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Biomedical subjects

Michael M Lederman

Publications and source records attributed to Michael M Lederman.

At least 19 recordsLinked to original sources

Changes in the slope of the CD4 cell count increase after initiation of potent antiretroviral treatment.

SUMMARY: Two phases of CD4+ T-cell increases are seen soon after potent antiretroviral therapy (ART) is initiated. In this 72-week analysis of 101 subjects with sustained viral suppression, we estimate the inflection point between the 2 phases to be 10 weeks after treatment initiation. Higher pretreatment HIV-1 RNA levels were associated with steeper initial CD4+ T-cell increases, likely reflecting greater redistribution of cells from lymphoid tissue to the peripheral blood compartment.

Anti-HIV Agents↗

Microbial translocation is a cause of systemic immune activation in chronic HIV infection.

Chronic activation of the immune system is a hallmark of progressive HIV infection and better predicts disease outcome than plasma viral load, yet its etiology remains obscure. Here we show that circulating microbial products, probably derived from the gastrointestinal tract, are a cause of HIV-related systemic immune activation. Circulating lipopolysaccharide, which we used as an indicator of microbial translocation, was significantly increased in chronically HIV-infected individuals and in simian immunodeficiency virus (SIV)-infected rhesus macaques (P <or= 0.002). We show that increased lipopolysaccharide is bioactive in vivo and correlates with measures of innate and adaptive immune activation. Effective antiretroviral therapy seemed to reduce microbial translocation partially. Furthermore, in nonpathogenic SIV infection of sooty mangabeys, microbial translocation did not seem to occur. These data establish a mechanism for chronic immune activation in the context of a compromised gastrointestinal mucosal surface and provide new directions for therapeutic interventions that modify the consequences of acute HIV infection.

Animals↗

Cyclosporin A provides no sustained immunologic benefit to persons with chronic HIV-1 infection starting suppressive antiretroviral therapy: results of a randomized, controlled trial of the AIDS Clinical Trials Group A5138.

BACKGROUND: Although the determinants of immune deficiency and immune restoration in chronic human immunodeficiency virus (HIV)-1 infection are not well understood, immune activation has been proposed as being central to the pathogenesis of HIV. METHODS: A randomized, controlled trial of cyclosporin A treatment for 2 weeks was performed in persons with chronic HIV-1 infection who were beginning a standardized antiretroviral therapy (ART) regimen. RESULTS: Treatment with cyclosporin A provided only a marginal and transient enhancement in circulating T cell restoration that was largely restricted to cells expressing the CCR7 chemokine receptor and that did not persist beyond 2 weeks. CONCLUSIONS: Cyclosporin A coadministered for 2 weeks with ART provided no sustained immunologic benefit to persons with chronic HIV-1 infection. If immune activation drives progressive immune deficiency in chronic HIV-1 infection, these activation pathways may not be sensitive to cyclosporin.

Adult↗

Predictive value of plasma HIV RNA level on rate of CD4 T-cell decline in untreated HIV infection.

