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April 1, 1994Annual Review of Immunology1,573 citations

Acquisition of Lymphokine-Producing Phenotype by CD4+ T Cells

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RSRobert A. SederWPW E Paul

Key Points

  • The study aims to understand how naive CD4+ T cells differentiate into distinct lymphokine-producing cells and the regulatory factors involved.
  • Review of existing literature on the differentiation of naive CD4 T cells
  • Analysis of the role of cytokines such as IL-2, IL-4, and IL-12
  • Discussion of cross-regulatory effects among lymphokines
  • Naive CD4+ T cells primarily produce IL-2 upon stimulation, transitioning to TH1-like or TH2-like phenotypes based on cytokine presence.
  • IL-4 inhibits IFN gamma production while inducing IL-4 production in CD4+ T cells.
  • IL-12 enhances IFN gamma production, with cross-regulation observed between IL-4 and IFN gamma.

Abstract

Naive CD4+ T cells when stimulated produce IL-2 as their major lymphokine. Upon priming, these cells develop into cells that produce either IFN gamma, TNF beta, and IL-2 or IL-4 and its congeners. The former cells are designated TH1-like, and the latter TH2-like. Here we review the regulation of the differentiation of naive CD4 cells into IFN gamma- or IL-4-producers. The dominant factors that determine such differentiation are lymphokines and other cytokines. IL-2 itself appears to be required for naive cells to develop into TH1- or TH2-like cells but is not deterministic of their differentiation fate. If IL-4 is also present during the priming period, the resultant CD4+ T cells produce IL-4 upon restimulation; the development of IFN gamma-producing cells is strikingly inhibited by IL-4. In the absence of IL-4, priming for IFN gamma-production occurs, but this is markedly enhanced by IL-12. The role of IFN gamma in enhancing priming for IFN gamma-production is not fully resolved. In some in vitro systems, it appears to act together with IL-12 to enhance such production. Anti-IFN gamma diminishes priming for IFN gamma production in vivo. Lymphokines also exert a "cross-regulatory" or inhibitory effect. As noted above, IL-4 strikingly diminishes priming for IFN gamma production, although this inhibitory effect is blunted in the presence of IL-12. IFN gamma similarly diminishes priming for IL-4 production; this effect is principally observed when low concentrations of IL-4 are used in the priming culture. Although other factors may play a role in the determination of lymphokine-producing phenotype, such as antigen dose, type of antigen-presenting cell, and expression of accessory molecules and hormones, these effects appear to be secondary to the dominant role of the lymphokines and cytokines.

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Cite This Study

Seder et al. (1994) studied this question.

synapsesocial.com/papers/6a0f4146a00258d2006cbbc0https://doi.org/10.1146/annurev.iy.12.040194.003223
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Production of lymphokine mRNA by CD45R+ and CD45R− helper T cells from human peripheral blood and by human CD4+ T cell clones.1989 · 167 citations
  2. 2Augmentation of naive, Th1 and Th2 effector CD4 Responses by IL-6, IL-1 and TNF1998 · 96 citations
  3. 3Cytokine-Mediated Preconditioning of Naïve CD4 T Cells Biases Subsequent Effector Differentiation 23299472026
  4. 4IL ‐2 amplifies quantitative TCR signalling inputs to drive Th1 and Th2 differentiation2024 · 7 citations
  5. 5An early burst of cytokine production before the first cell division influences CD8 T cell differentiation2025