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Biomedical subjects

Michael P Busch

Publications and source records attributed to Michael P Busch.

At least 19 recordsLinked to original sources

Persistence of primary drug resistance among recently HIV-1 infected adults.

OBJECTIVES: Primary, or transmitted, drug resistance is common among treatment naive patients recently infected with HIV-1, and impairs response to anti-retroviral therapy. We previously observed that patients with secondary resistance (developed in response to anti-retroviral treatment) who chose to stop an anti-retroviral regimen experience rapid overgrowth of drug resistant viruses by wild-type virus of higher pol replication capacity. We sought to determine if primary drug resistance would be lost at a rapid rate, and viral pol replication capacity would increase, in the absence of treatment. METHODS: We tracked drug resistance phenotype, genotype, viral pol replication capacity (single cycle recombinant assay incorporating a segment of the patient pol gene [pol RC]), plasma HIV-1 RNA, and CD4 T cell counts in the absence of treatment among patients in early HIV-1 infection. RESULTS: Six of 22 patients had evidence of primary drug resistance to at least one class of drug; three resistant to protease inhibitors, three resistant to non-nucleoside reverse transcriptase inhibitors, and four resistant to nucleoside reverse transcriptase inhibitors. All six patients maintained evidence of drug resistance for the period of observation. Among patients with baseline primary drug resistance pol RC did not increase over time. CONCLUSION: The selection environment of early infection is determined by immune pressure, and stochastic events, not viral pol replication capacity. In contrast to secondary resistant infections that are rapidly overgrown when therapy is stopped, primary drug resistance persists over time. Surveillance and clinical detection of primary resistance is feasible in the first year of infection.

Adult↗

Detection of HIV-1 and HCV infections among antibody-negative blood donors by nucleic acid-amplification testing.

BACKGROUND: Testing of blood donors for human immunodeficiency virus type 1 (HIV-1) and hepatitis C virus (HCV) RNA by means of nucleic acid amplification was introduced in the United States as an investigational screening test in mid-1999 to identify donations made during the window period before seroconversion. METHODS: We analyzed all antibody-nonreactive donations that were confirmed to be positive for HIV-1 and HCV RNA on nucleic acid-amplification testing of "minipools" (pools of 16 to 24 donations) by the main blood-collection programs in the United States during the first three years of nucleic acid screening. RESULTS: Among 37,164,054 units screened, 12 were confirmed to be positive for HIV-1 RNA--or 1 in 3.1 million donations--only 2 of which were detected by HIV-1 p24 antigen testing. For HCV, of 39,721,404 units screened, 170 were confirmed to be positive for HCV RNA, or 1 in 230,000 donations (or 1 in 270,000 on the basis of 139 donations confirmed to be positive for HCV RNA with the use of a more sensitive HCV-antibody test). The respective rates of positive HCV and HIV-1 nucleic acid-amplification tests were 3.3 and 4.1 times as high among first-time donors as among donors who gave blood repeatedly. Follow-up studies of 67 HCV RNA-positive donors demonstrated that seroconversion occurred a median of 35 days after the index donation, followed by a low rate of resolution of viremia; three cases of long-term immunologically silent HCV infection were documented. CONCLUSIONS: Minipool nucleic acid-amplification testing has helped prevent the transmission of approximately 5 HIV-1 infections and 56 HCV infections annually and has reduced the residual risk of transfusion-transmitted HIV-1 and HCV to approximately 1 in 2 million blood units.

Alanine Transaminase↗

HIV RNA testing in the context of nonoccupational postexposure prophylaxis.

BACKGROUND: The specificity and positive predictive value of human immunodeficiency virus (HIV) RNA assays have not been evaluated in the setting of postexposure prophylaxis (PEP). METHODS: Plasma from subjects enrolled in a nonoccupational PEP study was tested with 2 branched-chain DNA (bDNA) assays, 2 polymerase chain reaction (PCR) assays, and a transcription-mediated amplification (TMA) assay. Assay specificity and positive predictive value were determined for subjects who remained negative for HIV antibody for >or=3 months. RESULTS: In 329 subjects examined, the lowest specificities (90.1%-93.7%) were seen for bDNA testing performed in real time. The highest specificities were seen with batched bDNA version 3.0 (99.1%), standard PCR (99.4%), ultrasensitive PCR (100%), and TMA (99.6%) testing. Only the 2 assays with the highest specificities had positive predictive values >40%. For the bDNA assays, increasing the cutoff point at which a test is called positive (e.g., from 50 copies/mL to 500 copies/mL for version 3.0) increased both specificity and positive predictive values to 100%. CONCLUSIONS: The positive predictive value of HIV RNA assays in individuals presenting for PEP is unacceptably low for bDNA-based testing and possibly acceptable for PCR- and TMA-based testing. Routine use of HIV RNA assays in such individuals is not recommended.

