AI Article Synopsis

  • Stress can increase melatonin production in the pineal gland, but exercise, like swimming, can sharply decrease its levels shortly after activity begins.
  • Even though swimming raises stress hormones, the activity of N-acetyltransferase (NAT) that helps produce melatonin remains unchanged initially.
  • The decrease in melatonin levels due to swimming is not affected by various surgical or drug interventions, suggesting that pituitary hormones and sympathetic nerve catecholamines do not play a role in this response.

Article Abstract

Since the pineal gland is an end organ of the sympathetic nervous system, stress might increase the synthesis of its hormone, melatonin. The stress of a 10 min swim, which elicits a marked rise in circulating catecholamines, causes a dramatic depression of high pineal melatonin levels at night within 15 min after swimming onset. N-acetyltransferase (NAT) activity is unaffected by the treatment at 15 or 30 min after swimming onset. Within 90 min after initiation of a 15 min swim, high nighttime pineal melatonin levels are restored while NAT values remain elevated. The swimming-induced reduction in high pineal melatonin levels is not influenced by either hypophysectomy, superior cervical ganglionectomy, prazosin (alpha 1-adrenergic receptor blocker) pretreatment, yohimbine (alpha 2-adrenergic receptor blocker) pretreatment, or reserpine (amine depletor) pretreatment. These results indicate that neither hormones secreted from the pituitary gland nor catecholamines secreted from the sympathetic nerves are involved in eliciting the dramatic reduction in elevated pineal melatonin levels in the rat.

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Source
http://dx.doi.org/10.1007/BF01244781DOI Listing

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