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P Corbeau

Publications and source records attributed to P Corbeau.

At least 19 recordsLinked to original sources

Rare occurrence of CD30+ circulating cells in patients with cutaneous CD30+ anaplastic large cell lymphoma: a study of nine patients.

BACKGROUND: The presence of a significant percentage of circulating atypical lymphocytes in peripheral blood has already been demonstrated in systemic CD30+ anaplastic large cell lymphoma (ALCL), which implies that a leukaemic component may be present in this subset of lymphomas. However, no similar data are available for the cutaneous counterpart of this particular lymphoproliferation. OBJECTIVES: To assess the presence of atypical cells, CD30+ lymphocytes and of a dominant T-cell clone in peripheral blood in a series of patients with cutaneous CD30+ ALCL. MATERIALS AND METHODS: Nine patients with either primary (four) or secondary (five) cutaneous CD4+ CD30+ ALCL were selected. The percentage of CD30+ CD4+ lymphocytes among peripheral blood mononuclear cells (PBMC) was determined by flow cytometry and the presence of a dominant circulating T-cell clone was assessed by polymerase chain reaction targeting the T-cell receptor gamma chain. A control group composed of apparently healthy individuals was similarly studied at the same time. RESULTS: The mean percentage of CD30+ cells in PBMC was slightly higher in patients than in controls (3.9% vs. 2.7%) but the difference was not statistically significant. Only two patients displayed more than 5% CD30+ cells, both of whom had a minor tumour burden. A dominant circulating T-cell clone was detected in only three cases, including these two latter patients. CONCLUSIONS: The occurrence of a significant percentage of CD30+ CD4+ circulating cells is rare in active cutaneous CD30+ ALCL, either primary or secondary. This percentage is not related to the apparent skin tumour burden but a significant figure appeared to be correlated with the detection of a dominant T-cell clone in peripheral blood. Overall, these data show that, unlike mycosis fungoides, peripheral blood involvement seems infrequent in cutaneous CD30+ ALCL. The hypothesis that a high percentage of CD30+ circulating cells might be related to the presence of a cryptic systemic disease cannot be ruled out.

Adult↗

CD4 T cell surface CCR5 density as a host factor in HIV-1 disease progression.

OBJECTIVE AND DESIGN: We have recently shown that the number of CCR5 molecules at the surface of peripheral blood CD4 T cells (CCR5 density) correlates with the viral RNA plasma level in HIV-1-infected individuals. As viral load is a strong predictor of outcome in HIV infection, the present study examines the correlation between CCR5 density and HIV-1 disease progression. METHODS: Using a quantitative flow cytometry assay, we measured CCR5 density in HIV-1-infected adults and control healthy volunteers. The CCR5 genotype (presence of a Delta 32 allele) was also determined. RESULTS: CCR5 density was stable over time on non-activated, HLA-DR(-)CD4 T cells of infected individuals. In a study cohort of 25 patients, asymptomatic and non-treated, we observed a correlation between CCR5 density on HLA-DR(-)CD4 T cells and the CD4 T cell slope (P = 0.026), which was independent of the presence or absence of the Delta 32CCR5 deletion. In particular, slow progressors expressed lower CCR5 densities than non-slow progressors (P = 0.004) and non-infected control subjects (P = 0.002). CONCLUSION: These results are compatible with the hypothesis that CCR5 density, which is a key factor of HIV-1 infectability, determines in-vivo HIV production, and thereby the rate of CD4 cell decline. Consequently, CCR5 density quantitation could be a new valuable prognostic tool in HIV-1 infection. Moreover, these data emphasize the therapeutic potential of treatments that reduce functional CCR5 density.

Adult↗

CD4+ T cell surface CCR5 density as a determining factor of virus load in persons infected with human immunodeficiency virus type 1.

