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V Colizzi

Publications and source records attributed to V Colizzi.

At least 37 records · Page 2Linked to original sources

Age-related propensity to peripheral expansion of Vgamma3+ gammadelta+ T lymphocytes after irradiation and bone marrow transplantation.

The age-related decline in T cell functions is generally considered to be due to changes in the responding alphabeta T cell populations as a result of impairment of T cell differentiation in the thymus. T cells bearing the gammadelta TCR are normally a minor subset of circulating T cells, but often the major T cell type among lymphocytes in epithelial tissues. In this paper we show that gammadelta T cells are expanded in lymph nodes of irradiated mice after syngenic bone marrow transplantation. Interestingly, these gammadelta T cells express mainly the Vgamma3 TCR, which is characteristic of dendritic epithelial T cells that can develop in athymic nude mice and may recognize self antigens. Since the peripheral expansion of Vgamma3 T lymphocytes is closely related to bone marrow age, these observations indicate that the age-related propensity to extrathymic development of Vgamma3+ gammadelta+ T lymphocytes is mainly due to stem cell dysregulation in aging. This phenomenon may contribute to T cell impairment and to the increased natural cytotoxic activity of lymphoid cells in aged mice.

Aging↗

Possible protective and pathogenic roles of gamma delta T lymphocytes in HIV-infections (Review).

alpha beta and gamma delta T lymphocytes are largely responsible for the specificity of coordinated immune responses that are of crucial importance for protection from exogenous invaders and elimination of endogenous aberrations. One of the prominent distinguishing characteristics of primate gamma delta T lymphocytes is that most of their T cell receptors for antigen (gamma delta TCRs) are, unlike alpha beta TCRs, capable of recognizing nonpeptidic antigens in an MHC-unrestricted manner. Another interesting feature is that the gamma delta T cell subpopulation displays profound qualitative and quantitative changes in individuals with various infectious diseases. For example, the most frequent human peripheral blood gamma delta T cell subset expressing Vgamma9Vdelta2 TCRs is functionally disabled and numerically decreased in some HIV-infected persons. The nonresponsiveness of Vgamma9Vdelta2 T cells is accompanied by their decreased IFNç and TNFá production. The overall level of gamma T cell activation at different stages of HIV-infection may be clinically relevant. At an initial stage of HIV-infection, the extremely potent antiviral cytotoxic activities of Vgamma9Vdelta2 T cells may limit the viral spread. At later stages of disease, Vgamma9Vdelta2 T cell dysfunction may contribute to the loss of resistance to opportunistic pathogens (such as atypical mycobacteria) and neoplasms (e.g., lymphomas) frequently associated with HIV-infections. Also, it is possible that chronic stimulation of gamma delta T cells may result in immunopathology. In particular, the massive immunologic activation that appears to be the major contributing element of AIDS immunopathogenesis could be, at least in part, driven by gamma delta T cells overstimulated by repetitive exposures to HIV.

HIV Infections↗

CD94/NKG2 inhibitory receptor complex modulates both anti-viral and anti-tumoral responses of polyclonal phosphoantigen-reactive V gamma 9V delta 2 T lymphocytes.

Viral, bacterial, protozoal, and cancer-associated Ags elicit strong responses in human gammadelta T lymphocytes. The majority of these cells in the peripheral blood express the Vgamma9Vdelta2-encoded TCR and recognize nonpeptidic phosphoantigens without an apparent MHC restriction. We have shown that Vgamma9Vdelta2 T cells express the inhibitory CD94/NKG2 receptor for HLA class I molecules. The anti-CD94 mAb inhibits 1) the Vgamma9Vdelta2 T cell proliferation in response mycobacterial phosphoantigens and 2) the HIV-induced Vgamma9Vdelta2 T cell expansion. Vgamma9Vdelta2 T cells stimulated with nonpeptidic mycobacterial antigens produce IFN-gamma and TNF-alpha. Signaling through the CD94/NKG2 receptor interferes with the synthesis of these cytokines. The CD94/HLA class I interaction is also involved in the cytotoxic activity of Vgamma9Vdelta2 T cells. The Vgamma9Vdelta2 T cell regulation through the CD94 receptor may be important for the potentially dual function in innate immunity, i.e., 1) NK-like and 2) TCR ligand-induced cytolytic activities.

