Literature DB >> 3106496

Mycobacterium leprae antigen-induced suppression of T cell proliferation in vitro.

G Kaplan, R R Gandhi, D E Weinstein, W R Levis, M E Patarroyo, P J Brennan, Z A Cohn.   

Abstract

The extent to which M. leprae and its products induced suppression of T lymphocyte proliferation in vitro was evaluated. M. leprae antigens suppressed T cell proliferation in response to mitogens and antigens in both lepromatous and tuberculoid patients, as well as controls never exposed to M. leprae or M. leprae endemic areas. Both soluble and particulate fractions of M. leprae were found to suppress proliferation in a dose-dependent manner. The extent of suppression was inversely related to the proliferative response of the donors mononuclear cells to M. leprae. Evidence indicates that M. leprae contains both stimulatory and suppressive molecules for T cells. One such suppressive antigen, Lipoarabinomannan (LAM)-B of M. leprae, also suppressed the proliferative response of tuberculoid patients. Suppression was also observed with the LAM-B of M. tuberculosis. The suppressive effects observed were not due to the toxicity of the antigen. Some of the suppressive activity was mediated by T8+ suppressor cells and was expressed in both lepromatous and tuberculoid patients. We suggest that previous sensitization to M. leprae and other cross-reactive mycobacterial antigens determines the sensitivity of T cells to the suppressive effects of M. leprae antigens.

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Year:  1987        PMID: 3106496

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  50 in total

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Review 4.  Do CD1-restricted T cells contribute to antibody-mediated immunity against Mycobacterium tuberculosis?

Authors:  Mark L Lang; Aharona Glatman-Freedman
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5.  Modified lymphocyte response to mitogens induced by the lipopeptide fragment derived from Mycobacterium avium serovar-specific glycopeptidolipids.

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Review 6.  The protective role of antibody responses during Mycobacterium tuberculosis infection.

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7.  In vitro suppression of interleukin 2 production by Mycobacterium leprae antigen.

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8.  Cellular immune responses of leprosy contacts to fractionated Mycobacterium leprae antigens.

Authors:  S P Lee; N G Stoker; K A Grant; Z T Handzel; R Hussain; K P McAdam; H M Dockrell
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9.  The use of antigen-bearing nitrocellulose particles derived from Western blots to study proliferative responses to 27 antigenic fractions from Mycobacterium leprae in patients and controls.

Authors:  E Filley; C Abou-Zeid; M Waters; G Rook
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10.  Influence of Mycobacterium leprae and its soluble products on the cutaneous responsiveness of leprosy patients to antigen and recombinant interleukin 2.

Authors:  G Kaplan; E P Sampaio; G P Walsh; R A Burkhardt; T T Fajardo; L S Guido; A de Miranda Machado; R V Cellona; R M Abalos; E N Sarno
Journal:  Proc Natl Acad Sci U S A       Date:  1989-08       Impact factor: 11.205

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