Anti-HIV Agents↗

Higher CD4+ T cell counts associated with low viral pol replication capacity among treatment-naive adults in early HIV-1 infection.

BACKGROUND: Infection with primary drug-resistant human immunodeficiency virus type 1 (HIV-1) has been associated with higher CD4(+) T cell counts in drug-naive patients, suggesting that altered viral pol replication capacity (RC) associated with drug resistance diminishes immune injury in vivo, independent of exposure to drugs. METHODS: Virus replication over a single cycle was measured by use of a viral test vector containing patient-derived HIV-1 protease and reverse transcriptase gene segments. RESULTS: Among 191 recently infected patients, pol RC ranged widely, with only 6% of the variance explained by drug-resistance mutations. Patients infected with a virus with a low pol RC (</=43% of the reference virus) had significantly higher CD4(+) T cell counts at study entry, independent of drug resistance and plasma HIV-1 RNA level, and over time, both before and during combination antiretroviral therapy. CONCLUSIONS: Viral pol RC may influence HIV-1 disease progression by affecting the amount and tissue distribution of viral replication. The pol RC value of 43% may represent a threshold below which HIV-1 has lowered virulence and is less able to deplete CD4(+) T cell counts.

Adult↗

Hepatitis B and C viral load changes following initiation of highly active antiretroviral therapy (HAART) in patients with advanced HIV infection.

Chronic infection with either hepatitis B (HBV) or hepatitis C virus (HCV) is frequently present in patients seropositive for human immunodeficiency virus (HIV) because of shared routes of transmission. With the advent of highly active antiretroviral therapy (HAART) regimens capable of controlling HIV replication and dramatically prolonging the survival of HIV-infected patients, the impact of co-morbid infections such as HBV and HCV has come into focus. Several studies have monitored HBV or HCV viral loads following initiation of HAART, with disparate results. The effects of HAART on hepatitis B and C plasma viral loads (n = 9 and 32, respectively) and on liver enzyme levels were studied in a large cohort of prospectively studied subjects with advanced stage HIV disease. Comparing the mean pre- and post-HAART levels, there was an estimated increase of (a) 1.40 log(10) from 4.83 to 6.24 log(10) for HBV plasma viral load (P = 0.07), (b) 0.74 log(10) from 6.38 to 7.12 log(10) for HCV plasma viral load (P = 0.001), and (c) 19.4 U/L from 37.4 to 56.8 U/L for serum alanine aminotransferase (P < 0.001). While the number of subjects co-infected with HIV and HBV was limited, these data collected in a population of advanced stage HIV-infected patients raises questions regarding the interactions of these viruses with each other and the host immune system and has implications regarding the order in which antiviral therapies are initiated.

Adult↗

Emerging infections in transfusion medicine.

The risk of transfusion-transmitted infectious diseases (TTIDs) has declined dramatically in high-income nations over the past 2 decades, primarily because of extraordinary success in preventing HIV and other established transfusion-transmitted viruses from entering the blood supply. Despite this achievement, TTIDs remain a public health concern, and attention is refocusing on new and emerging pathogens, such as West Nile virus, infectious proteins (the presumed cause of variant Creutzfeldt-Jakob disease), and other transmissible organisms such as bacteria and parasites. In this article the authors concentrate on this heterogeneous group of infectious agents, describe individual pathogens and the risks they pose to transfusion recipients, and comment on existing and evolving procedures that are designed to protect the blood supply from this threat.

Blood-Borne Pathogens↗

Should HBV DNA NAT replace HBsAg and/or anti-HBc screening of blood donors?