Antigens, Bacterial↗

Mycobacterium tuberculosis enhances iNOS mRNA expression and HIV replication in human astrocytoma cells.

The aim of this study was to investigate whether Mycobacterium tuberculosis (MTB) infection affects human immunodeficiency virus (HIV) replication in T67 human astrocytoma cells and whether HIV and MTB infections induce iNOS mRNA expression in T67 cells. T67 cells were susceptible to both HIVLai and MTB infections, and MTB was able to increase HIV infection in T67 cells, as demonstrated by a marked increase in p24 release. Furthermore, both HIV and MTB infections strongly induced inducible nitric oxide synthase (iNOS) mRNA expression, as verified by RT-PCR. These findings suggest that HIV and MTB-induced iNOS expression of astroglial cells may be involved in the neuronal damage associated with HIV infection, particularly in the presence of opportunistic infections such as tuberculosis.

Astrocytoma↗

Three cell subsets are required for the transfer of delayed-type hypersensitivity reaction by antigen-specific T cell lines.

Antigen (trinitrochlorobenzene)-specific T cell lines were obtained by repeated stimulation of lymph node cells from immune mice with antigen in vitro. These T cell lines, consisting of more than 90% CD4+ Vbeta8.2+ and 6 to 9% gammadelta+ T lymphocytes, transfer contact sensitivity (CS) locally when injected at the same site as the challenge antigen, but fail to mediate a systemic passive transfer when injected i.v. Injection of T cell lines together with spleen cells from mice immunized 1 day beforehand (1-day cells) allowed a successful, specific systemic transfer of CS. Phenotypic analysis showed that the 1-day immune cell was alphabeta+, gammadelta-, sIg-, CD3+, CD4-, CD8-, CD5+, B220 (CD45R)+, Thy 1.2+. The effect of 1-day immune cells occurred through a mechanism involving IL-4, as 1-day immune cells failed to allow systemic transfer of CS by T cell lines in recipient mice treated with mAb to IL-4. These observations strongly indicate that three cell subsets are required for the systemic passive transfer of CS by T cell lines: alphabeta+ CD4+, gammadelta+, and a third cell subset, which is CD45R+, alphabeta+, CD3+, but double (CD4, CD8) negative.

Animals↗

Apoptosis of human monocytes/macrophages in Mycobacterium tuberculosis infection.

Tuberculosis (TB) is still a major health problem, both as a single disease entity and as a cofactor in AIDS. The interaction between macrophage and Mycobacterium tuberculosis (MTB) is a critical step in the establishment of an early chronic infection. This study analyses the capacity of MTB to induce apoptosis in cells obtained by broncho-alveolar lavage (BAL) from patients with reactive pulmonary tuberculosis and from AIDS patients with disseminated pulmonary tuberculosis. Apoptosis was increased three-fold in BAL cells obtained from patients with pulmonary tuberculosis and even more markedly in alveolar macrophages of MTB-infected AIDS patients, compared with controls. Apoptosis was analysed and characterized by propidium iodide (PI) incorporation, terminal deoxy transferase (TDT)-mediated dUTP-biotin nick end labelling (TUNEL), and tissue transglutaminase (tTG) expression. The MTB-macrophage interaction was also investigated in vitro by infecting monocyte-derived macrophages (MDM) with MTB (virulent strain H37Rv). The induction of apoptosis by MTB required viable bacteria, was dose-dependent, and was restricted to H37Rv. Infection with either Mycobacterium avium complex (MAC) or HIV-1 and treatment with heat-killed MTB failed to induce apoptosis.

AIDS-Related Opportunistic Infections↗

gamma delta cells involved in contact sensitivity preferentially rearrange the Vgamma3 region and require interleukin-7.

