Gab-A3 cluster.
Mandrills are the only nonhuman primate (NHP) naturally infected by two types of simian immunodeficiency virus (SIV): SIVmnd-1 and SIVmnd-2. We have already reported that the high SIVmnd-1 replication during primary infection contrasts with only transient changes in CD4+ and CD8+ cell counts. Since early virus-host interactions predict viral control and disease progression in human immunodeficiency virus-infected patients, we investigated the dynamics of SIVmnd-2 primary infection in mandrills to examine the impact on immune effectors in blood and lymph nodes (LNs). To avoid in vitro strain selection, all mandrills in this study received plasma from SIVmnd-2-infected mandrills. SIVmnd-2 plasma viremia peaked at 10(7) to 10(8) RNA copies/ml between days 7 and 10. This peak was followed in all four monkeys by a decline in virus replication, with a set point level of 10(5) to 10(6) RNA copies/ml at day 42 postinfection (p.i.). Viral DNA load in PBMC and LNs also peaked between days 7 and 10 (10(5) to 10(6) DNA copies/10(6) cells) and stabilized at 10(3) to 10(4) DNA copies/10(6) cells during the chronic phase. Anti-SIVmnd-2 antibodies were detected starting from days 28 to 32. A transitory decline of CD3+ CD4+ cells in the LNs occurred in animals with high peak VLs. CD4+ and CD8+ T-cell activation in blood and LNs was noted between days 5 and 17 p.i., surrounding the peak of viral replication. This was most significant in the LNs. Activation markers then returned to preinfection values despite continuous and active viral replication during the chronic infection. The dynamics of SIVmnd-2 infection in mandrills showed a pattern similar to that of SIVmnd-1 infection. This might be a general feature of nonpathogenic SIV natural African NHP models.
BACKGROUND: In resource-limited settings, the requirement for inexpensive, easy-to-perform viral load monitoring has increased with greater antiretroviral drug availability. OBJECTIVES: To evaluate feasibility, in Burkina Faso, of a simple assay for plasma HIV reverse transcriptase (RT) activity quantification compared to heat dissociation-boosted (HDB) p24 antigen and RNA-based quantifications in plasma samples from HIV-infected patients. METHODS: : Plasma viraemia was quantified by RT activity, HDB-p24 and RNA copies in 84 samples from 70 HIV-1 group M-infected patients (82% non-B subtype, 93% treatment naive), including serial samples from nine patients. RESULTS: RT activity detected 86% of plasma samples containing measurable RNA copies; corresponding to 0, 93 and 100% of samples with 1.7-4.0 log(10), 4.1-4.8 log(10) and 4.9-6.7 log(10) RNA copies/ml, respectively. HDB-p24 detected 77% of plasma samples containing measurable RNA copies; corresponding to 27, 80 and 86% of samples with 1.7-4.0 log(10), 4.1-4.8 log(10) and 4.9-6.7 log(10) RNA copies/ml, respectively. Measurement error based on one-way analysis of variance between RT activity and HDB-p24 values with RNA copies showed good agreement with RT activity (ME, <10%), however poorer agreement was obtained with HDB-p24 values (ME, >10%). Patient follow up showed a similar pattern of viraemia with RNA and RT activity assays. CONCLUSION: Field trials in Burkina Faso support the practical use of plasma RT activity assay as an affordable alternative for HIV viral load determination in regions where RNA detection remains difficult to perform. HDB-p24 use requires further evaluation before being considered as an alternative method in African HIV-infected patient follow up.
