Syngeneic transfer of autoimmune diabetes from diabetic NOD mice to healthy neonates. Requirement for both L3T4+ and Lyt-2+ T cells.
Open Access
- 1 October 1987
- journal article
- research article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 166 (4) , 823-832
- https://doi.org/10.1084/jem.166.4.823
Abstract
We have developed a model of syngeneic adoptive transfer for type I diabetes mellitus of NOD mice. This model consists in injecting spleen cells from diabetic adult mice into newborn NOD recipients. 50% of recipients inoculated with 20 X 10(6) cells develop diabetes within the first 10 wk of life, at a time when none of the control littermates have yet become diabetic. The earliest successful transfers are observed at 3 wk of age, at a time when controls do not even exhibit histological changes in their pancreas. In addition we have shown that: (a) both males and females can be adoptively transferred, despite the fact that males rarely develop spontaneous diabetes in our colony; (b) diabetes transfer is a dose-dependent phenomenon that provides an in vivo assay for comparing the autoimmune potential of spleen cells from mice at various stages of their natural history; (c) the susceptibility of the recipients to the transfer is limited in time and declines after 3 wk; and (d) both L3T4+ and Lyt-2+ T cell subsets are necessary for the successful transfer. The neonatal syngeneic transfer provides an effective model for studies of the cellular events involved at regulatory and effector stages of autoimmune type I diabetes.This publication has 21 references indexed in Scilit:
- Cell-mediated versus humoral immunity in autoimmune diseases and their pharmacologic control with particular reference to type I diabetes mellitus.1986
- Insulin and glucagon in spontaneously diabetic non-obese miceDiabetologia, 1984
- Production of monoclonal antibodies to islet cell surface antigens using hybridization of spleen lymphocytes from non-obese diabetic miceDiabetologia, 1984
- Characterization of the murine T cell surface molecule, designated L3T4, identified by monoclonal antibody GK1.5: similarity of L3T4 to the human Leu-3/T4 molecule.The Journal of Immunology, 1983
- In vitro inhibition of pancreatic B cell function by lymphocytes from diabetics with associated autoimmune diseases: a T cell phenomenon.The Journal of Immunology, 1982
- Effect of Castration on the Appearance of Diabetes in NOD MouseExperimental Animals, 1981
- IgG or IgM monoclonal antibodies reactive with different determinants on the molecular complex bearing Lyt 2 antigen block T cell-mediated cytolysis in the absence of complement.The Journal of Immunology, 1980
- Murine leukaemogenesis: monoclonal antibodies to T-cell determinants arrest T-lymphoma cell proliferationNature, 1980
- Xenogeneic Monoclonal Antibodies to Mouse Lymphoid Differentiation Antigens*Immunological Reviews, 1979
- Pathologic Anatomy of the Pancreas in Juvenile Diabetes MellitusDiabetes, 1965