CONTEXT: Plasma human immunodeficiency virus (HIV) RNA level predicts HIV disease progression, but the extent to which it explains the variability in rate of CD4 cell depletion is poorly characterized. OBJECTIVE: To estimate the proportion of variability in rate of CD4 cell loss predicted by presenting plasma HIV RNA levels in untreated HIV-infected persons. DESIGN: Repeated-measures analyses of 2 multicenter cohorts, comprising observations beginning on May 12, 1984, and ending on August 26, 2004. Analyses were conducted between August 2004 and March 2006. SETTING: Two cohorts of HIV-infected persons: patients followed up at 4 US teaching medical institutions or participating in either the Research in Access to Care for the Homeless Cohort (REACH) or the San Francisco Men's Health Study (SFMHS) cohorts and participants in the Multicenter AIDS Cohort Study (MACS) cohort. PARTICIPANTS: Antiretroviral treatment-naive, chronically HIV-infected persons (n = 1289 and n = 1512 for each of the 2 cohorts) untreated during the observation period (> or =6 months) and with at least 1 HIV RNA level and 2 CD4 cell counts available. Approximately 35% were nonwhite, and 35% had risk factors other than male-to-male sexual contact. MAIN OUTCOME MEASURES: The extent to which presenting plasma HIV RNA level could explain the rate of model-derived yearly CD4 cell loss, as estimated by the coefficient of determination (R2). RESULTS: In both cohorts, higher presenting HIV RNA levels were associated with greater subsequent CD4 cell decline. In the study cohort, median model-estimated CD4 cell decrease among participants with HIV RNA levels of 500 or less, 501 to 2000, 2001 to 10,000, 10,001 to 40,000, and more than 40,000 copies/mL were 20, 39, 48, 56, and 78 cells/microL, respectively. Despite this trend across broad categories of HIV RNA levels, only a small proportion of CD4 cell loss variability (4%-6%) could be explained by presenting plasma HIV RNA level. Analyses using multiple HIV RNA measurements or restricting to participants with high HIV RNA levels improved this correlation minimally (R2, 0.09), and measurement error was estimated to attenuate these associations only marginally (deattenuated R2 in the 2 cohorts, 0.05 and 0.08, respectively). CONCLUSIONS: Presenting HIV RNA level predicts the rate of CD4 cell decline only minimally in untreated persons. Other factors, as yet undefined, likely drive CD4 cell losses in HIV infection. These findings have implications for treatment decisions in HIV infection and for understanding the pathogenesis of progressive immune deficiency.

Adult↗

A randomized trial of treatment interruption before optimized antiretroviral therapy for persons with drug-resistant HIV: 48-week virologic results of ACTG A5086.

BACKGROUND: The role of structured treatment interruption (STI) before optimized antiretroviral therapy (ART) in patients with drug-resistant human immunodeficiency virus type 1 (HIV-1) is uncertain. METHODS: AIDS Clinical Trial Group protocol A5086 was a prospective trial of 41 patients with multiple drug class-resistant HIV who were randomized to undergo a 16-week STI followed by optimized ART (STI) or immediate optimized ART (no STI). The primary end point was the proportion of subjects with HIV-1 RNA loads <400 copies/mL 48 weeks after randomization. RESULTS: Of 39 evaluable patients, 4 (19%) in the STI arm and 6 (33%) in the no STI arm had HIV-1 RNA loads <400 copies/mL at 48 weeks (P=.44). Median changes from baseline in CD4+ cell counts and HIV-1 RNA loads were similar for both arms. Standard genotypes at the end of STI showed nearly complete reversion to wild-type virus in a minority of patients (n=5; 28%). Virus with 3-drug class resistance reemerged even when ART included only 1 or 2 drug classes. Single-genome sequencing showed that each genome encoded resistance mutations for 3 drug classes. CONCLUSIONS: A 16-week STI before optimized ART did not improve virologic response. Genetic analyses strongly suggest that virologic failure resulted from the reemergence of virus present before STI that encoded 3-drug class resistance on the same genome.

Adult↗

Biology of CCR5 and its role in HIV infection and treatment.

Chemokine receptors are found on cell surfaces and promote cellular migration by chemotaxis. The CC chemokine receptor 5 (CCR5) is used by the human immunodeficiency virus (HIV) to infect cells. Strategies that target human CCR5 are therefore being developed to prevent and treat HIV infection. Antiviral strategies that target a host element necessary for viral replication may be predicted to interfere with the function of that element and may therefore adversely affect the host. We conducted a review of the literature between November 2005 and April 2006 with a focus on articles addressing the genetics and function of CCR5, the effects of CCR5 deletion in human and murine systems, and treatment strategies for HIV infection that target this coreceptor. English-language articles in the human and murine literature published between March 1996 and April 2006 were identified through a search of MEDLINE using CCR5 as the search term. Relevant articles as judged by their titles and abstracts were reviewed in detail. In addition, based on our knowledge of the field and with permission, unpublished work was also reviewed. In this article, we explore the effects that targeting CCR5 may have on host defenses in individuals with immunity already compromised by HIV infection.

Animals↗

Pharmacogenetics of nevirapine-associated hepatotoxicity: an Adult AIDS Clinical Trials Group collaboration.

