The Effects of Tryptophan Enhancement and Depletion on Plasma Catecholamine Levels in Healthy Individuals
Autor: | Ilene C. Siegler, Redford B. Williams, John C. Barefoot, Beverly H. Brummett, Stephen H. Boyle, Anastasia Georgiades, Cynthia M. Kuhn |
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Rok vydání: | 2019 |
Předmět: |
Adult
Male Serotonin Sympathetic nervous system medicine.medical_specialty Sympathetic Nervous System Epinephrine Central nervous system Stimulation Article Norepinephrine 03 medical and health sciences Serotonin Agents 0302 clinical medicine Internal medicine medicine Humans Applied Psychology Chemistry Tryptophan Middle Aged 030227 psychiatry Psychiatry and Mental health medicine.anatomical_structure Endocrinology Catecholamine Female 030217 neurology & neurosurgery medicine.drug |
Zdroj: | Psychosomatic Medicine. 81:34-40 |
ISSN: | 1534-7796 0033-3174 |
DOI: | 10.1097/psy.0000000000000637 |
Popis: | OBJECTIVES: Central nervous system (CNS) serotonin (5-HT) exerts both excitatory and inhibitory effects on the sympathetic nervous system (SNS) in animals. In this study, we examine the effects of tryptophan enhancement and depletion on plasma catecholamine levels in humans. METHODS: The total sample consisted of 164 healthy men and women who were tested over 2 days. Seventy-nine participants were randomized to a tryptophan enhancement condition and eighty-five to a tryptophan depletion condition. Both protocols consisted of a “sham-day” followed by an “active-day”. Blood samples for assessment of plasma norepinephrine and epinephrine levels were collected prior and post tryptophan enhancement/depletion. Data were analyzed using general linear models. Separate analyses were conducted for each study arm and for each measure. RESULTS: In the depletion condition, both epinephrine (F(5,330) = 2.69, p = .021) and norepinephrine (F(5,335) = 2.79, p =.018) showed small increases on active vs ‘sham’ depletion days. There were also significant day X time interactions for epinephrine (F(3,171) = 39.32, p < .0001) and norepinephrine (F(3,195) = 31.09, p < .0001) levels in the enhancement arm. Tryptophan infusion resulted in a marked increase in epinephrine (Pre(mean =)23.92±12.23 vs. Post(mean =)81.57±62.36) and decrease in norepinephrine (Pre(mean =)257.2±106.11 vs. Post(mean =)177.04±87.15 ) whereas levels of both catecholamines were stable on the “sham-day”. CONCLUSIONS: CNS 5-HT exerts both inhibitory and excitatory effects on SNS activity in humans, potentially due to stimulation of CNS 5-HT receptors that have shown to have inhibitory (5-HT(1A)) and excitatory (5-HT(1A) and/or 5-HT(2)) SNS effects in animal models. |
Databáze: | OpenAIRE |
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