T cell activation levels in HIV infection are predictive of AIDS progression. We searched for the immunological correlates of protection against disease progression by studying the early stages of nonpathogenic SIV infection in African green monkeys (SIVagm). The African green monkeys (AGMs) displayed high peak viremias and a transient decline in levels of blood CD4(+) and CD8(+) T cells between days 5 and 17 after infection. A concomitant increase in levels of CD4(+)DR(+), CD8(+)DR(+), and CD8(+)CD28(-) cells was detected. After the third week, T cell activation returned to baseline levels, which suggested a protective downregulation of T cell activation. A very early (24 hours after infection) and strong induction of TGF-beta1 and FoxP3 expression was detected and correlated with increases in levels of CD4(+)CD25(+) and CD8(+)CD25(+) T cells. This was followed by a significant increase in levels of IL-10, whereas IFN-gamma gene upregulation was more transient, and levels of TNF-alpha and MIP-1alpha/beta transcripts did not increase in either blood or tissues. The profiles were significantly different during primary SIV infection in macaques (SIVmac); that is, there was a delayed increase in IL-10 levels accompanied by moderate and persistent increases in TGF-beta levels. Together, our data show that SIVagm infection is associated with an immediate antiinflammatory environment and suggest that TGF-beta may participate in the generation of Tregs, which may prevent an aberrant chronic T cell hyperactivation.
OBJECTIVE: To assess the feasibility of HIV-1 group M resistance genotyping on dried serum spots, by testing samples from previously untreated patients, patients on treatment, and patients having stopped treatment, representing a wide genetic diversity panel. METHODS: Serum samples from 62 HIV-1-infected Caucasian and African patients, with viral load values from 715 copies/ml to more than 750,000 copies/ml, were deposited on filter paper. After elution and RNA extraction, nested RT-PCR was used to amplify the protease and RT regions of the pol gene. Resistance sequencing was performed on all the protease and RT amplicons. The sequences obtained for resistance genotyping were used for subtyping by phylogenetic analysis. RESULTS: Amplification was successful in the protease region in 53/62 cases (85.5%) and in the RT region in 51/62 cases (82.3%). All samples with viral loads of at least 5 Log (17 of 62) were successfully amplified in both the RT and protease regions. Of the 29 samples with viral loads between 4 Log and 5 Log, 28 (97%) were amplified in the RT region and 25 (86%) in the protease region. The detected mutations were in keeping with the treatment status. Marked natural polymorphism was observed in the protease region, but no major consequences were deduced in terms of resistance. The results showed a broad diversity of the panel, including subtype B (n = 36) and non B or recombinant forms (n = 20). CONCLUSION: Our results show the feasibility of this dried serum spot method for monitoring resistance to antiretroviral drugs and the molecular epidemiology of HIV diversity. The simplicity of sample preparation, storage and transport potentially makes this an importance tool for individual and epidemiological monitoring throughout the world.
To better understand which factors govern the levels of viral loads in early lentiviral infections of primates, we developed a model that allows distinguishing between the influences of host and viral factors on viremia. Herein we report that two species of African green monkeys (Chlorocebus sabaeus and C. pygerythrus) infected with their respective wild-type simian immunodeficiency virus SIVagm viruses (SIVagm.sab92018 and SIVagm.ver644) consistently showed reproducible differences in viremia during primary infection but not at later stages of infection. Cross-infections of SIVagm.sab92018 and SIVagm.ver644 into, respectively, C. pygerythrus and C. sabaeus revealed that the dynamics of viral replication during primary infection were dependent on the viral strain used for the infection but not on the host. Hence, the kinetics of SIVagm.sab92018 and SIVagm.ver644 were similar in both sabaeus and vervet animals, indicating that the difference in viremia levels between the two groups during the early phase of infection was not associated with the host. Coreceptor usage for these two strains showed a larger coreceptor repertoire for SIVagm.sab92018, which is able to efficiently use CXCR4 in addition to CCR5, than for SIVagm.ver644, which showed a classical CCR5 coreceptor usage pattern. These differences could not be explained by different charges of the V3 loop for SIVagm.sab92018 and for SIVagm.ver644. In conclusion, our study showed that the extent of virus replication during the primary infection is primarily dependent on viral determinants.
