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PMID: 55457 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Modulation of regulatory mechanisms operative in the cyclical production of antibody.

The Journal of experimental medicine ·Vol. 143 ·No. 3 ·1976-03-01 ·Pages 497-510

Romball CG, Weigle WO

Abstract

Modulation of the cyclical response in rabbits to aggregated human gamma globulin (AHuIgG) was investigated in order to study some of the parameters involved in self-regulation of the immune response. Several mitogens (lipopolysaccharide [LPS], phytohemagglutinin [PHA], and concanavalin A [Con A]), when injected simultaneously with antigen, have been shown to modulate the normal splenic plaque-forming cell (PFC) response in rabbits to a single intravenous injection of AHuIgG. This response to AHuIgG has previously been characterized by the initial appearance of PFC in the spleen 3 days later, with a peak of PFC at 5 days after injection. The number of PFC in the spleen then decreases and remains at a low level until a second increase begins on day 10, peaking on day 13. The 8-day cycle between peak PFC repeats, with a third peak appearing on day 21. In the present studies, injection of LPS with AHuIgG was shown to affect the PFC response by enhancing only the initial peak of PFC, PHA was shown to enhance both the initial and secondary peaks of PFC, while injection of Con A with AHuIgG resulted in a prolonged increase in PFC with no apparent cycling. Irradiation 24 h after injection of antigen resulted in PFC kinetics similar to those observed with PHA, although the increase in PFC was more marked with irradiation. Thus, although LPS, PHA, Con A, and irradiation markedly affected the immune response to AHuIgG, Con A was the only substance which altered the cyclical appearance of PFC to HuIgG. The cyclical nature of the PFC kinetics was shown to occur with either intravenous or intraperitoneal injection of antigen and in both primary and secondary responses, provided that the rabbits were primed with a low dose of antigen. Data were obtained that suggest that the response in distal lymph nodes may be regulated by immunological events occurring in the spleen. Cycling of PFC was not observed in the draining node after subcutaneous injection of AHuIgG in the hind foot. However, if the antigen was also injected intravenously at the same time as the subcutaneous injection, the response in the node became cyclical.