Ptak and Askenase showed that both alphabeta and gammadelta cells are required for transfer of contact sensitivity (CS). This study confirms that day 4 immune cells depleted of gammadelta cells fail to transfer CS to trinitrochlorobenzene (TNP-Cl) systemically and demonstrates that administration of anti-gammadelta monoclonal antibodies (mAb) in vivo abolishes the CS reaction. Moreover, gammadelta cells accumulate at the antigen challenge site: these cells have the unusual phenotype CD8alpha+, CD8beta-, IL-4 R+ which we suggest is due to their state of activation. Following immunization with contact sensitizer on the skin, the absolute number of gammadelta cells increases in the regional lymph nodes with a peak at 4 days. Of the gammadelta cells, 80 %, both in the lymph nodes of TNP-Cl-immune mice and accumulating at the antigen challenge site are Vgamma3+. The gammadelta cells expressing Vgamma3, which is characteristic of dendritic epithelial T cells (DETC), obtained 4 days after sensitization, proliferate in response to interleukin (IL)-7, but only poorly to IL-2 and IL-4. They also respond to concanavalin A and immobilized anti-gammadelta mAb, but not to haptens or heat-shocked syngeneic spleen cells. Furthermore, injection of mice with mAb to IL-7 inhibits accumulation of Vgamma3+ cells both in the lymph nodes after skin sensitization and at the antigen-challenge site. Altogether, these results strongly support the view that DETC are related to, or the original source of, the gammadelta cells found in the lymph node after skin sensitization and at the site of challenge, and that IL-7 is implicated in these phenomena.

Animals↗

Gammadelta T cell activation or anergy during infections: the role of nonpeptidic TCR ligands and HLA class I molecules.

Vgamma9Vdelta2-encoded T cell receptors (TCR) expressed by most human peripheral blood gammadelta T cells mediate the recognition of nonpeptidic phosphoantigens from various pathogens without any known requirement for HLA molecules. Functionally mature Vgamma9Vdelta2 T cells display a potent natural killer (NK)-like cytotoxic activity, share with NK cells the expression of inhibitory receptors for HLA class I molecules, and release a plethora of cytokines, most notably interferon-gamma and tumor necrosis factor alpha. Hence, through local activation, the early recruitment and stimulation of Vgamma9Vdelta2 T cells may promote efficient anti-infectious immunity. However, a chronic overactivation of this T cell subset may result in immunopathology. The meeting held in St. Vincent, Val d'Aosta, Italy (symposium on gammadelta T cells in natural immunity to infections: a rationale for vaccine development organized by the World Foundation for AIDS Research and Prevention, the UNESCO, and the Italian National Research Council, December 2-4, 1996) focused on the importance of gammadelta T cell activation and anergy for the pathogenesis of tuberculosis, malaria, and HIV infections.

Antigens, Bacterial↗

The presence of antibodies against HIV peptides in the sera of alloimmune mice and thalassemic patients is due to a polyclonal activation mechanism.

This paper analyses the HIV-1 gp120 epitope specificity and activation mechanisms (i.e., polyclonal versus oligoclonal) of antibodies present in the sera of alloimmune mice and humans. Sera from CBA mice engrafted with C57BL/6 lymphoid cells significantly reacted against the gp120-derived peptide as 261-270, which shares high homology with the membrane-proximal domain of HLA class II beta-chains (HLA/ gp120) and against the HIV gp120 V3 loop-derived peptides DP32 (HIV-1 MN-derived as 302-334) and C53 (HIV-1 IIIB-derived as 304-318). The same sera also reacted against the HIV-unrelated peptide necdin. Moreover, sera from BALB/c mice injected with LPS presented antibodies reacting against both HIV-related and -unrelated peptides, suggesting that similar mechanisms are shared in alloimmune and LPS-treated mice. A similar analysis was then performed on the sera of patients affected with beta-thalassemia major, receiving at least 10 blood transfusions/year. In particular, 15 of 58 (26%) sera from HIV-uninfected thalassemic patients showed a significantly reactivity against the HLA/gp 120-derived peptides. Moreover, 22 of 58 (38%) sera from the same cohort showed a significant reactivity against DP32 peptide. This reactivity was related to a polyclonal activation mechanism since the DP32-reactive sera significantly bound a panel of HIV-unrelated peptides, as observed by testing 22 sera against necdin, 21 against HSP65 kDa, 21 against amyloid-1, and 17 against MAGE-1 peptides. Moreover, a significant increase of IgG concentration was also observed in all thalassemic sera, when compared to healthy controls, without regard to the anti-gp120 antibody reactivity. Taken together, these results indicate that (i) allogeneic stimuli may induce anti-gp120 antibodies in CBA and in 38% of polytransfused patients and (ii) this reactivity is related to a polyclonal activation mechanism but not to a heightened concentration of IgG.

