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Biomedical subjects

B Autran

Publications and source records attributed to B Autran.

At least 55 records · Page 3Linked to original sources

HIV-1 rebound during interruption of highly active antiretroviral therapy has no deleterious effect on reinitiated treatment. Comet Study Group.

BACKGROUND: Potent antiretroviral therapy (ART) with a protease inhibitor-based regimen is commonly used to treat HIV-1-infected patients. Transient treatment interruptions because of drug intolerance or other reasons are not uncommon. HIV-1 dynamics during therapy interruption and its consequences for the subsequent reinitiation of therapy have not been properly studied. METHODS: Ten antiretroviral-naive, HIV-1-infected subjects (mean baseline CD4 cell count of 414 cells/mm3 and plasma viral load of 4.8 log10 copies/ml) were treated with the triple drug ART regimen indinavir/zidovudine/lamivudine for 28 days. Therapy was then interrupted for 28 days, after which the same ART regimen was re-started. RESULTS: HIV-1 in plasma declined during the first 7 days of therapy with T1/2 of 1.5 days, and during days 7-28 with T1/2 of 8.9 days. Once therapy was interrupted, a delay of 4-7 days was observed in all subjects, preceding a rapid viral rebound with a mean doubling time of 1.6 days. Mean viral load after 28 days of interruption was 96% of baseline. Upon reinitiation of the same ART regimen, viral load declined at rates similar to those observed during the initial therapy (T1/2 of 1.6 and 8.0 days, respectively). No resistance-conferring mutations were observed in the HIV-1 reverse transcriptase (RT) and protease regions after the interruption of therapy. Plasma viral loads were maintained below 200 copies/ml in subjects continuing therapy for 4 (n = 9) to 12 (n = 5) months, with a mean CD4 cell count increase of 145 cells/mm3. CONCLUSIONS: The reintroduction of efficient ART therapy after a 1 month interruption shows viral kinetics similar to that of naive patients, and is not associated with the development of resistance. No deleterious effect on the reinitiated therapy was observed in patients who temporarily discontinued ART therapy. Nevertheless, because viral load rebounds back to baseline during treatment interruption, viral suppression is in effect put off by that period of time.

Anti-HIV Agents↗

[Immunologic reconstruction after antiretroviral treatment].

DATA FAVORING IMMUNE RECONSTITUTION: Multiple drug therapies for HIV infection have enabled a major reduction in the viral load, higher CD4 counts, and a lower incidence of opportunistic infections and tumor formations, and subsequently lower hospitalization rates and mortality. TWO STAGES OF CD4 RECONSTITUTION: In HIV-positive patients with advanced stage disease treated with a protease inhibitor associated with 2 nucleoside analog reverse transcriptase inhibitors and followed prospectively, it has been observed that CD4 counts rise considerably, with a rapid increase during the first 2 months followed by a slower but still positive slope over a period of 18 months. Discordant results have however also been observed suggesting an ineffective anti-viral effect or a retarded immune reconstitution. SEVERAL MECHANISMS: The lymphocyte amplification observed during the early phase corresponds to re-circulation of CD4 and CD8 lymphocytes which had been sequestered in lymphoid organs; most of these CD4 lymphocytes are memory cells. A second phase corresponds to a more moderate and progressive rise in naive CD4 cells which originate from an unknown source. This biphasic reconstitution of CD4 lymphocytes is associated with a correction of the chronic lymphocyte overactivation. PARTIAL IMMUNE RECONSTITUTION: With treatment, the capacity to respond to known antigens reappears. This restored capacity is secondary to the amplification of CD4 memory cells and appears prior to the expansion phase of naive cells. The response remains moderate and is only observed against antigens from microorganisms highly prevalent during advanced stage infection.

Antiviral Agents↗

Combined genotypes of CCR5, CCR2, SDF1, and HLA genes can predict the long-term nonprogressor status in human immunodeficiency virus-1-infected individuals.