HIV-2 infection is confined mostly to West Africa. Seven HIV-2 subtypes have so far been described; only HIV-2 subtypes A and B are prevalent, the others being considered self-limiting infections at the epidemiological level. The main limitation for the HIV-2 DNA proviral quantification is the lack of HIV-2 DNA standard. We designed and tested a new HIV-2 primer couple that amplifies both the HIV-2 ROD strain and HIV-1 LAV/BRU strain. These HIV-2 primers were used to quantified an HIV-2 standard comparatively to a standard widely used in proviral DNA HIV-1 quantification, i.e., the 8E5 cell line transfected by a single defective integrated provirus of HIV-1 BRU/LAV by cell. The primers and probe used to quantify HIV-2 DNA are located in a long terminal repeat (LTR) region with low variability. These primers amplify both HIV-2 subtypes A and B. The relevance of the follow-up of the infected patients by the quantification of the proviral DNA HIV-2 is currently studied.
HIV-1 group O strains are highly divergent, and are found mainly in central Africa. The clinical course of group O infection is identical to that of HIV-1 group M infection, with rapid onset of immunodeficiency. The important divergence of the HIV-1 group O strains lead to high limitations of the commercial tests. We describe here a method based on real-time polymerase chain reaction (PCR) to quantify plasma HIV-1 group O RNA. Primers amplify both HIV-1 group O and HIV-1 group M strains. Conversely, the probe is HIV-1 group O-specific. The standard used to quantify the clinical samples is an RNA solution resulting from the transcription of a plasmid including the amplified fragment of PCR. Our technique is capable of amplifying a wide range of HIV-1 group O strains belonging to the three current clades. This technique can be used to monitor HIV-1 group O viral load, which has previously been difficult.
OBJECTIVES: To evaluate a phenotype assay based on plasma reverse transcriptase (RT) to assess HIV susceptibility to nonnucleoside RT inhibitors (NNRTIs). To compare RT-based phenotype with recombinant virus assay (RVA) phenotype- and genotype-based analysis. To assess group O and HIV-2 susceptibility to NNRTIs in correlation with genotype polymorphisms. METHODS: RT activity was quantified and its susceptibility to efavirenz, nevirapine, and delavirdine measured as drug concentration resulting in 50% inhibition. RT phenotype was compared with genotype analysis. Eighteen plasma samples from 14 group M- and culture supernatants from 4 group M-, 9 group O-, and 7 HIV-2-infected patients were investigated. RT-based and RVA-based phenotypes were compared for identical plasma from 9 group M-infected patients. RESULTS: RT-based and RVA-based phenotypes were in complete agreement. RT-based phenotype- and genotype-predicted susceptibility were concordant for all but 1 group M samples. One plasma showed susceptibility to 3 NNRTIs by phenotypes, despite the presence of 101E and 106I/V residues. The HIV-2 RTs were totally resistant to the NNRTIs tested. Among HIV-1 group O, 6 were totally resistant to NNRTIs independently of the presence of the 181C mutation and 3 were susceptible to some NNRTIs. CONCLUSION: Plasma RT-based phenotype could be useful as a simple alternative for monitoring resistance to NNRTIs. This assay is suitable for highly divergent strains. It would be particularly useful for large epidemiologic survey of the natural HIV polymorphism and the potential impact in emergence of drug resistance, particularly to nevirapine, widely used to prevent mother-to-child transmission.
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BACKGROUND: The three divergent HIV-1 groups M, N and O were very probably introduced into the human population by independent cross-species transmissions of SIVcpz from the chimpanzee subspecies Pan troglodytes troglodytes in central Africa. OBJECTIVE: To characterize HIV-1 group N strains and to elucidate the group's epidemiology and relationship to HIV-1 strains O and M, and SIVcpz. METHODS: DNA amplification, sequencing and phylogenetic analyses were performed to characterize viruses from three group N-infected individuals (YBF106, YBF115 and YBF116) together with YBF30 and YBF105 previously described. RESULTS: Full-length genome sequence was determined for virus YBF106; gag, pol and env sequences were obtained for YBF116; pol (integrase) and env (gp41) fragments were obtained for YBF115. The gag, pol, 5'-vif and nef sequences were phylogenetically more closely related to HIV-1 M while 3'-vif, vpr, tat, vpu and env clustered with SIVcpz from P. t. troglodytes. Sequence analysis revealed no mutations potentially responsible for drug resistance. CONCLUSIONS: The finding that all group N viruses displayed the same recombinant structure and were monophyletic indicates that a single transfer event of SIVcpz to humans can account for the origin of this group. Despite the pathogenic outcome of the known group N infections, the extremely low prevalence of this divergent HIV-1 suggests that this group is not an emerging threat to human health at the present time. However, continuous monitoring of HIV-1 diversity will be important to survey the potential of unusual HIV infections, such as group N, to contribute to the HIV/AIDS pandemic.