Amyloid↗

Interferon antibodies in patients with infectious diseases. Anti-interferon antibodies.

Interferons (IFNs) are generally recognized as the most important therapeutic agent in some infectious diseases such as chronic hepatitis B and C. Since the early clinical trials it was documented that the therapeutic use of IFNs could be complicated by the development of antibodies able to neutralize or to bind to the IFN molecule. After several years of research it is now widely accepted that the presence of circulating anti-IFN antibodies may affect the response to IFN. Here we summarize what is currently know on the clinical significance of antibodies to IFN in IFN-treated viral diseases patients.

Antibodies↗

Phenotypic changes of monocytes induced by HIV-1 gp120 molecule and its fragments.

Several phenotypic and functional changes of monocytes (M phi) have been described in HIV-1+ subjects and AIDS patients. Some of these changes that are pertinent for immunopathogenesis of the disease may be induced by HIV-1 envelope glycoprotein 120 (gp120). In the present study the effect of recombinant full length gp120 (FLgp120) and its two fragments: rp120cd (aa 410-511) and rp120 (aa 446-511) on the expression of the surface molecules of M phi cultured in vitro was determined. The FLgp120 and rp120cd caused upregulation of CD14 and CD44. The rp120cd peptide significantly increased the expression of CD16 (Fc gamma receptor type III) and TNF receptor type II. In contrast, the rp120 downregulated HLA-DR, CD64 (Fc gamma RI), interferon gamma receptor and induced IL-10 production by M phi. This study indicates that gp120 molecule and its fragments may induce several phenotypic changes of M phi in particular the increased proportion of CD14+CD16+ cells that is observed in the blood of AIDS patients. These results provide further evidence for variable response of M phi to gp120 which may explain the variability of phenotypic changes and heterogeneity of M phi subsets seen in HIV-1 disease.

Cell Adhesion Molecules↗

Infection of human monocytes with Mycobacterium tuberculosis enhances human immunodeficiency virus type 1 replication and transmission to T cells.

Mycobacterium tuberculosis and human immunodeficiency virus type 1 (HIV-1) are virulent intracellular pathogens that invade and multiply within macrophages. The effect of M. tuberculosis on HIV-1 infection and replication was analyzed in vitro using human monocyte-derived macrophages (MDM) isolated from peripheral blood mononuclear cells by countercurrent centrifugal elutriation. Preinfection of MDM with M. tuberculosis followed by HIV-1 infection resulted in an increase in p24 release, reverse transcriptase activity, and infective virus production. In contrast, no increase in HIV-1 production was observed when MDM were infected with Mycobacterium avium complex or heat-killed M. tuberculosis. Coinfected MDM were potent stimulators of T cell proliferation, while HIV-1-infected MDM failed to present exogenous tuberculin to T cells. Furthermore, coinfected MDM showed an increased capacity to transmit HIV-1 to activated T cells. These results suggest that M. tuberculosis infection can both up-regulate HIV-1 infection and replication within MDM and increase the efficiency of virus transmission from infected MDM to T cells.

Cells, Cultured↗

Peripheral V gamma 9/V delta 2 T cell deletion and anergy to nonpeptidic mycobacterial antigens in asymptomatic HIV-1-infected persons.

