Literature DB >> 18008143

Inhibition of apoptosis, activation of NKT cell and upregulation of CD40 and CD40L mediated by M. leprae antigen(s) combined with Murabutide and Trat peptide in leprosy patients.

Vineeta Chattree1, Neena Khanna, Vandana Bisht, D N Rao.   

Abstract

Protective immunity against intracellular pathogen Mycobacterium leprae is dependent on the activation of T cells. Repeated stimulation of T cells by M. leprae antigens MLCwA (M. leprae total cell wall antigen) and ManLAM (mannose-capped lipoarabinomannan), may lead to apoptosis in leprosy patients. In the present study, inhibition of the Fas-induced apoptosis of peripheral blood mononuclear cells of leprosy patients was investigated using above M. leprae antigen(s), in combination with immunomodulators murabutide (MB) and a Trat peptide in particulate form (liposome). Incubation of the cells with antigen containing the two immunomodulators in particulate form (liposomes) led to decrease in percentage of propidium iodide positive cells and T cells expressing Fas-FasL as well as decreased caspase-8/-3 activities in lepromatous patients, thereby inhibiting apoptosis, while converse was true upon stimulation with soluble antigen. Concurrently, there was an upregulation of antiapoptotic protein Bcl-xL in lepromatous patients, leading to the inhibition of apoptosis. It was also observed that same formulation upregulated the expression of CD40 on B cells and monocytes-macrophages and CD40L on T cells of lepromatous leprosy patients. The same liposomal formulation significantly increased the expression of CD1b and CD1d on monocytes-macrophages as well as percentage of NKT cells secreting IFN-gamma in lepromatous leprosy patients. Thus, the liposomal formulation of antigen with the immunomodulators in vitro promoted the activation of CD40:CD40L pathways and NKT cell function involved in providing cell-mediated immunity to these patients. The same formulation also caused reversal of T cell anergy by inhibiting apoptosis through decreased expression of death receptors (Fas-FasL) and caspase activities (3 and 8) and increased expression of antiapoptotic protein Bcl-xL in these patients.

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Year:  2007        PMID: 18008143     DOI: 10.1007/s11010-007-9646-8

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  41 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  1999-04-27       Impact factor: 11.205

2.  Alterations in T cell signal transduction by M. leprae antigens is associated with downregulation of second messengers PKC, calcium, calcineurin, MAPK and various transcription factors in leprosy patients.

Authors:  Vineeta Chattree; Neena Khanna; D N Rao
Journal:  Mol Immunol       Date:  2006-10-12       Impact factor: 4.407

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Authors:  A Böyum
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4.  Suppression of T-cell proliferation by Mycobacterium leprae and its products: the role of lipopolysaccharide.

Authors:  A Molloy; G Gaudernack; W R Levis; Z A Cohn; G Kaplan
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5.  CD28 costimulation can promote T cell survival by enhancing the expression of Bcl-XL.

Authors:  L H Boise; A J Minn; P J Noel; C H June; M A Accavitti; T Lindsten; C B Thompson
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6.  B7/CD28-dependent and -independent induction of CD40 ligand expression.

Authors:  L Ding; J M Green; C B Thompson; E M Shevach
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7.  Biological activity of a new synthetic muramyl peptide adjuvant devoid of pyrogenicity.

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8.  Immunosuppressive roles for IL-10 and IL-4 in human infection. In vitro modulation of T cell responses in leprosy.

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Journal:  J Immunol       Date:  1993-06-15       Impact factor: 5.422

9.  Interleukin-10 induces a long-term antigen-specific anergic state in human CD4+ T cells.

Authors:  H Groux; M Bigler; J E de Vries; M G Roncarolo
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10.  CD40L-deficient mice show deficits in antiviral immunity and have an impaired memory CD8+ CTL response.

Authors:  P Borrow; A Tishon; S Lee; J Xu; I S Grewal; M B Oldstone; R A Flavell
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2.  Lower numbers of natural killer T cells in HIV-1 and Mycobacterium leprae co-infected patients.

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Review 3.  Mannose-capped lipoarabinomannan in Mycobacterium tuberculosis pathogenesis.

Authors:  Joanne Turner; Jordi B Torrelles
Journal:  Pathog Dis       Date:  2018-06-01       Impact factor: 3.166

4.  miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology.

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Journal:  Front Immunol       Date:  2018-03-09       Impact factor: 7.561

5.  Infection of Primary Bovine Macrophages with Mycobacterium avium Subspecies paratuberculosis Suppresses Host Cell Apoptosis.

Authors:  Edward Kabara; Paul M Coussens
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6.  Influence of Genetic Ancestry on INDEL Markers of NFKβ1, CASP8, PAR1, IL4 and CYP19A1 Genes in Leprosy Patients.

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  6 in total

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