Human immunodeficiency virus (HIV)-1-infected long-term nonprogressors (LT-NP) represent less than 5% of HIV-1-infected patients. In this work, we tried to understand whether combined genotypes of CCR5-triangle up32, CCR2-64I, SDF1-3'A and HLA alleles can predict the LT-NP status. Among the chemokine receptor genotypes, only the frequency of the CCR5-triangle up32 allele was significantly higher in LT-NP compared with the group of standard progressors. The predominant HLA alleles in LT-NP were HLA-A3, HLA-B14, HLA-B17, HLA-B27, HLA-DR6, and HLA-DR7. A combination of both HLA and chemokine receptor genotypes integrated in a multivariate logistic regression model showed that if a subject is heterozygous for CCR5-triangle up32 and homozygous for SDF1 wild type, his odds of being LT-NP are increased by 16-fold, by 47-fold when a HLA-B27 allele is present with HLA-DR6 absent, and by 47-fold also if at least three of the following alleles are present: HLA-A3, HLA-B14, HLA-B17, HLA-DR7. This model allowed a correct classification of 70% of LT-NPs and 81% of progressors, suggesting that the host's genetic background plays an important role in the evolution of HIV-1. The chemokine receptor and chemokine genes along with the HLA genotype can serve as predictors of HIV-1 outcome for classification of HIV-1-infected subjects as LT-NPs or progressors.

Adolescent↗

Restoration of the immune system with anti-retroviral therapy.

Clinical benefits of highly active anti-retroviral treatments (HAART) are increasingly evidenced by resolving opportunistic infections and malignancies, as well as declining hospitalization and mortality rates [1]. This suggests that potent and sustained suppression of viral replication, at least to some extent, is associated with reconstitution of the immune system even in adult patients treated at advanced stages of the disease. Increased susceptibility to opportunistic infections and tumors mainly results from the loss of memory CD4+ T cell reactivity against recall antigens which is an early event in HIV disease progression. Primary responses of naive CD4+ T cells against new pathogens are suppressed even earlier in the course of HIV disease, and the progressive depletion in naive CD4+ T cells reflects profound alterations in T cell regeneration capacities. Previous studies revealed that monotherapy with ritonavir, a protease inhibitor, resulted in a slight improvement in memory CD4+ T cell responses to recall Ags only when detectable prior to onset of therapy, suggesting that the loss of CD4+ T cell reactivity might be irreversible at advanced stages of the disease [2]. In contrast our group demonstrated more recently that restoration in CD4+ T cell reactivity to specific antigens was feasible when HAART was administered in progressors [3]. Here we address some of the questions raised by immune restoration with HAART when administered at advanced stages of the disease.

Adult↗

Leukemic CD3+ LGL share functional properties with their CD8+ CD57+ cell counterpart expanded after BMT.

Leukemic T-LGL (large granular lymphocyte) composed of clonal CD3+ TCR alphabeta+ CD8+ CD57+ cells were compared with oligoclonally CD3+ CD8hi+ CD57- lymphocytes expanded after BMT. Leukemic CD3+ CD8hi+ CD57+ LGL showed several phenotypic differences such as an upregulation of CD16 and adhesion molecules (mainly CD11c, CD58 and CD54), activation markers and an exclusive CD45RA isoform expression. Unstimulated CD3+ CD8+ CD57+ LGL from both leukemic and BMT donors spontaneously developed an ex vivo CTL-like CD3-redirected cytotoxicity but no NK cell activity. Different stimuli (PHA, PMA or rhIL-2) induced similar cytotoxic profiles after a 6-day culture involving a CD3-redirected lysis predominating over a low NK cell activity. However, culture of leukemic LGL with these stimuli allowed either a 2 week persistence (PMA or rhIL-2) of CD8+ CD57+ LGL or their disappearance after 3 days (PHA). Furthermore, leukemic CD8hi+ CD57+ T lymphocytes produced an inhibitor of cytotoxic functions as previously described for BMT recipients' CD8+ CD57+ cells. Thus, despite some phenotypic differences between both cell sources, leukemic CD57+ T-LGL display the same functional characteristics of cytotoxic effector and immunoregulatory T cells as CD8+ CD57+ T cells from BMT recipients which might represent their normal counterpart.