Gamma delta T cells represent a minor population of human peripheral lymphocytes, the majority of them expressing the V delta 2/V gamma 9 TCR. Their accumulation in infectious disease lesions and their reactivity toward mycobacterial Ags suggest that V gamma 9/V delta 2 T cells play a role during infectious diseases. We have shown previously a significant expansion of the V delta 1 subset parallel to a dramatic decrease of the V delta 2 subset in PBMC from HIV-infected persons. To understand the mechanisms involved in the deletion of V delta 2 T cells, we analyzed their ability to respond in vitro to several V gamma 9/V delta 2 t cell-specific ligands. We observed that in 60% of asymptomatic HIV-infected persons, V delta 2 T cells exhibited a functional anergy to Daudi and to Mycobacterium tuberculosis stimulations. These observations were supported by the defective expansion of this subset to the recently described nonpeptidic phosphorylated Ag, TUBAg-1. Since V delta 2 responsiveness to mycobacterial Ags was shown to be normally dependent on IL-2 secretion by Th1-type CD4 T cells, the ability of IL-2 to restore V delta 2 T cells' responsiveness to TUBAg-1 was tested. V delta 2 T cell anergy persisted in spite of the presence of IL-2, and was frequently correlated with a defect in CD25 expression on stimulated V delta 2 T cells. Since V delta 2 anergy was associated with an in vivo depletion of this subset, we studied whether programmed cell death could be involved in this process, particularly because of their activated phenotype. Although peripheral V delta 2 T cells from some HIV-infected persons showed an increased susceptibility to spontaneous and activation-induced apoptosis, statistical comparison between HIV+ and HIV- donors indicated that there was no difference between both groups in the rate of V delta 2 apoptosis. Finally, V delta 2 complementarity-determining region 3 TCR analysis indicated that, in vivo, the remaining V delta 2 T cells were still polyclonal. All together these results suggest that the qualitative and quantitative alterations of the V delta 2 subset in the course of HIV infection are the consequence of a chronic antigenic stimulation, and raise the question of the contribution of a cellular ligand induced or modified by chronic HIV infection.

Antigens, Bacterial↗

Epitope specificity of anti-HIV antibodies in human and murine autoimmune diseases.

This article reports the HIV epitope specificity of antibodies present in the sera of HIV-negative patients with autoimmune diseases. Recombinant gp120 and a panel of synthetic peptides derived from the amino acid consensus sequences of either related (gp120, gp41, and p24) or unrelated (Mage-1, necdin, heat shock protein [65 kDa], and amyloid) HIV proteins were tested by a specific ELISA. The first set of experiments performed on four patients with Sjögren's syndrome (SjS) and four patients with systemic lupus erythematosus (SLE) revealed a significant anti-gp120 antibody reactivity in autoimmune patients when compared to healthy HIV-negative controls. Moreover, such binding could be almost completely inhibited by preincubation with free gp120. A significant anti-p24 reactivity was observed in 18 of 29 sera from SjS patients and in 13 of 25 sera from SLE patients, while anti-gp41 was observed only in 3 of 14 SjS and in 2 of 20 SLE-affected patients. Similar analyses were performed in the murine model of autoimmunity, showing that sera from MRL/lpr mice were able to bind all HIV-related peptides in an age-dependent manner. The analysis of a panel of HIV-unrelated peptides showed that SLE as well as MRL/lpr sera bind both HIV-related and unrelated peptides, while SjS sera failed to do so, revealing the polyclonal nature of the SLE and MRL/lpr repertoire and the oligoclonal reactivity of SjS sera. This is also supported by inhibition experiments, which showed that SLE, but not SjS, sera competitively inhibited the binding to HIV gp120 peptide of sera from autoimmune MRL/lpr mice. These results indicate that an overlapping polyclonal repertoire is present in both SLE and MRL/lpr sera, while the oligoclonal specificity of SjS antibodies may be related to a specific, nonpolyclonal, activation against putative retroviral antigens.

Amino Acid Sequence↗

Heat-shock protein expression on the membrane of T cells undergoing apoptosis.

Heat-shock proteins (hsp) represent a highly conserved family of proteins, normally localized in the cytoplasm and nucleus, whose expression is induced in situations involving cell stress. This paper reports the unusual translocation of hsp to the cell membrane of T cells undergoing apoptosis. We observed that glucocorticosteroid-induced thymocyte death is associated to the surface expression of hsp 60 and hsp 70 in a discrete fraction of apoptotic cells. hsp surface expression is closely related to a thymic subset of immature CD3low/- T cells. The expression of surface hsp 60 appears early after treatment with dexamethasone (3 hr) whereas the membrane expression of hsp 70 follows different kinetics and peaks later. Morphological analysis of the hsp+ apoptotic cells suggest that this subset represents late-stage apoptotic cells at their minimal volume before fragmentation into apoptotic bodies. Membrane expression of hsp is also associated with apoptosis in peripheral blood mononuclear cells from AIDS patients cultured in vitro. Altogether, we show that a discrete fraction of cells undergoing apoptosis expresses membrane hsp 60 and hsp 70, supporting the hypothesis that apoptosis causes a radical alteration in the expression of cell surface molecules. Surface hsp expressed during apoptosis may constitute a novel immune-context able to generate packages of self- and exogenous antigens, originating from degradation of altered cells.

