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Study summary · research use only

Plasticity of neuro-endocrine-thymus interactions during aging--a minireview

Review · human · Cellular and molecular biology (Noisy-le-Grand, France) · 1997 · PMID 9220146

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This minireview discusses neuroendocrine-thymus interactions during aging. The abstract states that thymic regrowth and reactivation of thymic endocrine activity have been achieved in old animals by manipulations including intrathymic pineal transplant or melatonin, a growth hormone-secreting tumor cell line or exogenous growth hormone, castration or exogenous LH-RH, thyroxine or triiodothyronine, and nutritional interventions such as arginine or zinc supplementation. The authors interpret thymic involution as secondary to age-related alterations in neuroendocrine-thymus interactions. Roles for hormone receptors on thymic epithelial cells and for zinc-including reactivation of zinc-dependent enzymes and thymulin, a zinc-dependent thymic hormone-are discussed.

Abstract

Thymic regrowth and reactivation of thymic endocrine activity may be achieved even in old animals by different endocrinological or nutritional manipulations. In particular: a) intrathymic transplant of pineal gland or treatment with melatonin; b) implantation of a growth hormone secreting tumor cell line or treatment with exogenous growth hormone; c) castration or treatment with exogenous LH-RH; d) treatment with exogenous thyroxine or triiodothyronine, and e) nutritional interventions such as arginine or zinc supplementation. These data strongly support the idea that thymic involution is a phenomenon secondary to age-related alterations in neuroendocrine-thymus interactions and that it is the disruption of such interactions in old age which is responsible for most of age-associated dysfunctions. With regard to the mechanisms involved in hormone-induced thymic reconstitution, it is, at present, difficult to draw any definitive conclusion. The effect of GH, thyroid hormones and LH-RH may be due to the presence on thymic epithelial cells, supposed to produce thymic peptides, of the specific hormone receptors. Melatonin or pineal derived factors may as well act through specific receptors but experimental demonstration is still lacking. The role of zinc, whose turnover is usually reduced in old age, is of quite wide-range: from the reactivation of zinc-dependent enzymes, required for both cell proliferation and apoptosis, to the reactivation of thymulin, a zinc-dependent thymic hormone. The role of zinc may be even more crucial. According to recent preliminary data obtained both in animal and in man, it appears that the above reported endocrinological manipulations, capable of restoring thymic activity in old age, may act also by normalizing the altered zinc pool.

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