The intensity of expression of the chemokine receptor CCR5 is involved in in vitro cell infectability by human immunodeficiency virus (HIV)-1 R5 isolates. Because CCR5 expression varies among individuals, the hypothesis that this expression could determine virus load in HIV-1-infected persons was tested. The mean number of CCR5 molecules per cell was measured on peripheral blood CD4+ T lymphocytes (CCR5 density) from HIV-1-infected, asymptomatic, nontreated adults. There was a strong correlation between HIV RNA plasma level and CCR5 density (P=.009) that was independent of cell activation and was not due to an HIV-induced CCR5 up-regulation. These data are compatible with the hypothesis that CCR5 density is a key factor governing cell infectability and in vivo virus production and explain the protective effect of the Delta32CCR5 deletion, which results in low CCR5 expression. CCR5 density might be of critical predictive value in HIV infection.

Acquired Immunodeficiency Syndrome↗

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Journal Article↗

Anti-HIV effects of HIV vectors.

We have recently developed an HIV-1 packaging cell line, psi 422, as an improved tool for anti-HIV gene therapy. After stable transfection with an HIV-1 or HIV-2 vector, psi 422 has been shown to synthesize virions able to transduce CD4+ T cells and macrophages. We now report that HIV vectors per se, in the absence of antiviral genes, inhibit HIV infection of transduced cells. This antiviral effect was shown to be due, at least in part, to a TAR and RRE decoy effect. These data highlight further advantages of HIV-derived gene delivery systems for HIV therapy, in addition to CD4 cell targeting and the ability to transduce nondividing cells.

Anti-HIV Agents↗

Transduction of human macrophages using a stable HIV-1/HIV-2-derived gene delivery system.

We have previously established a stable HIV-1 packaging cell line, psi 422, which yielded high titers of an HIV-1 vector capable of efficiently transducing CD4+ cells. In order to increase the safety of this gene delivery system, we have now replaced the HIV-1 vector with an HIV-2 vector to abolish any risk of homologous recombination between the packaging cells and the vector. The HIV-2 vector was also modified by insertion of a cis-acting constitutive transport element which confers Rev independence. The supernatant of psi 422 cells stably transfected with this new vector was capable of transducing CD4+ cells with a titer of 10(4) transducing units per milliliter. This result shows that cross-packaging of HIV-2 vectors with the HIV-1 packaging cells is quite efficient. Using this new stable HIV-1/HIV-2 gene delivery system, we were able to transduce human monocyte-derived primary macrophages, which are refractory to murine retrovirus-mediated transduction. The availability of a stable HIV-based gene delivery system for macrophages, a key target cell in HIV infection; is an important advance in gene therapy for AIDS.

Acquired Immunodeficiency Syndrome↗

Efficient gene transfer by a human immunodeficiency virus type 1 (HIV-1)-derived vector utilizing a stable HIV packaging cell line.

By transfecting fibroblast cells with an HIV-1-MN molecular clone with a deletion of the major packaging sequence, we have developed a stable HIV-1 packaging cell line, psi 422, psi 422 cells form syncytia with CD4-positive cells, correctly express HIV-1 structural proteins, and produce a large amount of mature particles with normal reverse transcriptase activity. Yet these particles, in which RNA was not detected by reverse transcriptase-PCR, are not infectious. When stably transfected with an HIV-1-based retroviral vector, the psi 422 cell line produces virions capable of transducing CD4-positive cells with high efficiency (up to 10(5) cells per ml). The availability of this stable noninfectious HIV-1 packaging cell line capable of generating high-titer HIV-1 vectors represents a new step toward the use of an HIV-1 delivery system in gene therapy.

Base Sequence↗

Development of HIV vectors for anti-HIV gene therapy.

Current gene therapy protocols for HIV infection use transfection or murine retrovirus mediated transfer of antiviral genes into CD4+ T cells or CD34+ progenitor cells ex vivo, followed by infusion of the gene altered cells into autologous or syngeneic/allogeneic recipients. While these studies are essential for safety and feasibility testing, several limitations remain: long-term reconstitution of the immune system is not effected for lack of access to the macrophage reservoir or the pluripotent stem cell population, which is usually quiescent, and ex vivo manipulation of the target cells will be too expensive and impractical for global application. In these regards, the lentivirus-specific biologic properties of the HIVs, which underlie their pathogenetic mechanisms, are also advantageous as vectors for gene therapy. The ability of HIV to specifically target CD4+ cells, as well as non-cycling cells, makes it a promising candidate for in vivo gene transfer vector on one hand, and for transduction of non-cycling stem cells on the other. Here we report the use of replication-defective vectors and stable vector packaging cell lines derived from both HIV-1 and HIV-2. Both HIV envelopes and vesicular stomatitis virus glycoprotein G were effective in mediating high-titer gene transfer, and an HIV-2 vector could be cross-packaged by HIV-1. Both HIV-1 and HIV-2 vectors were able to transduce primary human macrophages, a property not shared by murine retroviruses. Vesicular stomatitis virus glycoprotein G-pseudotyped HIV vectors have the potential to mediate gene transfer into non-cycling hematopoietic stem cells. If so, HIV or other lentivirus-based vectors will have applications beyond HIV infection.