Associations have been reported between an MDR1 variant and responses to nonnucleoside reverse-transcriptase inhibitors. We explored associations between MDR1, CYP2B6, and CYP3A polymorphisms and nevirapine hepatotoxicity. Among participants in a randomized study in South Africa (FTC-302), MDR1 3435C-->T was significantly associated with decreased risk of hepatotoxicity (risk ratio, 0.30; P=.016).

Adult↗

Cutting edge: human beta defensin 3--a novel antagonist of the HIV-1 coreceptor CXCR4.

Previously, we showed that human epithelial cell-derived beta-defensins (hBD)-2 and -3 block HIV-1 replication via a direct interaction with virions and through modulation of the CXCR4 coreceptor on immunocompetent cells. In the present study, we show that hBD-3 promotes directly the internalization of CXCR4 yet does not induce calcium flux, ERK (ERK-1/2) phosphorylation, or chemotaxis. hBD-3 competes with stromal-derived factor 1 (SDF-1), the natural ligand for CXCR4, for cellular binding and blocks SDF-1-induced calcium flux, ERK-1/2 phosphorylation, and chemotaxis, without effects on other G protein-coupled receptors. The novel activity of this endogenous CXCR4 antagonist may provide a new strategy for HIV therapies or immunomodulation. Moreover, since the SDF-1/CXCR4 axis plays an important role in hemopoiesis, neurogenesis, cardiogenesis, and angiogenesis, endogenous agents such as hBD-3 or its derivatives offer a new paradigm in immunoregulatory therapeutics and provide the opportunity to enhance future drug design.

Adenosine Triphosphate↗

HIV coinfection impairs CD28-mediated costimulation of hepatitis C virus-specific CD8 cells.

BACKGROUND: During human immunodeficiency virus (HIV) infection, reduced proportions of CD8 cells express CD28, the key costimulatory molecule for lymphocyte activation. However, it is unclear whether reduced CD28 expression affects immune responses to non-HIV antigens, potentially contributing to susceptibility to opportunistic infection. METHODS: We measured CD4- and CD8-specific interferon- gamma responses to hepatitis C virus (HCV) peptide pools in subjects with chronic HCV monoinfection (n=14), in subjects with chronic HCV/HIV coinfection (n=15), and in healthy control subjects (n=10) by enzyme-linked immunospot assay in the presence and absence of CD28 costimulation. RESULTS: Anti-CD28 agonist increased the cumulative frequency of HCV-specific CD4 cell responses in the subjects with HCV monoinfection and in those with HCV/HIV coinfection. In contrast, anti-CD28 agonist increased the breadth and cumulative frequency of HCV-specific CD8 cell responses only in the subjects with HCV monoinfection. Additionally, in the presence of anti-CD28 agonist, the proportion of subjects responding, the cumulative frequency, and the breadth of reactive CD8 cells were greater among the subjects with HCV monoinfection than among those with HCV/HIV coinfection. Finally, the HCV/HIV-coinfected subjects had lower proportions of CD8 cells that expressed CD28. CONCLUSIONS: These results indicate that, during HCV/HIV coinfection, memory-effector CD8 cells have reduced responsiveness to CD28 costimulation. This appears to reflect a global effect that HIV has on the activation or differentiation state of CD8 cells that are responsive to other microbial pathogens. This functional defect has implications for the pathogenesis of HCV/HIV coinfection.

Adult↗

Interferon-alpha differentially rescues CD4 and CD8 T cells from apoptosis in HIV infection.