Bone Marrow Transplantation↗

Up-regulation of adhesion and MHC molecules on splenic monocyte/macrophages in adult haemophagocytic syndrome.

Haemophagocytic syndrome (HPS) has been associated with the abnormal activation of mono/macrophages and increased cytokine production. However, neither the phenotype of haemophagocytic monomacrophages nor the cellular origin of cytokine production have been described. We studied splenic monomacrophages and lymphocytes from five patients with HPS (two HIV- and three HIV+) and from controls without HPS (three normal HIV and two pathological HIV+). Using flow-cytometry, we observed a marked increase in the expression of MHC class I and II, M-CSF-receptor and adhesion molecules LFA-1, LFA-3, ICAM-1 (P<0.05) on HPS+ splenic monomacrophages compared to HPS-, which was independent of their HIV status. A high percentage of CD8+ lymphocytes from 4/5 HPS+ patients produced TNF alpha and IFNgamma, but no IL-6 upon in-vitro activation. In a fifth patient CD4+ but not CD8+ lymphocytes produced these cytokines. Although other cytokines might be involved in the pathophysiology of HPS as suggested by the high expression of M-CSF-receptor, these results suggest that TNF alpha and IFNgamma secretion by T cells might play a role in the up-regulation of adhesion and MHC molecules on monomacrophages from HPS.

Adolescent↗

Transfer of human CD4(+) T lymphocytes producing beta interferon in Hu-PBL-SCID mice controls human immunodeficiency virus infection.

Beta interferon (IFN-beta) exerts pleiotropic antiretroviral activities and affects many different stages of the human immunodeficiency virus (HIV) infectious cycle in IFN-treated cells. To explore whether transfer of genetically engineered human CD4(+) T cells producing constitutively low amounts of IFN-beta can eradicate HIV in vivo, we developed a new Hu-PBL-SCID mouse model supporting a persistent, replicative HIV infection maintained by periodic reinoculations of activated human CD4(+) T cells. Transferring human CD4(+) T cells containing the IFN-beta retroviral vector drastically reduced the preexisting HIV infection and enhanced CD4(+) T-cell survival and Th1 cytokine expression. Furthermore, in 40% of the Hu-PBL-SCID mice engrafted with IFN-beta-transduced CD4(+) T cells, HIV-1 was undetectable in vivo as well as after cocultivation of mouse tissues with human phytohemagglutinin-stimulated lymphoblasts. These results indicate that a therapeutic strategy based upon IFN-beta transduction of CD4(+) T cells may be an approach to controlling a preexisting HIV infection and allowing immune restoration.

Animals↗

B-cell pulmonary lymphoma: gene rearrangement analysis of bronchoalveolar lymphocytes by polymerase chain reaction.

STUDY OBJECTIVES: Non-Hodgkin's lymphomas (NHLs) are clonal proliferation of B or T lymphocytes. Assessment of clonality in lymphoid proliferations uses immunochemistry and, recently, molecular biology. The aim of our study is to assess the role of immunoglobulin gene rearrangement analysis on bronchoalveolar lymphocytes to aid in the diagnosis of B-cell pulmonary NHL. PATIENTS AND METHODS: The study took place in a university hospital. There were seven consecutive patients with B-cell-type pulmonary lymphoma and nine control subjects. Gene rearrangement analysis using polymerase chain reaction (PCR) technique was performed on alveolar lymphocytes recovered by BAL. RESULTS: Analysis of the immunoglobulin heavy chain gene rearrangement showed a predominant clonal alveolar lymphocyte population in six of seven patients while all control subjects showed germline pattern. CONCLUSIONS: Gene rearrangement analysis by PCR of alveolar lymphocytes would appear to be sensitive in patients with B-cell pulmonary NHL (six of seven patients) and specific (zero of nine in the control group). This simple test should be added only in the analysis of cells recovered by BAL in patients with suspected primary and secondary B-cell pulmonary NHL.