MeSH Terms
Animals Antibody Formation Antibody-Producing Cells/drug effects,immunology,radiation effects Concanavalin A/pharmacology Escherichia coli/immunology Hemolytic Plaque Technique Kinetics Lectins/pharmacology Male Periodicity Polysaccharides, Bacterial/pharmacology Rabbits Radiation Effects Spleen/immunology gamma-Globulins
Chemicals
Lectins Polysaccharides, Bacterial gamma-Globulins Concanavalin A
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Romball C G
Weigle W O
References (40)
40 references, click to expand
  1. Activation of T and B lymphocytes in vitro. I. Regulatory influence of bacterial lipopolysaccharide (LPS) on specific T-cell helper function.
    J Exp Med. 1974 Jan 1;139(1):24-43 PMID: 4128447
  2. The primary immune response in mice. I. The enhancement and suppression of hemolysin production by a bacterial endotoxin.
    J Exp Med. 1968 Jun 1;127(6):1087-107 PMID: 5653220
  3. The role of soluble aggregates in the primary immune response of mice to human gamma globulin.
    Int Arch Allergy Appl Immunol. 1966;30(5):446-55 PMID: 4163860
  4. The action of phytohemagglutinin in rabbits. I. The enhancement of the primary immune response to human serum albumin, bovine gamma globulin and sheep erythrocytes.
    Int Arch Allergy Appl Immunol. 1967;31(4):390-8 PMID: 4166524
  5. A modification of the hemolytic plaque assay for use with protein antigens.
    J Immunol. 1968 Jan;100(1):133-7 PMID: 4170425
  6. Immunoglobulin classes of antibody-forming cells in mice. I. Localized hemolysis-in-agar plaque-forming cells belonging to five immunoglobulin classes.
    J Immunol. 1970 Feb;104(2):483-94 PMID: 4189680
  7. The response of rabbit lymphocytes to mitogens and alloantigens: evidence for T cell heterogeneity.
    J Immunol. 1974 Dec;113(6):1780-92 PMID: 4279263
  8. The thymus and circulating lymphocytes of mice.
    Proc R Soc Lond B Biol Sci. 1970 Oct 13;176(1042):69-85 PMID: 4394201
  9. Activation of T and B lymphocytes by insoluble phytomitogens.
    Nat New Biol. 1972 Jan 19;235(55):67-70 PMID: 4501342
  10. Rabbit blood lymphocytes may be T cells with surface immunoglobulins.
    Science. 1973 Nov 9;182(4112):586-7 PMID: 4542871
  11. Effect of concanavalin A on the homing of labeled T lymphocytes.
    J Immunol. 1973 Dec;111(6):1902-5 PMID: 4543032
  12. Inhibitory and stimulatory effects of concanavalin A on the response of mouse spleen cell suspensions to antigen. II. Evidence for separate stimulatory and inhibitory cells.
    J Exp Med. 1973 Dec 1;138(6):1496-505 PMID: 4543456
  13. Antigen-initiated B lymphocyte differentiation. Characterisation of the primary and secondary immune responses of normal and athymic mice to the hapten 4-hydroxy-3-iodo-5-nitrophenylacetic acid presented on the carrier polymerised bacterial flagellin.
    Aust J Exp Biol Med Sci. 1974 Feb;52(1):99-110 PMID: 4545301
  14. Mitogen stimulation of rabbit spleen cells before and after complement-mediated cell kill with an antiserum directed against the thymus antigen RTLA.
    Int Arch Allergy Appl Immunol. 1974;46(5):753-67 PMID: 4546258
  15. Selective induction of DNA synthesis in T and B lymphocytes.
    Cell Immunol. 1972 Aug;4(4):381-93 PMID: 4559167
  16. Production and temporary suppression of memory cells during tolerance induction in T cells.
    Nat New Biol. 1972 Aug 30;238(87):271-3 PMID: 4561863
  17. Relationship of the structure of bacterial lipopolysaccharides to its function in mitogenesis and adjuvanticity.
    Proc Natl Acad Sci U S A. 1973 Jul;70(7):2129-33 PMID: 4579014
  18. A cyclical appearance of antibody-producing cells after a single injection of serum protein antigen.
    J Exp Med. 1973 Dec 1;138(6):1426-42 PMID: 4586979
  19. Evidence for T lymphocyte subpopulations in the rabbit.
    J Immunol. 1974 Jun;112(6):1971-80 PMID: 4596694
  20. T cell control of antibody production.
    Contemp Top Immunobiol. 1974;3:1-40 PMID: 4598645
  21. Cyclic variations in cell-mediated immunity to skin allografts detected by the technetium-99m microcytotoxicity assay.
    Cell Immunol. 1974 Sep;13(3):472-83 PMID: 4615818
  22. Cyclical variations in anti-Rh titer detected by automatic quantitative hemagglutination.
    Vox Sang. 1972 Dec;23(6):508-22 PMID: 4632943
  23. Cyclical production of antibody as a regulatory mechanism in the immune response.
    Adv Immunol. 1975;21:87-111 PMID: 1096579
  24. The enhancing effect of mitogens on the in vivo immune response of rabbits.
    J Immunol. 1975 Aug;115(2):556-60 PMID: 1097519
  25. Splenic regulation of the clinical appearance of small tumors.
    J Immunol. 1975 May;114(5):1486-90 PMID: 1123544
  26. Requirement for vasoactive amines for production of delayed-type hypersensitvity skin reactions.
    J Exp Med. 1975 Sep 1;142(3):732-47 PMID: 1165473
  27. I131-Labelled antigen precipitation as a measure of quantity and quality of antibody.
    J Infect Dis. 1953 May-Jun;92(3):288-300 PMID: 13061773
  28. Undulations in the time-response curve for tumor immunity after primary immunization with washed erythrocytes.
    J Natl Cancer Inst. 1957 Jan;18(1):57-63 PMID: 13398815
  29. Studies on the adjuvant action of bacterial endotoxins on antibody formation. I. Time limitation of enhancing effect and restoration of antibody formation in x-irradiated rabbits.
    J Immunol. 1959 May;82(5):415-27 PMID: 13641676
  30. Plaque formation in agar by single antibody-producing cells.
    Science. 1963 Apr 26;140(3565):405 PMID: 13957684
  31. Enhancement of antibody formation by whole body x-radiation.
    J Exp Med. 1963 May 1;117:833-48 PMID: 14028123
  32. The use of bacterial lipopolysaccharides to show that two signals are required for the induction of antibody synthesis.
    J Exp Med. 1973 Sep 1;138(3):699-714 PMID: 4737981
  33. Effect of host decomplementation on homeostasis of antibody production in fowl.
    Nature. 1974 Jul 19;250(463):234-6 PMID: 4851648
  34. Persistence of immunogenicity of two complex antigens retained in vivo.
    Immunology. 1968 Apr;14(4):491-501 PMID: 4871347
  35. Regulation of antibody synthesis against Escherichia coli endotoxin. I. Suppressive effect of endogenously produced and passively transferred antibodies.
    J Immunol. 1968 Jun;100(6):1326-34 PMID: 4881363
  36. Requirement of thymus-dependent lymphocytes for potentiation by adjuvants of antibody formation.
    Nature. 1971 Oct 1;233(5318):330-2 PMID: 4940426
  37. Functional heterogeneity of murine lymphoid cells. I. Responsiveness to and surface binding of concanavalin A and phytohemagglutinin.
    J Immunol. 1972 Jan;108(1):1-17 PMID: 5010393
  38. Potentiation of the T-lymphocyte response to mitogens. II. The cellular source of potentiating mediator(s).
    J Exp Med. 1972 Jul 1;136(1):143-55 PMID: 5033418
  39. The occurrence of two types of cytotoxic lymphoid cells in mice immunised with allogeneic tumour cells.
    Transplantation. 1970 Apr;9(4):366-82 PMID: 5534489
  40. Immuno-regulatory role of spleen localizing thymocytes.
    J Immunol. 1974 Feb;112(2):546-54 PMID: 4149882
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
1976-03-01
Pages
497-510
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2190142
Subset
IM
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