OBJECTIVE: To examine the effects of interferon-alpha (IFN-alpha) on T cell survival and activation in HIV infection. DESIGN: The effects of IFN-alpha on spontaneous apoptosis and CD38 expression among T cell subsets were determined in vitro and studied in relation to CD4 cell counts, plasma HIV RNA levels and the age of the subjects. METHODS: Peripheral blood mononuclear cells from 48 HIV-infected persons and 17 healthy donors were incubated in vitro overnight with or without the addition of IFN-alpha. Percentages of apoptotic cells (positive for annexin V) and CD38 cells were determined among T cell subsets. RESULTS: IFN-alpha inhibited spontaneous apoptosis of CD4 and CD8 T lymphocytes. This protective activity was impaired in CD4 T cells from HIV-infected persons. The reduced protection of IFN-alpha among CD4 cells from HIV-infected persons was not related to the percentages of activated (CD38 or CD45RO+CD38+) cells. Surprisingly, IFN-alpha induced CD38 expression among CD8 T cells from HIV-infected persons, and the magnitude of this effect was directly related to circulating CD4 T cell count. The CD8 T cell subset that expressed CD38 in response to IFN-alpha was defined as CD28 negative, CD62 ligand (CD62L) intermediate/negative. CONCLUSIONS: Heightened expression of IFN-alpha in HIV infection may contribute to the phenotypic activation state that characterizes chronic infection while a diminished responsiveness of CD4 T cells to the protective effect of this cytokine may contribute to differential survival of CD4 and CD8 T cells in HIV disease.

ADP-ribosyl Cyclase 1↗

HIV nonprogressors preferentially maintain highly functional HIV-specific CD8+ T cells.

Establishing a CD8(+) T cell-mediated immune correlate of protection in HIV disease is crucial to the development of vaccines designed to generate cell-mediated immunity. Historically, neither the quantity nor breadth of the HIV-specific CD8(+) T-cell response has correlated conclusively with protection. Here, we assess the quality of the HIV-specific CD8(+) T-cell response by measuring 5 CD8(+) T-cell functions (degranulation, IFN-gamma, MIP-1beta, TNF-alpha, and IL-2) simultaneously in chronically HIV-infected individuals and elite nonprogressors. We find that the functional profile of HIV-specific CD8(+) T cells in progressors is limited compared to that of nonprogressors, who consistently maintain highly functional CD8(+) T cells. This limited functionality is independent of HLA type and T-cell memory phenotype, is HIV-specific rather than generalized, and is not effectively restored by therapeutic intervention. Whereas the total HIV-specific CD8(+) T-cell frequency did not correlate with viral load, the frequency and proportion of the HIV-specific T-cell response with highest functionality inversely correlated with viral load in the progressors. Thus, rather than quantity or phenotype, the quality of the CD8(+) T-cell functional response serves as an immune correlate of HIV disease progression and a potential qualifying factor for evaluation of HIV vaccine efficacy.

AIDS Vaccines↗

Microbicides and other topical strategies to prevent vaginal transmission of HIV.

The HIV epidemic is, by many criteria, the worst outbreak of infectious disease in history. The rate of new infections is now approximately 5 million per year, mainly in the developing world, and is increasing. Women are now substantially more at risk of infection with HIV than men. With no cure or effective vaccine in sight, a huge effort is required to develop topical agents (often called microbicides) that, applied to the vaginal mucosa, would prevent infection of these high-risk individuals. We discuss the targets for topical agents that have been identified by studies of the biology of HIV infection and provide an overview of the progress towards the development of a usable agent.

Administration, Topical↗

Differential effect of interleukin-2 treatment on primary and secondary immunizations in HIV infected individuals.

OBJECTIVES: As interleukin (IL)-2 therapy increases CD4 cell counts in HIV infected subjects, it emerged as a candidate for the partial restoration of immune competence in this disease. METHODS: We studied the frequencies of antigen-specific T cells using single cell resolution cytokine ELISPOT assays and titers of specific antibodies before and after immunization of HIV infected subjects who were treated with HAART or HAART plus IL-2. RESULTS: Subjects seronegative to hepatitis A were vaccinated with hepatitis A antigen. In the non-IL-2 treated group, hepatitis A-specific T cells producing IL-2 and IL-4 along with specific antibodies were induced, showing that these subjects are immune competent and capable of mounting a primary immune response. Additional IL-2 treatment had no significant effect on this primary T cell response; however, booster immunizations with tetanus toxoid or the gp120 depleted HIV vaccine Remune induced higher frequencies of specific interferon (IFN)-gamma producing T cells in IL-2 treated subjects. No impact of IL-2 treatment on these secondary B cell responses was seen. CONCLUSION: Overall, our study showed that IL-2 therapy had no immune enhancing effect on the induction of a primary response, but increased the frequency of IFN-gamma producing memory cells after booster immunization.