Prevention of transfusion-transmitted hepatitis B virus (HBV) has historically relied on serological screening of blood donors using progressively more sensitive HBsAg assays; in some countries anti-HBc assays have also been employed to detect chronic carriers with low-level viremia who lack detectable HBsAg. Nucleic acid amplification testing (NAT) for HCV and HIV has been successfully introduced to screen donors in many developed countries over the past several years; for logistical and cost reasons HCV/HIV NAT screening has been applied to mini-pools (MP) of eight to 96 donor specimens, with only minimal impact of MP dilutions on clinical sensitivity for interdiction of window period (WP) donations. In several countries (e.g., Japan and Germany), HBV NAT has been added to HIV/HCV MP-NAT blood donor screening with small incremental yields of HBsAg/anti-HBc-negative donations, and the major vendors of NAT systems (Roche and Chiron/Gen-Probe) have been developing triplex assays that include HBV DNA detection capacity without compromising HIV or HCV detection. Pooled specimen HBV NAT has also become the standard of practice for screening source plasma donors, with pressure to include HBV DNA detection as a required procedure for use of recovered plasma in manufacture of fractionated derivatives. However, there is controversy over the magnitude of the incremental yield and clinical benefit of HBV MP-NAT over serological screening strategies, as well as the impact of implementation of HBV NAT on need for retention of HBsAg and anti-HBc screening. This presentation will review recent modeled and empirical data on the value of HBV MP- and individual donation (ID)-NAT for detection of (1) pre-HBsAg WP units and (2) chronic anti-HBc-reactive carriers with undetectable HBsAg. The presentation will also review policy considerations and data that address the potential for discontinuation of either HBsAg or anti-HBc following implementation of HBV NAT. Finally it will address the cost effectiveness of incorporation of HBV DNA detection into HBV screening and NAT testing algorithms.

Blood Donors↗

Evidence for Selection of more Adapted Human Immunodeficiency Virus Type 1 Recombinant Strains in a Dually Infected Transfusion Recipient.

Human immunodeficiency virus type-1 (HIV-1) genetic diversity is one of the remarkable characteristics of these viruses, and the mechanisms involved in the selective forces driving HIV-1 evolution are of great interest. Samples from hosts infected with multiple distinct strains represent a valuable in vivo resource to investigate the role of recombination in the natural evolution of HIV-1. This work describes a detailed study regarding the evolution of the envelope gene (env) (C2-V5 region) in a dually infected child who received blood transfusions simultaneously from two distinct HIV-1 infected donors. In this study, we were able to directly compare the data obtained from the dually infected recipient with data obtained from two other singly HIV-1 infected children who had received blood transfusion from each of the two donors. Sequences from the singly infected children clustered into two distinct groups, each related to the respective donor-derived sequence by phylogenetic analysis, and hence were consistent with the epidemiological data. In the case of the dually infected child, a high degree of recombination between the two donor-derived sequences was observed at the C2-V3 region, whereas in the V4-V5 region selection of only one derived donor sequence was seen. Measurement of nonsynonymous versus synonymous substitution rates at each region revealed that negative selection was the main evolutionary force acting on the viral population of the dually infected child, regardless of the genetic mechanism by which each region evolved. Based on direct comparison with data obtained for the two singly infected children we propose that the higher amount of viral diversity observed in HIV-1 multi-infection events, as in the case of the dually infected patient, might contribute to maximizing selective advantage and possibly minimizing immune response. We conclude that recombination shaped by selective forces may increase the adaptive potential of HIV-1.

Adaptation, Physiological↗

Clinical significance of nondiscriminated reactive results with the Chiron Procleix HIV-1 and HCV assay.

BACKGROUND: A NAT was developed (Procleix multiplex, Chiron Corporation) to simultaneously detect HIV-1 and HCV RNA with multiplex transcription-mediated amplification (mTMA) on pooled or single donations. HIV-1 and/or HCV RNA discriminatory probes confirm infection and discriminate the virus type. When a multiplex reactive sample does not react in discriminatory assays, the result is considered nondiscriminated reactive (NDR) and the donor status is uncertain. This study was designed to determine the clinical significance of NDR results. STUDY DESIGN AND METHODS: Three years of donor NAT and serology results were reviewed to determine HCV and HIV-1 infection rates as well as NDR events. Index NDR and seronegative donations were retested by mTMA and serology. Follow-up samples were tested by serology, mTMA, and PCR (selected samples). RESULTS: From April 1999 through April 2002, 5.1 million donations were screened with Procleix HIV-1 and HCV mTMA. The observed NDR rate declined from 0.014 percent (1 in 7242) to 0.0053 percent (1 in 18,795). None of the 462 donors with index NDR donations and additional NAT and serology data (from 724 donation and follow-up samples) were found infected. CONCLUSION: In most NDRs, the original mTMA reactivity is not reproducible and likely related to technical errors (mTMA cross-contamination). The retest and clinical follow-up data, combined with published evidence that the two discriminatory assays have the same sensitivity as multiplex HIV-1 and HCV, support the recommendation that donors with an NDR result for whom the multiplex reactivity cannot be reproduced should either not be notified or be deferred or should be counseled that they are not infected and expeditiously reinstated.

