Elsevier

Life Sciences

Volume 35, Issue 1, 2 July 1984, Pages 53-59
Life Sciences

Endorphins stimulate normal human peripheral blood lymphocyte natural killer activity

https://doi.org/10.1016/0024-3205(84)90151-6Get rights and content

Abstract

Opioid peptides are present in peripheral blood, and may bind to human lymphocytes. In order to determine their influence on human lymphocytes we studied the effect of endogenous opioid peptides on human lymphocyte natural killer function. Beta-endorphin and several analogues (i.e., γ-endorphin) are shown to enhance human peripheral blood natural killer function. The enhancement of natural killing by these opioid peptides was dose-dependent and naloxone (an opiate antagonist) reversible. In studying various analogues of β-endorphin, β-lipotropin and γ-endorphin were approximately 3–5 times more effective at enhancing peripheral blood NK function than Leu-enkephalin and -endorphin. In addition, we observed that naloxone reversed human fibroblast interferon mediated enhancements of human blood lymphocyte natural killer function. These observations suggest that circulating endogenous opioid peptides may have a physiologic role in regulating human blood lymphocyte natural killing.

References (21)

  • J.E. Morley

    Metabolism

    (1981)
  • D.H. Clouet et al.

    Life Sci.

    (1982)
  • G.F. Solomon et al.

    Psychother. Psychosom.

    (1974)
  • M. Stein et al.

    Science

    (1976)
  • S.C. Gilman et al.
  • E. Hazum et al.

    Science

    (1979)
  • A. Lopkor et al.

    Biochem. Pharmacol.

    (1980)
  • J. Wybran et al.

    J. Immunol.

    (1979)
  • E.M. Smith et al.
  • R.B. Herberman et al.

    Immunol. Rev.

    (1979)
There are more references available in the full text version of this article.

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