Acquired Immunodeficiency Syndrome↗

Jacalin, a lectin with anti-HIV-1 properties, and HIV-1 gp120 envelope protein interact with distinct regions of the CD4 molecule.

Jacalin is a multimeric plant lectin able to interact with the lymphocyte cell-surface molecule CD4, a known receptor for the human immunodeficiency virus type 1 (HIV-1). Moreover, jacalin is able to block HIV-1 infection of CD4+ lymphoblastoid cells. Here we studied whether jacalin prevents HIV-1 gp120-CD4 interactions. We found (i) that jacalin did not inhibit HIV-1 Lai-induced syncytium formation that requires gp120-CD4 interactions; (ii) that jacalin prevented neither rgp120 binding to cell-surface CD4 nor sCD4 binding to viral envelope proteins expressed at the surface of HIV-1-infected lymphoblastoid cells; (iii) that jacalin did not compete for binding to CD4 with anti-CD4 mAb specific for the CDR2- or CDR3-like regions of the D1 domain of CD4; (iv) that jacalin did not bind a recombinant soluble molecule containing the D1/D2 domains of CD4; and, (iv) that jacalin binding to CD4 is inhibited by sugars known to interact with the lectinic-site of jacalin. These data have implications for the understanding of the mechanism by which jacalin blocks HIV-1 infection of CD4+ cells.

Acetylgalactosamine↗

An antibody that binds the immunoglobulin CDR3-like region of the CD4 molecule inhibits provirus transcription in HIV-infected T cells.

We used the polymerase chain reaction (PCR) to study which step(s) of the human immunodeficiency virus type 1 (HIV-1) life cycle may be blocked following treatment of HIV-exposed CEM cells with 13B8-2, a monoclonal antibody (mAb) specific for the immunoglobulin (Ig) CDR3-like region of the CD4 molecule and able to inhibit the productive infection of CEM cells by HIV-1. The presence of viral RNA was investigated and found in 13B8-2 mAb-treated CEM cells 30 min after viral exposure; the full-length viral DNA was found at 24 h post-infection. We also found integrated forms of viral DNA at 24 h post-infection. However, the integrated provirus was transcriptionally inactive in 13B8-2 mAb-treated cells, as demonstrated by the absence of spliced HIV-1 mRNA. The lack of HIV transcription under 13B8-2 mAb treatment was confirmed by chloramphenicol acetyltransferase (CAT) assay. We conclude that the inhibition of viral gene transcription accounts for the lack of progeny virions in culture supernatants of cells treated with this anti-CD4 mAb. We also demonstrate that 13B8-2 blocks viral production from chronically infected cells and restores CD4 cell-surface expression on CEM cells containing an integrated provirus(es). We found this effect to be reversible. Moreover, we demonstrate that 13B8-2 mAb treatment is efficient on different HIV-1 and HIV-2 virus isolates. These results may have major implications for the treatment of AIDS.

Antibodies, Monoclonal↗

Ig CDR3-like region of the CD4 molecule is involved in HIV-induced syncytia formation but not in viral entry.

The HIV1 envelope glycoprotein gp120 binding site has been previously mapped by genetic studies to the CDR2-like region of the first domain of the CD4 molecule. mAb reactive with epitopes linked to this region (e.g., OKT4A) inhibit both HIV entry into CD4-positive cells and syncytia formation. A second area of this domain, the CDR3-like region, has been shown to be involved in gp120-CD4 interactions, but its role remained so far unclear. We show here that a mAb specific for the CDR3-like region of the CD4 receptor, 13B8-2, actually blocks soluble gp120 binding to CD4, inhibits HIV-induced cell-cell fusion, and prevents viral production by infected cells. However, this mAb fails to inhibit the binding of viral particles to cell-surface CD4 and their entry into CD4-positive cells. These results strongly suggest i) that soluble gp120 and virion-anchored gp120 bind CD4 in distinct manners, ii) that gp120-CD4 interactions required for viral entry and syncytia formation are different, and iii) that mAb binding to the CDR3-like region of the first domain of CD4 affects a post-entry step of the HIV replicative cycle.