Blood Donors↗

Mammalian brain consumption by blood donors in the United States: brains today, deferred tomorrow?

BACKGROUND: Theoretical concerns of possible variant CJD (vCJD) transmission by transfusion have led to deferral of US donors potentially exposed to the bovine spongiform encephalopathy agent. Although the efficacy of these policies is unknown, impact on blood collections has been substantial. Under the precautionary principle, deferral of donors consuming bovine (or other mam-malian) brains, possibly contaminated with the vCJD agent, might be considered. Blood donors were surveyed to determine lifetime mammalian brain consumption. STUDY DESIGN AND METHODS: The Retrovirus Epidemiology Donor Study (REDS) conducted an anonymous mail survey of 92,581 donors from eight US blood centers. RESULTS: Responses were received from 52,650 donors (57%). Of these, 6.4 percent reported lifetime brain consumption; bovine (3.6%) and hog brains (1.7%) were the most common. Bovine brain consumption varied fourfold by center (1.7-7.0%) and was highest among male (4.5%), older (age 55+, 6.5%), foreign-born (9.2%), Asian (7.2%), and Hispanic (8.6%) donors. Among bovine brain consumers, 67 percent engaged in the practice 4 times or less, 79 percent were repeat donors, and 61 percent reported giving at least 11 donations in the past 10 years. CONCLUSION: Following the precautionary principle, further steps to reduce the theoretical vCJD risk could include deferring donors who eat bovine (or other mammalian) brains. The impact of such a policy would not be trivial, especially in areas with older, foreign-born, Asian, or Hispanic donors. Cautious implementation and periodic evaluation of deferral policies is warranted.

Adolescent↗

Clinical investigation of posttransfusion Kidd blood group typing using a rapid normalized quantitative polymerase chain reaction.

BACKGROUND: Accurate typing of a patient's RBCs in the setting of prior transfusion or a hemolytic transfusion reaction is crucial in the selection of compatible blood but is time consuming, technically difficult, and sometimes impossible. To address this problem, a simple, rapid, and inexpensive quantitative PCR method was developed to identify the single nucleotide polymorphism (SNP) of the Kidd blood group. We applied this method in a clinical investigation of 54 multiple-transfusion patients. STUDY DESIGN AND METHODS: Patients were eligible if they had received at least one RBC transfusion within 30 days and had a sample referred to our regional reference lab for assistance with compatibility testing requiring reticulocyte separation, hypotonic saline treatment, or chemical modification to remove IgG. We compared serologic result to the normalized quantitative PCR. For discrepants, or where no serologic type could be assigned, DNA sequencing characterized the patient's Kidd SNP. RESULTS: Of the 54 patients, the reference lab could assign a serologic Kidd type for 33. Quantitative PCR assigned a Kidd type for 53 of the 54. In three cases, where serology and PCR were discrepant, and for all cases where serology could not assign a Kidd type, DNA sequencing verified the Kidd typing assigned by PCR. CONCLUSION: A simple, rapid, and accurate technique has been developed. The assay performs well in the clinical setting. With further study, and inclusion of other blood group systems, this may become an important supplemental technique for selected patients in the immunohematology reference laboratory.

Calibration↗

Estimating blood donor loss due to the variant CJD travel deferral.

