Search PubMedSearch

PubMed · 7088148

A beginner's guide to major histocompatibility complex function.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

P Matzinger, R Zamoyska. 1982-06-24. A beginner's guide to major histocompatibility complex function.. https://doi.org/10.1038/297628a0

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Comparison of separated-lymphocyte and whole-blood lymphocyte proliferation assays for evaluating rabies-induced cellular immunity.

A whole-blood lymphocyte proliferation assay was compared to a standard method requiring the isolation of peripheral blood mononuclear cells (PBMC). Both methods were used to measure the cell-mediated immune responses to rabies in rabies-vaccine recipients. Whole-blood cells gave moderately higher lymphoproliferative responses in terms of stimulation indices than did separated-PBMC. The results obtained from these two methods can be considered equivalent for the purpose of quantitating cellular reactivity to rabies. The use of whole blood has advantages over the standard isolated-PBMC method.

Immunity, Cellular

Model for population distributions of lymphocyte-target cell conjugates.

A quantitative model for the population distributions of the different types of conjugates formed between cytotoxic T lymphocytes and target cells has been developed. The comparison of the theoretical predictions with data of the literature reveals that the transit populations among the different types of conjugates depends on the lymphocyte-to-target ratio, R, and two constants, k and k1. These constants (where k greater than k1) govern, respectively, the transit populations among conjugates of the type LTi (LTn----LTn-1----...LT), and among LjT conjugates (LT----L2T----...----LmT). We have found that high ratios are necessary to obtain conjugates where multiple T lymphocytes are bound to one target cell, and that under these conditions the predominant conjugate, LjT, varies according to j = 1 + k1R. Conversely, for low values of R the predominant population is of the type LTi, where i also shows a linear dependence on R. Our model explains also why the conjugate LT is normally the predominant population under the experimental conditions reported in the literature. A discussion of the influence exerted by the population distributions of lymphocyte-target cell conjugates on the kinetic of the lytic process for these kinds of effector-target systems has also been made.

Immunity, Cellular