Acquired Immunodeficiency Syndrome↗

Role of dental plaque in the transmission of Helicobacter pylori infection.

With regard to the role of dental plaque in the transmission of Helicobacter pylori infection, data from the literature vary greatly, owing to differences in sample collection and H. pylori-detecting techniques. Using the polymerase chain reaction (PCR), we have determined the incidence of H. pylori colonization in the dental plaque of 31 consecutive patients who underwent gastroscopy. The patients were divided into two groups on the basis of H. pylori infection, determined by Giemsa stain and the rapid urease test: group A made up of 21 H. pylori-positive patients and group B with 10 H. pylori-negative patients. Our PCR assay of dental plaque samples proved negative in all group A subjects but was positive in only one patient in group B. In our study, we found that H. pylori had a low prevalence (3.2%) in the oral cavity, with no significant relationship between gastric mucosa and dental plaque colonization. More comprehensive studies are needed to determine whether dental plaque is an important reservoir in the epidemiology of H. pylori-induced gastric disease.

Adult↗

Interaction of HIV-1 gp120 molecule fragments with human monocytes: different requirements for tumor necrosis factor-alpha and IL-6 production.

The HIV-1 gp120 recombinant protein fragment encompassing aa residues 410-511, that contains the CD4 binding region (rp120cd), and fragment aa 446-511, which lacks the sequence responsible for CD4 binding (rp120), were synthesized to study their ability to induce TNF synthesis in human monocytes. The rp120cd stimulated TNF alpha secretion by monocytes while the rp120 and full-length recombinant protein (FL gp120), used as control, failed to do so. However, FL gp120 stimulated peripheral blood mononuclear cells (PBMC) and lymphocytes for TNF production and this was inhibited by anti-CD4 MAb. The rp120cd also caused TNF secretion by PBMC that was not blocked by this antibody. Furthermore, FL gp120 but not rp120cd inhibited anti-CD4 mAb binding to CEM cells. Hence, FL gp120 may cause TNF release from lymphocytes by binding to CD4, while rp120cd interacts with monocytes but not lymphocytes and induces TNF production by a mechanism not involving CD4 binding. Unexpectedly, FL gp120 but not rp120cd stimulated IL-6 secretion and IL-6 mRNA synthesis in monocytes. The FL gp120-induced production of IL-6 by monocytes was inhibited by anti-CD4 monoclonal antibody (MAb). Thus, there may be different requirements for TNF induction in lymphocytes and monocytes stimulated with various preparations of gp120 and for the selective induction of cytokines in monocytes. The enhanced production of TNF in HIV infection and AIDS may involve distinct cellular sources and different mechanisms.

Antibodies, Monoclonal↗

Characterization of human pancreatic adenocarcinoma cell line with high metastatic potential in SCID mice.

The CD44 molecule and CD44 isoforms are expressed on some malignant tumours and it has been suggested that their expression may correlate with tumour spread. Human pancreatic carcinoma cell line (HPC-4) expressing CD44 was established from a patient with adenocarcinoma of pancreas. This line showed a rapid growth in vitro, several chromosome abnormalities and surface expression of some adhesion molecules (ICAM-1, LFA-3, beta 1-chain of VLA integrins, VNR). Xenotransplanted HPC-4 cells were able to grow rapidly in SCID mice as subcutaneous tumour, leading to 100% mortality within 3-5 weeks when 1 x 10(5)-1 x 10(7) cells were inoculated. Spontaneous metastases in the liver, lung, spleen and kidney of SCID mice were observed. Interestingly enough, HPC-4 cells in vivo and ex vivo also expressed HLA-DR molecules, but these were rapidly lost upon culture in vitro. It is suggested that the appearance of HLA-DR may be the result of interaction of the tumour with a local environment of the host, while CD44 expression may explain the rapid growth and occurrence of distant metastases in SCID mice. The ability of HPC-4 cells to form spontaneous metastases in SCID mice may prove to be a potentially interesting model of human carcinoma for testing new treatment modalities.

Adenocarcinoma↗