Antibodies, Monoclonal↗

Inhibition of human immunodeficiency virus infection by the lectin jacalin and by a derived peptide showing a sequence similarity with gp120.

Jacalin is a plant lectin known to specifically induce the proliferation of CD4+ T lymphocytes in human. We demonstrate here that jacalin completely blocks human immunodeficiency virus type 1 (HIV-1) in vitro infection of lymphoid cells. Jacalin does not bind the viral envelope glycoprotein gp120. Besides other T cell surface molecules, it interacts with CD4, the high-affinity receptor to HIV. Binding of jacalin to CD4 does not prevent gp120-CD4 interaction and does not inhibit virus binding and syncytia formation. The anti-HIV effect of the native lectin can be reproduced by its separated alpha-subunits. More importantly, we have defined in the alpha-chain of jacalin a 14-amino acid sequence which shows high similarities with a peptide of the second conserved domain of gp120. A synthetic peptide corresponding to this similar stretch also exerts a potent anti-HIV effect. This peptide is not mitogenic for peripheral blood mononuclear cells and does not inhibit anti-CD3-induced lymphocyte proliferation. These results make jacalin alpha chain-derived peptide a potentially valuable therapeutic agent for acquired immunodeficiency syndrome.

Amino Acid Sequence↗

Comparative humoral responses to human immunodeficiency virus type 1-p24gag linear B-cell epitopes among individuals showing atypical western immunoblotting reactions and implications for diagnosis.

Serum specimens from 25 individuals with an isolated human immunodeficiency virus type 1 (HIV-1) core antigen reactivity in a Western immunoblot test were examined for their reactivities with HIV-1 virions, control cellular antigens, HIV-1-Bru p24gag recombinant protein (p24gag), and a panel of 22 p24gag-derived peptides. The results were as follows: (i) serum specimens from eight HIV-1-uninfected subjects did bind to virions but failed to bind to p24gag; (ii) sera from 13 HIV-1-uninfected subjects and from one HIV-2-infected patient reacted with HIV-1 virions and p24gag but failed to bind to any of the peptides expressing major p24gag epitopes, and (iii) 3 serum specimens obtained from one neonate carrying anti-HIV-1 maternal antibody and from two HIV-1-infected subjects who had seroconverted during the study reacted with HIV-1 virions, p24gag, and one or more peptides containing the major p24gag epitopes. Our data suggest that the combination of p24gag and appropriate peptides could be useful for resolution when atypical Western immunoblot results are encountered.

Amino Acid Sequence↗

Anti-HLA antigen class I heavy chain monoclonal antibodies inhibit human immunodeficiency virus production by peripheral blood mononuclear cells.

We have examined the capacity of monoclonal antibodies (mAb) specific for HLA class I heavy chain to interfere with the human immunodeficiency virus (HIV) replicative cycle in human T cells. Among six anti-HLA class I heavy chain-specific mAb assayed, two mAb, RL4-24-6 and W6/32, were able to delay HIV1 and HIV2 cytopathic effect on MT4 cells, a human T cell leukemia virus type I (HTLVI) immortalized T cell line, mAb RL4-24-6, chosen for further studies, also inhibited HIV1 production by peripheral blood mononuclear cells (PBMC), and this inhibition was dose dependent. However, no effect was observed when mAb treatment was performed with either the CEM or Jurkat T cell lines. Our investigation of how RL4-24-6 interferes with the HIV replicative cycle revealed that: (a) incubation of PBMC with RL4-24-6 prior to HIV exposure did not change the susceptibility of these cells to HIV infection, (b) syncytia formation between CD4+ MT4 cells and HIV chronically infected PBMC was not affected by RL4-24-6 and (c) treatment of freshly infected PBMC with RL4-24-6, however, inhibited viral production. These data, together with those we previously reported using anti-beta 2-microglobulin (beta 2m) mAb, suggest that anti-HLA class I/beta 2m complex mAb can modify an early step of the HIV replicative cycle without affecting the viral entry.

