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PubMed · 1560110

Monocytes in active multiple sclerosis: intact regulation of HLA-DR density in vitro despite decreased HLA-DR density in vivo.

Abstract

HLA-DR expression on circulating monocytes varies as a function of disease activity in patients with multiple sclerosis (MS), a putative immunopathological demyelinating disorder. Specifically, monocytes isolated from subjects with active MS exhibit reduced HLA-DR antigen density, and immunoregulatory aberrations such as impaired T lymphocyte-mediated suppression correlate strongly with this quantitative defect. To address the mechanism underlying this phenomenon, we compared in vitro regulation of HLA-DR by interferon beta (IFN beta), interferon gamma (IFN gamma), and lipopolysaccharide (LPS) in monocytes from patients with stable and active MS and normal individuals. Interferon-gamma and LPS enhanced monocyte expression of HLA-DR equally in both MS patient groups, suggesting that underexpression of HLA-DR in active MS was not explained by impaired in vivo monocyte responsiveness. Furthermore, interferon regulation of HLA-DR in normals and stable MS subjects was indistinguishable, indicating that aberrant interferon-mediated regulation of class II major histocompatibility complex (MHC) on circulating monocytes does not appear to be a characteristic of the MS disease state.

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BibTeXRIS

R M Ransohoff, V K Tuohy, B P Barna, R A Rudick. 1992. Monocytes in active multiple sclerosis: intact regulation of HLA-DR density in vitro despite decreased HLA-DR density in vivo.. https://doi.org/10.1016/0165-5728(92)90001-2

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Decreased HLA-DR antigen expression on monocytes causes impaired suppressor cell activity in multiple sclerosis.

Mitogen-induced Ts cell activity and (DR) expression on monocytes have recently been shown to be reduced in patients with multiple sclerosis (MS). In our study, T cells were cultured with autologous monocytes in the presence of Con A for 6 days (primary cultures). At the end of the culture T cells were isolated and were 1) tested for surface DR expression and 2) treated with mitomycin C and placed in a secondary culture of allogeneic responder cells and Con A, to test their suppressor function. Treatment of monocytes of the primary culture with an anti-HLA-DR antibody abolished the expression of DR Ag on the T cells as well as their ability to function as Ts cells in the secondary culture. Monocytes from patients with active MS expressed low levels of surface DR Ag and induced reduced amounts of DR Ag on the surface of autologous T cells in primary cultures, which in turn expressed deficient suppressor function when placed in secondary cultures. In contrast, monocytes obtained from patients with inactive disease expressed higher levels of DR and induced higher amounts of DR Ag on autologous T cells, which expressed normal suppressor function. We conclude that the deficient expression of DR Ag on MS monocytes causes reduced suppressor function in activated autologous T cells and may be a primary abnormality in the immunopathogenesis of MS.

HLA-DR Antigens