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We report the complete genome sequence of a highly divergent strain of human immunodeficiency virus type 2 (HIV-2), 96FR12034, identified in France from a patient of West African origin. This lineage, H, represents only the third definitive instance of a monkey-to-human transfer of SIVsm that has given rise to pathogenic HIV-2. As the different "subtypes" of HIV-2 are analogous to the different groups of HIV-1 we propose that HIV-2 subtypes henceforth by renamed groups in agreement with the HIV Nomenclature Committee. The single-strain lineages C to G and the 96FR12034 lineage identified here should be considered only as putative groups until related strains are identified that confirm circulation of these viruses in the human population.
We studied the feasibility of genotyping human immunodeficiency virus (HIV) type 2 groups A and B by real-time PCR. Two group-specific PCRs were developed. Real-time genotyping of 22 samples of genotype A, 10 samples of genotype B, and the isolate of new group H were compared to genotyping by sequencing and phylogeny. The group-specific PCRs specifically identified 84.3% of group A or B samples; isolate H was not detected. This method allowed rapid and specific discrimination between HIV-2 groups A and B and could be a useful tool for molecular epidemiological studies.
We evaluated a two-rapid-test serial algorithm using the Determine and Genie II rapid assays, performed on-site in four peripheral laboratories during the French Agence Nationale de Recherches sur le SIDA (ANRS) 1201/1202 Ditrame Plus cohort developed for prevention of mother-to-child transmission of human immunodeficiency virus (HIV) infection in Côte d'Ivoire. A total of 1,039 specimens were retested by two commercial enzyme-linked immunosorbent assays (ELISAs). The following specimens were tested: 315 specimens found on-site to be infected with HIV type 1 (HIV-1), 8 specimens found on-site to be infected with HIV-2, 71 specimens found on-site to be infected with both HIV-1 and HIV-2, 40 specimens found on-site to have indeterminate results for HIV infection, and 605 specimens taken during a quality assurance program. For HIV discrimination, 99 positive serum samples (20 with HIV-1, 8 with HIV-2, and 71 with HIV-1 and HIV-2 on the basis of our rapid test algorithm) were retested by the Peptilav test, Western blot (WB) assays, and homemade monospecific ELISAs. Real-time DNA PCRs for the detection of HIV-1 and HIV-2 were performed with peripheral blood mononuclear cells from 35 women diagnosed on-site with HIV-1 and HIV-2 infections. Compared to the results of the ELISAs, the sensitivities of the Determine and Genie II assays were 100% (95% lower limit [95% LL], 99.1%) and 99.5% (95% confidence interval [95% CI], 98.2 to 99.9%), respectively. The specificities were 98.4% (95% CI, 96.9 to 99.3%) and 100% (95% LL, 99.3%), respectively. All serological assays gave concordant results for infections with single types. By contrast, for samples found to be infected with dual HIV types by the Genie II assay, dual reactivity was detected for only 37 samples (52.1%) by WB assays, 34 samples (47.9%) by the Peptilav assay, and 23 samples (32.4%) by the monospecific ELISAs. For specimens with dual reactivity by the Genie II assay, the rates of concordance between the real-time PCR assays and the serological assays were 25.7% for the Genie II assay, 82.9% for the Peptilav assay, 74.3% for WB assays, and 80% for the homemade ELISAs. Our algorithm provided high degrees of sensitivity and specificity comparable to those of ELISAs. Even if they are rare, women identified by the Genie II assay as being infected with HIV-1 and HIV-2 mostly appeared to be infected only with HIV-2.