Adult↗

Status of long-term asymptomatic HIV-1 infection correlates with viral load but not with virus replication properties and cell tropism. French ALT Study Group.

Qualitative and quantitative virological parameters were investigated in 68 long-term nonprogressor (LTNP) HIV-1-infected patients and 9 slow-progressor controls. LTNP status was defined as an asymptomatic HIV infection for at least 8 years, a stability of CD4+ cell counts > or =600 cells/mm3 and no antiretroviral therapy. LTNP subjects exhibited a lower median plasma RNA load than controls (6,000 vs. 40,000 RNA copies/ ml) despite a wide range of values in both groups. When compared to the control group, LTNP subjects also exhibited a lower virus isolation rate (65% vs. 100%) and cell-associated viremia (0.75 vs. 56.8 number of infectious unit/ million cells) when CD8-depleted CD4+ cells were tested. By contrast, no major differences in virus replication properties or cell tropism were observed. After 1 year of follow-up, no major overall changes in the virological parameters was observed in the 50 LTNP subjects evaluated at this time. However, nine patients had started antiretroviral therapy, and six others had increased viral loads. Despite the progression observed during the first year of follow-up, the hypothesis that there is a specific subgroup of LTNP patients who will not develop disease cannot be ruled out as yet.

CD4-Positive T-Lymphocytes↗

[Antiretroviral therapy and immune reconstitution].

The course of the HIV infection has been dramatically modified since the introduction of highly active antiretroviral therapy (HAART) combining inhibitors of the HIV-1 reverse transcriptase and protease. Despite some controversies about the extent to which the immune system can normalize, it is generally admitted nowadays that a numerical and functional CD4 cell profile more akin to asymptomatic HIV-infected individuals can be restored in AIDS patients and can confer host protection against opportunistic events. The best hallmark of such immune restoration is the massive decline in the mortality and morbidity related to AIDS that have been registered in all industrialized countries. These changes involve a recirculation of mature peripheral T cells, a regeneration of naive T cells from thymic origin and a restoration of memory CD4 T cell réactivities. Although these recent advances warrant increased optimism, HAART by reducing the virus burden is unable to restore immunity against HIV itself, except when introduced at the very early stage after virus inoculation. The single condition required for immune reconstitution is an efficient and durable inhibition of virus replication. These positive effects can be obtained at late stages of the disease even when the patients have been heavily pre-treated. They also demonstrate that HIV does not definitively alter the lymphoid tissues nor the immune defenses, even aller years of infection and severe immune suppression, except for HIV-specific CD4 T helper cells.

CD4 Lymphocyte Count↗

[Deficiency of the CD3-TCR signal pathway in three patients with idiopathic CD4+ lymphocytopenia].

Idiopathic CD4+ lymphocytopenia (ICL) is a rare syndrome affecting adults and defined by a stable loss of CD4+ T cells in the absence of any known cause of immune deficiency. Defective T-cell proliferations to mitogens and antigens have been described in some of such patients displaying clinical signs of immune deficiency such as opportunistic infections. We investigated here the hypothesis that T-cell depletion and dysfunction could be due to biochemical defects of the CD3-TCR pathway in CD4+ and/or CD8+ subsets from three patients with severe stable ICL (below 150 CD4+ T cells/microliter) and opportunistic infections. Patient 1 had a general T lymphocytopenia, whereas patients 2 and 3 displayed a selective loss of CD4+ T cells. We observed in all patients a major reduction of the proliferative response to CD3-TCR stimulation that affected only the depleted T-cell subpopulation. Moreover, in two cases, impaired early biochemical events of the CD3-TCR pathway were detected. In patient 1 and 3, we found a defect (of distinct intensity) of CD3-induced protein tyrosine phosphorylation in CD4+ cells compared to control cells, whereas this process was normally induced in CD4+ T cells from patient 2. Taken together, this study reveals that the heterogeneity of the ICL syndrome was situated at the cellular level, and involved in two cases abnormalities of transducing molecules of the CD3-TCR pathway.

