Prolactin, immunoregulation, and autoimmune diseases

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Abstract

Cells of the immune system synthesize prolactin and express mRNA and receptors for that hormone. Interleukin 1, interleukin 6, γ interferon, tumor necrosis factor, platelet activator factor, and substance P participate in the release of prolactin. This hormone is involved in the pathogenesis of adjuvant arthritis and restores immunocompetence in experimental models. In vitro studies suggest that lymphocytes are an important target tissue for circulating prolactin. Prolactin antibodies inhibit lymphocyte proliferation. Prolactin is comitogenic with concanavalin A and induces interleukin 2 receptors on the surface of lymphocytes. Prolactin stimulates ornithine decarboxylase and activates protein kinase C, which are pivotal enzymes in the differentiation, proliferation, and function of lymphocytes. Cyclosporine A interferes with prolactin binding to its receptors on lymphocytes. Hyperprolactinemia has been found in patients with systemic lupus erythematosus. Fibromyalgia, rheumatoid arthritis, and low back pain patients present a hyperprolactinemic response to thyrotropin-releasing hormone. Experimental autoimmune uveitis, as well as patients with uveitis whether or not associated with spondyloarthropathies, and patients with psoriatic arthritis may respond to bromocriptine treatment. Suppression of circulating prolactin by bromocriptine appears to improve the immunosuppressive effect of cyclosporine A with significantly less toxicity. Prolactin may also be a new marker of rejection in heart-transplant patients. This body of evidence may have an impact in the study of rheumatic disorders, especially connective tissue diseases. A role for prolactin in autoimmune diseases remains to be demonstrated.

References (93)

  • D.H. Russell et al.

    Prolactin and known modulators of rat splenocytes activate nuclear protein kinase C

    European J Pharmacol

    (1990)
  • L Matera et al.

    Natural killer activity in hyperprolactinemic patients

    Immunopharmacology

    (1989)
  • L Matera et al.

    Prolactin receptors on large granular lymphocytes: dual regulation by cyclosporin A

    Brain Behav Immun

    (1988)
  • A Vidaller et al.

    T-cell dysregulation in patients with hyperprolactinemia: Effect of bromocriptine treatment

    Clin Immunol Immunopathol

    (1986)
  • L.P. Hedner et al.

    Endogenous iridocyclitis relieved during treatment with bromocriptine

    Am J Ophthalmol

    (1985)
  • M Blank et al.

    Downregulation of autoantibody levels of cyclosporine and bromocriptine treatment in patients with uveitis

    Clin Immunol Immunophatol

    (1990)
  • D.F. Larson et al.

    Prolactin predicts cardiac allograft rejection in cyclosporine immunosuppressed patients

    Lancet

    (1985)
  • M Carrier et al.

    Bromocriptine as an adjuvant to cyclosporine immunosuppression after heart transplantation

    Ann Thorac Surg

    (1990)
  • J.E. Blalock et al.

    A complete regulatory loop between the immune and neuroendocrine systems

  • D.A. Weigent et al.

    Interactions between the neuroendocrine and immune systems: Common hormones and receptors

    Immunol Rev

    (1987)
  • A.K. Bhalla

    Hormones and the immune response

    Ann Rheum Dis

    (1989)
  • A Fontana et al.

    Immune-mediated encephalitis on the role of antigen-presenting cells in brain tissue

    Immunol Rev

    (1987)
  • I Berczi et al.

    The effect of prolactin and growth hormone on hemolymphopoietic tissue and immune function

  • C Lavalle et al.

    Correlation study between prolactin and androgens in male patients with systemic lupus erythematosus

    J Rheumatol

    (1987)
  • A Fraga et al.

    Prolactin and gonadal hormones in pregnant SLE patients

    Arthritis Rheum.

    (1989)
  • P Stricker et al.

    Action du lobe anterieur del'hyphophysesur la montee laiteuse

    CR Soc Biol (Par)

    (1928)
  • S.W.J. Lamberts et al.

    Regulation of prolactin secretion at the level of the lactotroph

    Physiol Rev

    (1990)
  • C.S. Nicoll et al.

    Structural features of prolactin and growth hormones that can be related to their biological properties

    Endocr Rev

    (1986)
  • A Golander et al.

    Prolactin synthesis by human chorion decidual tissue: a possible source of amniotic fluid prolactin

    Science

    (1978)
  • S.W. Rosen et al.

    Nonrandom ectopic protein production by malignant cells: Direct evidence in vitro

    J Clin Endocrinol Metab

    (1980)
  • G DiMattia et al.

    A human B-lymphoblastoid cell line produces prolactin

    Endocrinology

    (1988)
  • W.J. De Vito

    Distribution of immunoreactive prolactin in the male and female rat brain: Effects of hypophysectomy and intraventricular administration of colchicine

    Neuroendocrinology

    (1989)
  • E Fluckiger et al.

    Control of prolactin secretion

  • E.W. Bernton et al.

    Release of multiple hormones by a direct action of interleukin-1 on pituitary cells

    Science

    (1987)
  • G Schettini et al.

    Interleukin-1-β modulation of prolactin secretion from rat anterior pituitary cells: involvement of adenylate cyclase activity and calcium mobilization

    Endocrinology

    (1990)
  • M Yamaguchi et al.

    Interleukin 6 possibly induced by interleukin 1β in the pituitary gland stimulates the release of gonadotropins and prolactin

    Acta Endocrinol (Copenh)

    (1990)
  • A.M. Camoratto et al.

    Platelet-activating factor stimulates prolactin release from dispersed rat anterior pituitary cells in vitro

    Endocrinology

    (1989)
  • M Arisawa et al.

    Physiologically significant inhibitory hypothalamic action of substance P on Prolactin release in the male rat

    Neuroendocrinology

    (1990)
  • P Braquet et al.

    Perspectives in platelet-activating factor research

    Pharmacol Rev

    (1987)
  • M Lotz et al.

    Substance P activation of rheumatoid synoviocytes: Neural pathway in pathogenesis of arthritis

    Science

    (1987)
  • C Tetta et al.

    Release of platelet-activating factor in systemic lupus erythematosus

    Int Arch Allergy Appl Immunol

    (1990)
  • P.E. Smith

    The effect of hypophysectomy upon the involution of the thymus in the rat

    Anat Rec

    (1930)
  • W Van Eden et al.

    Antigenic mimicry between mycobacteria and cartilage proteoglycans: the model of adjuvant arhtritis

    Concepts Immunopathol

    (1987)
  • R.L. Wilder

    Animal models of reactive arthritis

  • E Nagy et al.

    Immunodeficiency in hypophysectomized rats

    Acta Endocrinol (Copenh)

    (1978)
  • I Berczi et al.

    Regulation of humoral in rats by pituitary hormones

    Acta Endocrinol (Copenh)

    (1981)
  • Cited by (0)

    2

    From the Rheumatic Diseases Unit, Hospital de Especialidades, Centro Médico La Raza, IMSS, México, DF, México.

    1

    From the Division of Rheumatology, Department of Internal Medicine, Division of Endocrinology, Department of Internal Medicine, University of South Florida College of Medicine, Tampa, FL.

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