血浆抗利尿激素和催产素对人体运动和昼夜循环的反应。

Endokrinologie Pub Date : 1982-06-01
R Landgraf, R Häcker, H Buhl
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引用次数: 0

摘要

用放射免疫法测定健康青年男性在跑步运动前、运动中和运动后的血浆抗利尿素(AVP)和催产素(OXT)水平。在5名受试者中,有4名受试者(1名受试者负荷不足),体力负荷导致血浆AVP显著升高,精疲力竭时AVP峰值为11.7至57.8 pg/ml。3名受试者血浆氧合酶升高,峰值为4.5 ~ 23.9 pg/ml。恢复后1小时内,两种神经肽均恢复到基础血浆水平。血浆AVP与渗透压的关系(p < 0.001)表明,渗透压的变化在调节AVP分泌中起主导作用。除了外周效应,运动期间和运动后AVP和/或OXT水平的增加可能会对大脑功能产生有利的作用。在同一测试对象的昼夜周期中测定血浆AVP和OXT显示,与选择的其他时间段(18.00- 24.00 h, p小于0.001)相比,从02.00至08.00 h AVP水平升高;08.00—16.00 h, p = 0.031)。相比之下,这些时间段之间的OXT没有差异,但从08.00到16.00 h有所下降(p < 0.01)。因此,两种神经肽之间不存在相关性,表明它们是独立分泌的。目前尚不清楚所显示的昼夜变化是否能够影响神经肽对运动的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasma vasopressin and oxytocin in response to exercise and during a day-night cycle in man.

Plasma vasopressin (AVP) and oxytocin (OXT) were determined by radioimmunoassay in healthy young men before, during and after a running exercise until exhaustion. In four of the five test subjects (one subject was underloaded) physical load resulted in a marked increase in plasma AVP with peak values of 11.7 to 57.8 pg/ml at exhaustion. Plasma OXT increased in three test subjects with peak values of 4.5 to 23.9 pg/ml. Within 1 h of recovery, both neuropeptides returned to basal plasma levels. The relationship between plasma AVP and osmolality (p less than 0.001) suggests that changes in osmolality play a dominant role in regulating the secretion of AVP. Besides peripheral effects, the increased levels of AVP and/or OXT during and immediately after the exercise, respectively, might induce a favourable action on the brain function. Determination of plasma AVP and OXT during a day-night cycle in the same test subjects reveals increased AVP levels from 02.00 to 08.00 h as compared to the other time periods chosen (18.00--24.00 h, p less than 0.001; 08.00--16.00 h, p = 0.031). In contrast, OXT does not differ between these time periods but decreased from 08.00 to 16.00 h (p less than 0.01). Accordingly, no correlation exists between both neuropeptides suggesting an independent secretion. It is unclear whether the circadian variations shown are able to influence the neuropeptide response to exercise.

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