BACKGROUND: The FDA recommended new travel deferrals in May 2002 to prevent the potential transmission of variant CJD (vCJD). The predicted impact of such deferrals on the blood supply was controversial. STUDY DESIGN AND METHODS: We distributed anonymous, self-administered questionnaires to donors over 2 weeks in April 2002. Two thousand surveys were allocated to each of five geographic groupings of blood centers in the western and central US. Results were analyzed with chi-squared tests and logistic regression. RESULTS: Of 9800 surveys, 7405 (76%) were returned and analyzed. Overall, 257 (3.47%; 95% CI, 3.05-3.89) donors responding to the survey met the expanded May and November 2002 FDA vCJD travel criteria for deferral. Deferral rates ranged from 1 percent or less in Northern and Southern centers, 3 to 4 percent in San Francisco, California, and Scottsdale, Arizona, to over 13 percent in El Paso, Texas (p < 0.0001). Service at a European military base was the most common reason for deferral, whereas in San Francisco most deferrals were for UK and European travel or residence. The vCJD deferral was also associated with ages 30 through 49 years and with male gender. During June through September 2002, observed deferral rates were 1.6 percent at the same centers. CONCLUSIONS: Predicted deferrals due the new vCJD travel criteria depend upon the number of military donors at a blood center, as well as on the age and gender of donors. Actual deferrals were lower than predicted by an anonymous survey.

Adolescent↗

The donor notification process from the donor's perspective.

BACKGROUND: Despite large numbers of blood donors being notified of abnormal infectious disease screening results, there has been little scientific study of the effects of this process. STUDY DESIGN AND METHODS: With a 28-item questionnaire, an anonymous mail survey was conducted of 4141 blood donors notified of 15 distinct categories of abnormal infectious disease screening and confirmatory test results. RESULTS: The survey had a 42 percent response rate, and 10 percent of the respondents did not recall being notified of their results. Of the 1556 respondents who recalled being notified, 27 percent contacted the blood center for further information, 60 percent discussed their results with a health care provider, and 73 percent of permanently or indefinitely deferred donors correctly understood their deferral status. Confusion and emotional upset were reported in 81 and 75 percent of notified donors, respectively. CONCLUSIONS: The notification process appears to achieve most of its aims in the majority of donors. Nevertheless, some donors did not understand that they were ineligible for future donation, and many donors were confused and upset. These data indicate that the adverse impact of notifying donors about abnormal test results needs to be considered when new blood donor screening tests and confirmatory algorithms are being licensed and implemented. Further studies of the effectiveness of newer revised donor notification materials are needed.

Adult↗

Lack of correlation between HBsAg and HBV DNA levels in blood donors who test positive for HBsAg and anti-HBc: implications for future HBV screening policy.

BACKGROUND: Studies showing a significant correlation between hepatitis B surface antigen (HBsAg) and hepatitis B virus (HBV) deoxyribonucleic acid (DNA) levels have focused on the HBV seroconversion window period. STUDY DESIGN AND METHODS: HBsAg levels relative to HBV DNA results in 200 HBsAg-positive, anti-hepatitis B core antigen (HBc)-reactive blood donations were analyzed using quantitative polymerase chain reaction (PCR) (detection limit 400 copies/mL), two research PCR assays with increasing sensitivities (65 copies/mL and 1.3 copies/mL, respectively), and a quantitative HBsAg assay; HBsAg and HBV DNA levels were correlated with HBV serologic profiles; and the potential for replacing HBsAg screening with nucleic acid testing (NAT) was analyzed. RESULTS: Serologic profiles for over 90 percent of the donor samples were consistent with chronic HBV infection. Correlation between HBsAg and HBV DNA concentrations was weak (correlation coefficient = 0.33). Thirty-six percent (72/200) of donor samples had DNA levels under 400 copies per mL. Retesting of the 72 samples by more sensitive PCR assays showed that 60 out of 200 (30%) were positive by PCR with sensitivity of 65 copies per mL, whereas 6 out of 200 (3%) required PCR sensitivity of 1.3 copies per mL for positivity. Three percent (6/200) were negative by all three NAT assays. CONCLUSIONS: HBV DNA levels in HBsAg-positive, anti-HBc-reactive blood donations can be extremely low. About 6 percent of donations would be negative by current minipool HBV NAT methods. About 3 percent of donations would remain undetected by sensitive single-donor NAT. These results indicate caution in any consideration of dropping HBsAg screening.

Adult↗

Quantifying losses to the donated blood supply due to donor deferral and miscollection.