Antibodies, Monoclonal↗

Surface CD4 density remains constant on lymphocytes of HIV-infected patients in the progression of disease.

In an attempt to question the influence of circulating virus, soluble gp120 or CD4 self-reacting antibodies upon results of CD4+ T-cell immunophenotyping in AIDS patients, five anti-CD4 mAb defining several epitopes of the V1 and V2 domains of the CD4 molecule were used to analyse the epitopic density of CD4 on lymphocytes of seropositive patients taken at stages II, III and IV of HIV infection, according to the Centers for Disease Control (CDC, Atlanta) classification. Our results demonstrate that each CD4 epitopic density measured on circulating lymphocytes remains constant at a mean level of 46,000 epitopes per cell whatever the stage of the disease and whatever the serum p25 concentration. These data provide evidence that antibody accessibility to several CD4 epitopes is not altered by putative interactions between CD4 molecules and circulating virus, soluble gp120 or anti-CD4 autoantibodies. If such binding events, as expected, do occur in vivo, they are of too low a magnitude to influence the immunophenotyping. Furthermore, we show that mAb specific for different epitopes in the V1 and V2 domains of the CD4 molecule can be used interchangeably for the biological followup of the CD4+ cell population in blood samples of HIV-infected patients.

Acquired Immunodeficiency Syndrome↗

Human immunodeficiency virus type 1 infection of U937 cells promotes cell differentiation and a new pathway of viral assembly.

The differentiation of U937 monoblastoid cells after human immunodeficiency virus type 1 (HIV-1) infection was studied using the following approaches: reverse transcriptase activity measurement, immunofluorescence labeling, and electron microscopy. For comparison, uninfected U937 cells were induced to differentiate from monocyte to macrophage by phorbol 12-myristate 13-acetate (PMA) or retinoic acid (RA) treatment. Both infected and drug-treated cells showed important and similar ultrastructural cell modifications, with a phenotype that decreased in monocyte specificity and increased in that of macrophages. When U937 cells were induced to differentiate upon HIV-1 infection, a very different pathway of viral production was observed. Production and accumulation of the virus in a vacuolar compartment of intracytoplasmic origin and escape to the antiviral lysosomal activity could explain virus persistence. This makes the cell system a good model with which to study the relationship between HIV-1 production and cell differentiation.

Antigens, CD↗

An early postinfection signal mediated by monoclonal anti-beta 2 microglobulin antibody is responsible for delayed production of human immunodeficiency virus type 1 in peripheral blood mononuclear cells.

We recently found (C. Devaux, J. Boucraut, G. Poirier, P. Corbeau, F. Rey, M. Benkirane, B. Perarneau, F. Kourilsky, and J.C. Chermann, submitted for publication) a latency in the human immunodeficiency virus (HIV) type 1 cytopathic effect in the human T-cell lymphotropic virus type I immortalized T-cell line MT4 that was mediated by anti-beta 2 microglobulin (beta 2m) monoclonal antibodies (MAb). Here we describe a delay in viral particle production in peripheral blood mononuclear cells (PBMC) that was mediated by three (B1-1G6, B2-62-2, and HC11-151-1) of four anti-beta 2m MAb tested, the nonefficient MAb (C21-48A) being specific for an epitope on beta 2m that was masked by association with the human leukocyte antigen class I heavy chain. Experiments were designed to determine the mechanism of interference. PBMC incubated with anti-beta 2m MAb before viral exposure were not protected from HIV infection. In addition, anti-beta 2m MAb were not efficient in preventing syncytium formation between HIV-infected PBMC and CD4-positive MT4 cells. In contrast, anti-beta 2m MAb treatment of freshly infected PBMC significantly delayed HIV production in these cells. The window of cell sensitivity to anti-beta 2m MAb treatment took place during a very early post-HIV-binding stage. The possible mechanism of anti-beta 2m MAb action is discussed.

Acquired Immunodeficiency Syndrome↗