Abstract
To characterize the cell(s) responsible for the suppressor-cell dysfunction in active systemic lupus erythematosus (SLE), we fractionated blood mononuclear cells into thymus-derived (T), bone marrow-derived (B), and monocyte-depleted populations. Various cell populations from active SLE, inactive SLE, or normals, were activated with Concanavalin A, washed, and then co-cultured with active SLE cells. Soluble immune response suppressor (SIRS) from culture supernates of the activated cells was also used for the possible correction of the suppressor-cell dysfunction. Suppression was tested by enumerating DNA-binding cells by radioautography and by quantitating anti-DNA antibody in culture supernates by radioimmunoassay; and immunoglobulin was tested in cells and supernates by the immunofluorescence and the immunofluor techniques, respectively. Except for the numbers of DNA-binding cells, which were not suppressed, all the other three parameters in co-cultures with cells from active SLE patients were suppressed by Concanavalin A-activated cells (P < 0.001), or by SIRS (P < 0.05) from normals or inactive SLE patients. Concanavalin A-activated autologous or allogeneic active SLE cells and nonactivated cells from active or inactive SLE failed to suppress the various B-cell functions. Nonactivated normal cells suppressed levels of anti-DNA and immunoglobulin in supernates (P < 0.05). In characterizing the cells responsible for the suppressor dysfunction, it was clear from the results that T cells responsive to Concanavalin A activation are deficient in active SLE and fail to generate SIRS. On the other hand, monocytes from active SLE patients are responsive to signals from the activated T cells of normals or inactive SLE donors. Because SIRS suppresses active SLE cells in vitro, it might be considered therapeutically for the in vivo modulation of SLE.
MeSH Terms
Concanavalin A/pharmacology
Humans
Immunity, Cellular/drug effects
Immunosuppression Therapy
Lupus Erythematosus, Systemic/immunology
Lymphocyte Activation
Monocytes/immunology
T-Lymphocytes/immunology
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sagawa A
Abdou N I
References (27)
27 references, click to expand
-
Role of suppressor T cells in lymphopoietic disorders.
Clin Haematol. 1977 Jun;6(2):439-78
PMID: 71963
-
Suppressor T cells in tolerance to non-self and self antigens.
Cold Spring Harb Symp Quant Biol. 1977;41 Pt 1:93-103
PMID: 70319
-
Monocyte-reactive antibodies in patients with systemic lupus erythematosus.
Arthritis Rheum. 1977 Jun;20(5):1049-57
PMID: 68777
-
Concomitant presence of tumor-specific cytotoxic and inhibitor lymphocytes in patients with osteogenic sarcoma.
N Engl J Med. 1977 Jul 21;297(3):121-7
PMID: 325412
-
Suppressor cell-mediated neutropenia in Felty's syndrome.
J Clin Invest. 1978 Mar;61(3):738-43
PMID: 305925
-
Induction of suppressor T cells in systemic lupus erythematosus by thymosin and cultured thymic epithelium.
Science. 1977 Sep 2;197(4307):999-1001
PMID: 302032
-
Prevention of autoimmunity in experimental lupus erythematosus by soluble immune response suppressor.
Science. 1977 Apr 1;196(4285):56-9
PMID: 300174
-
Suppressor function of peripheral blood mononuclear cells in normal individuals and in patients with systemic lupus erythematosus.
J Clin Invest. 1977 Jan;59(1):106-16
PMID: 830659
-
Suppressor T-cell abnormality in idiopathic systemic lupus erythematosus.
Clin Immunol Immunopathol. 1976 Sep;6(2):192-9
PMID: 1085685
-
Null cells in peripheral blood of normals and systemic lupus erythematosus.
Clin Immunol Immunopathol. 1976 Nov;6(3):347-58
PMID: 1086175
-
Role of suppressor T cells in pathogenesis of common variable hypogammaglobulinaemia.
Lancet. 1974 Sep 14;2(7881):609-13
PMID: 4137918
-
The roles of T and B lymphocytes in self-tolerance and autoimmunity.
Contemp Top Immunobiol. 1974;3:227-42
PMID: 4133998
-
Fractionation of cells on a discontinuous Ficoll gradient. Study of subpopulations of human T cells using anti-T-cell antibodies from patients with systemic lupus erythematosus.
J Clin Invest. 1976 Mar;57(3):604-14
PMID: 55418
-
Relative T-cell specificity of lymphocytotoxins from patients with systemic lupus erythematosus.
Arthritis Rheum. 1973 May-Jun;16(3):369-75
PMID: 4575171
-
Biological expressions of lymphocyte activation. 3. Suppression of plaque-forming cell responses in vitro by supernatant fluids from concanavalin A-activated spleen cell cultures.
J Immunol. 1974 Apr;112(4):1360-8
PMID: 4592599
-
Biological expressions of lymphocyte activation. II. Generation of a population of thymus-derived suppressor lymphocytes.
J Exp Med. 1973 Mar 1;137(3):649-59
PMID: 4570017
-
A Millipore filter assay for antibodies to native DNA in sera of patients with systemic lupus erythematosus.
Arthritis Rheum. 1973 Mar-Apr;16(2):199-207
PMID: 4541466
-
Virsues and systemic lupus erythematosus.
N Engl J Med. 1975 Jul 17;293(3):132-6
PMID: 166312
-
Suppressor cell activity after concanavalin A treatment of lymphocytes from normal donors.
J Exp Med. 1976 May 1;143(5):1100-10
PMID: 131175
-
Inhibitory and stimulatory effects of concanavalin A on the response of mouse spleen cell suspensions to antigen. I. Characterization of the inhibitory cell activity.
J Exp Med. 1972 Dec 1;136(6):1445-60
PMID: 4641854
-
Cellular origins of autoantibody--a preplexing question.
Am J Med. 1976 Sep;61(3):303-7
PMID: 786009
-
Virus infections of lympho-reticular cells and auto-immune diseases.
Transplant Rev. 1976;31:79-115
PMID: 785732
-
Disordered immunologic regulation and autoimmunity.
Transplant Rev. 1976;31:240-63
PMID: 785730
-
Loss of suppressor T cells in adult NZB/NZW mice.
J Exp Med. 1976 Sep 1;144(3):662-73
PMID: 1085336
-
Properties of primed suppressor T cells and their products.
Transplant Rev. 1975;26:106-29
PMID: 1101468
-
Identification of DNA-binding lymphocytes in patients with systemic lupus erythematosus.
J Clin Invest. 1975 Dec;56(6):1378-85
PMID: 1081549
-
The glomerular permeability determined by dextran clearance using Sephadex gel filtration.
Scand J Clin Lab Invest. 1968;21(1):77-82
PMID: 5637478