Aged↗

Effects of antiretroviral therapy on immune reconstitution.

CD4 cell counts in human immunodeficiency virus (HIV)-infected patients increase under effective highly active antiretroviral therapy (HAART). Similar kinetics of response is observed irrespective of the stage of infection in which HAART is initiated. An early rise in memory cells is followed by a gradual and continual rise in naive cells, which reflects ongoing thymic production and these cells exhibit rediversification of the CD4 T cell repertoire damaged during HIV-1 infection. Studies in patients receiving HAART indicate that the responsiveness of memory CD4 T cells to opportunistic pathogens is restored. Although response to rare antigens or HIV-1 is generally not preserved in patients initiating HAART during established infection, the ability to detect Th1 response in vitro indicates that antigen-specific cells are not completely depleted in many cases. Strong response of tetanus toxoid-specific cells after administration of tetanus toxoid vaccine and strong HIV-1 p24-specific response after the re-exposure to viral antigen because of treatment interruption have been observed in the context of effective therapy initiated during advanced infection. These findings suggest that long-term immune recovery is feasible when HAART is given during chronic infection and might require immune intervention in addition to stable virus control.

Anti-HIV Agents↗

Cytotoxic T-cell responses to HIV-1 reverse transcriptase, integrase and protease.

OBJECTIVES: To determine immunodominant regions and new epitopes for cytotoxic T cells (CTL) directed against the HIV-1 pol products reverse transcriptase (RT), integrase and protease in a large cohort of patients at different stages of disease. DESIGN AND METHODS: Cross-sectional analysis of 98 patients from the French IMMUNOCO cohort (CD4 counts: 125-1050 x 10(6) cells/l), monitored for CTL recognition of HIV-1 pol products using recombinant vaccinia virus constructs and synthetic peptides. RESULTS: Memory CTL responses against HIV-1 pol products were detected in 78% of all patients whatever the stage of disease. RT was more immunogenic (81%, 30 out of 37 patients) than integrase and protease (51% and 24%, respectively). CTL recognition of RT was more frequent against Pol amino acids 310-460 (61%, 11 out of 18 patients) than against the other three portions (Pol 168-310, Pol 450-600, Pol 590-728) in patients with CD4 counts > 400 x 10(6)/l, whereas in patients at advanced stages no prominent differences were observed. Two new clusters of antigenic regions were found in the NH2 segment: three epitopes between amino-acids Pol 200 and 217 and four epitopes between amino-acids Pol 346 and 387, using five different HLA-restricting elements. A new cluster of three conserved epitopes was found in the COOH segment of RT. CONCLUSIONS: This study shows that memory CTL responses against HIV-1 RT, integrase and protease are detectable in most patients at different stages of disease. The capacity of CTL to recognize simultaneously clusters of epitopes may become important for the immune control to reinforce antiretroviral drug efficiency.

Cohort Studies↗

Primary Th1 cell immunization against HIVgp160 in SCID-hu mice coengrafted with peripheral blood lymphocytes and skin.

SCID-hu mouse models are of interest in the pathologic investigation of HIV infection, but obtaining a T cell response in SCID-hu-PBL mice is still controversial. We have developed a SCID model by engrafting human skin and autologous PBLs from HIV-seronegative individuals. The study describes the ability of this human-mouse chimera to generate in vivo a primary T lymphocyte response against HIV Ag. The injection of human autologous PBLs was performed 4 to 5 wk after the skin engraftment. Two weeks after injection of PBLs, chimeric mice were immunized with recombinant canary pox virus expressing HIV-1 LAIgp160 (vCP-LAIgp160) and supplemented or not with rIL-2. Intradermal vCP-LAIgp160 injection induced an intradermal perivascular human lymphocytic infiltrate and an epidermic network of CD1a+, CD80+, and CD86+ cells. We derived CD4+ T cell lines (STLs) from the human skin graft of immunized mice, showing that STLs mediated an MHC class II-restricted cytolytic activity directed against HIV-LAIgp160 Ags. Cytokine gene expression in both human skin cells and in STLs showed a predominance of IL-2, IFN-gamma, and IL-12 transcripts. Finally, the T cell repertoire analysis using the immunoscope technique showed a very limited CDR3 length polymorphism in the skin infiltrating lymphocytes suggesting an Ag-specific repertoire. The ability to induce a primary Th1 cell response in vivo affords a useful preclinical model for testing vaccine strategies.