BACKGROUND: Donors are deferred for multiple reasons. Losses related to disease marker rates are well established. Donor and donation losses for other reasons, however, have not been extensively quantified. STUDY DESIGN AND METHODS: To quantify these losses, three data sets from the Blood Centers of the Pacific were combined, permitting detailed analysis of year 2000 allogeneic whole-blood donations. RESULTS: During 2000, 13.6 percent of 116,165 persons who presented for donation were deferred at presentation. Short-term deferral accounted for 68.5 percent (hematocrit was most common at 60%); long-term deferral accounted for 21 percent (travel to a malarial area and tattoo or other nonintravenous drug use needle exposure were most common at 59 and 29%, respectively); and multiple-year or permanent deferral accounted for 10.5 percent (UK travel [variant Creutzfeldt-Jakob disease] risk and emigration from a malarial area were most common at 38 and 11%, respectively). Disease-marker-reactive donations represented 0.9 percent of donor outcomes. The prevalence of deferral and also miscollection (under- and overweight units) varied by age, sex, and first-time versus repeat donor status. Overall, miscollection led to a loss of 3.8 percent of 100,141 collections, ranging from 1.9 percent in repeat male donors 40 to 54 years of age to 10.7 percent in first-time female donors 16 to 24 years of age. CONCLUSION: Loss of units from both first-time and repeat donors due to temporary deferral and loss of units from miscollection are more common events than losses due to disease marker testing. Some of these losses may be avoidable and could increase the blood supply without having to recruit new donors.

Adolescent↗

Dynamics of HIV viremia and antibody seroconversion in plasma donors: implications for diagnosis and staging of primary HIV infection.

OBJECTIVES: The characterization of primary HIV infection by the analysis of serial plasma samples from newly infected persons using multiple standard viral assays. DESIGN: A retrospective study involving two sets of archived samples from HIV-infected plasma donors. (A) 435 samples from 51 donors detected by anti-HIV enzyme immunoassays donated during 1984-1994; (B) 145 specimens from 44 donors detected by p24 antigen screening donated during 1996-1998. SETTING: Two US plasma products companies. MAIN OUTCOME MEASURES: The timepoints of appearance of HIV-1 markers and viral load concentrations during primary HIV infection. RESULTS: The pattern of sequential emergence of viral markers in the 'A' panels was highly consistent, allowing the definition and estimation of the duration of six sequential stages. From the 'B' panels, the viral load at p24 antigen seroconversion was estimated by regression analysis at 10 000 copies/ml (95% CI 2000-93 000) and the HIV replication rate at 0.35 log copies/ml/day, corresponding to a doubling time in the preseroconversion phase of 20.5 h (95% CI 18.2-23.4 h). Consequently, an RNA test with 50 copies/ml sensitivity would detect HIV infection approximately 7 days before a p24 antigen test, and 12 days before a sensitive anti-HIV test. CONCLUSION: The sequential emergence of assay reactivity allows the classification of primary HIV-1 infection into distinct laboratory stages, which may facilitate the diagnosis of recent infection and stratification of patients enrolled in clinical trials. Quantitative analysis of preseroconversion replication rates of HIV is useful for projecting the yield and predictive value of assays targeting primary HIV infection.

Biomarkers↗

Development of a new less-sensitive enzyme immunoassay for detection of early HIV-1 infection.

The sensitive/less-sensitive (S/LS) enzyme immunoassay (EIA) testing strategy for discriminating "early" from "longstanding" HIV infection has been widely applied for detecting recent seroconverters and estimating HIV incidence rates. The originally developed assay (3A11-LS EIA; Abbott Laboratories, Abbott Park, IL) involved performance of LS EIAs using a bead-based assay that required specialized equipment and reagents of limited availability. In contrast, 96-microwell-based EIAs are more universally applied for HIV serodiagnosis throughout the world. The authors report development and preliminary validation of an LS protocol using an EIA in a 96-well format: the Vironostika HIV-1 MicroElisa System (Vironostika-LS EIA; Bio Merieux, Raleigh, NC). The results with samples from recent HIV-1 seroconverters, persons with longstanding HIV-1 asymptomatic infection, patients on highly active antiretroviral therapy, and AIDS patients show a high degree of correlation between the Vironostika-LS EIA and 3A11-LS EIA. The authors also demonstrate that the Abbott 3A11-LS EIA and Vironostika-LS EIA performed comparably on HIV-1-positive samples from persons infected with non-B HIV-1 subtypes. These results support the potential use of the Vironostika-LS EIA for detection of recent HIV-1 infections for incidence projections and for other epidemiologic, clinical, and molecular surveillance applications.

Acquired Immunodeficiency Syndrome↗