AIDS Vaccines↗

Distinct mechanisms of T cell reconstitution can be identified by estimating thymic volume in adult HIV-1 disease.

BACKGROUND: We have attempted to identify factors associated with T cell reconstitution in response to highly active antiretroviral therapy. METHODS: In a prospective, multicenter cohort study, we compared clinical, immune, and viral responses to an initial antiretroviral regimen in older (>or=45 years old) versus younger (18-30 years old) human immunodeficiency virus type 1-infected subjects. Multivariable linear-regression models identified independent factors associated with changes in T cell counts. RESULTS: Older subjects had smaller increases in naive T cells but greater T cell receptor-excision circle DNA content after 48 weeks, despite similar virologic responses and comparable reductions in immune activation. Changes in T cell counts were associated with plasma interleukin (IL)-7 levels in subjects with low thymic scores, whereas first-phase T cell increases (perhaps mediated by redistribution to the circulation of tissue-associated lymphocytes) were associated with reductions in immune activation in subjects with high thymic scores. Reductions in immune activation were associated with reductions in spontaneous lymphocyte apoptosis. CONCLUSIONS: Distinct processes may underlie T cell restoration, according to estimated thymic volumes. IL-7-mediated peripheral expansion may drive T cell restoration in persons with low thymic volume, whereas therapy-associated reversal of immune reactivation may drive T cell losses and their restoration in persons with larger thymic volume.

Adolescent↗

Peripheral S-phase T cells in HIV disease have a central memory phenotype and rarely have evidence of recent T cell receptor engagement.

Heightened proliferation and death of T lymphocytes may play a key role in human immunodeficiency virus (HIV) pathogenesis; however, the mechanism that mediates this effect and the phenotype of the proliferating T cells have not been clearly determined. We assessed S-phase cell frequencies and phenotype by ex vivo bromodeoxyuridine incorporation and flow-cytometric analysis in a group of 35 HIV-infected individuals. Frequencies of S-phase T cells were increased in HIV disease and were related to plasma HIV RNA levels but not to CD4 cell, total T cell, or total lymphocyte counts. S-phase cells were phenotypically defined as "central memory" cells (CD45RO+CD62L+CCR7+). Although activated (CD38+), S-phase cells lacked CD69 expression, rarely expressed CD25, and were not overrepresented among HIV-specific cells, as might have been expected if these cells had recently been activated by HIV antigens. Thus, in HIV infection, central memory T cells may be highly susceptible to bystander mechanisms of immune activation, leading to S-phase entry.

Adult↗

Monitoring processed, mature Human Immunodeficiency Virus type 1 particles immediately following treatment with a protease inhibitor-containing treatment regimen.

Protease inhibitors (PIs) block HIV-1 maturation into an infectious virus particle by inhibiting the protease processing of gag and gag-pol precursor proteins. We have used a simple anti-HIV-1 p24 Western blot to monitor the processing of p55gag precursor into the mature p24 capsid immediately following the first dosage of a PI-containing treatment regimen. Evidence of PI activity was observed in plasma virus as early as 72 hours post treatment-initiation and was predictive of plasma viral RNA decrease at 4 weeks.

Journal Article↗

Severe hepatotoxicity associated with nevirapine use in HIV-infected subjects.

Human immunodeficiency virus (HIV)-infected South African patients (n=468) received blinded lamivudine or emtricitabine, stavudine, and either nevirapine or efavirenz (based on screening viral load). Baseline characteristics were analyzed in univariate and multivariate regression, to identify risk factors for hepatotoxicity (grade 3 or greater increase in serum aminotransferase levels). The occurrence of early hepatotoxicity was 17% in the nevirapine group and 0% in the efavirenz group and was balanced between the lamivudine and emtricitabine arms. Two subjects died of hepatic failure. Independent risk factors were body-mass index (BMI) <18.5, female sex, serum albumin level <35 g/L, mean corpuscular volume >85 fL, plasma HIV-1 RNA load <20,000 copies/mL, aspartate aminotransferase level <75 IU/L, and lactate dehydrogenase level <164 IU/L. The use of nevirapine in female patients with a low BMI should be discouraged.

Adult↗