Adoptive Transfer↗

HIV-specific T cell cytotoxicity mediated by RANTES via the chemokine receptor CCR3.

CC chemokines produced by CD8(+) T cells are known to act as HIV-suppressive factors. We studied the possible role of these chemokines in HIV-1-specific killing of target cells. We found that the activity of cytotoxic T lymphocytes (CTLs) in CTL lines or freshly isolated peripheral blood mononuclear cells from HIV-1-infected individuals is markedly enhanced by RANTES (regulated on activation, normal T cell expressed and secreted) and virtually abolished by an antibody neutralizing RANTES or the RANTES receptor antagonist RANTES(9-68). Lysis was mediated by CD8(+) major histocompatibility complex class I-restricted T cells and was obtained with target cells expressing epitopes of the HIV-1LAI proteins Gag, Pol, Env, and Nef. The cytolytic activity observed in the presence or absence of added RANTES could be abolished by pretreatment of the CTLs with pertussis toxin, indicating that the effect is mediated by a G protein-coupled receptor. The chemokines monocyte chemotactic protein (MCP)-3, MCP-4, and eotaxin acted like RANTES, whereas macrophage inflammatory protein (MIP)-1alpha, MIP-1beta, MCP-1, and stromal cell-derived factor 1 were inactive, suggesting a role for the eotaxin receptor, CCR3, and ruling out the involvement of CCR1, CCR2, CCR5, and CXCR4. CTL activity was abrogated by an antibody that blocks CCR3, further indicating that specific lysis is triggered via this chemokine receptor. These observations reveal a novel mechanism for the induction of HIV-1-specific cytotoxicity that depends on RANTES acting via CCR3.

Cell Line↗

Long-lasting recovery in CD4 T-cell function and viral-load reduction after highly active antiretroviral therapy in advanced HIV-1 disease.

BACKGROUND: Highly active antiretroviral therapy (HAART) decreases viral load and increases CD4 T-cell counts in patients with advanced HIV-1 infection. Whether HAART can improve CD4 T-cell function, and the biological characteristics affecting immune reconstitution, remain unclear. We undertook an open prospective pilot study to address these issues. Both treatment-naïve and previously treated patients were included. METHODS: 20 patients (seven naïve, 13 previously treated) were treated with one protease inhibitor and two reverse-transcriptase inhibitors and followed up for 12 months. We measured CD4-cell proliferation in response to cytomegalovirus and tuberculin antigens and counted subsets of CD4 cells at baseline and months 1, 3, 6, 9, and 12. Patients who had no antigen-specific reactivity at baseline but developed it while receiving HAART were classified as immunological responders. FINDINGS: Four patients had antigen-specific reactivity at baseline compared with 14 at month 12 (p <0.001). Between month 3 and month 12 viral load fell by a median of 1.5 log copies/mL from baseline (4.6 log copies/mL) and CD4-cell count increased by a median of 63/microL (from 93/microL). Ten patients (six of seven naïve, four of 13 previously treated) were immunological responders. They differed significantly from the ten non-responders in that their viral-load reduction was sustained for 12 months, the increase in CD4 count was greater, and they showed an early increase in memory CD4 T cells with an increase of naïve T cells. INTERPRETATION: HAART can induce sustained recovery of CD4 T-cell reactivity against opportunistic pathogens in severely immunosuppressed patients. This recovery depends not on baseline values but on the amplitude and duration of viral-load reduction and the increase of memory CD4 T cells.

Adult↗