男女唾液成分和传导性的昼夜变化。

Chronobiologia Pub Date : 1991-10-01
C S Atwood, I R James, U Keil, N K Roberts, P E Hartmann
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引用次数: 0

摘要

测定2个年龄组男性(男性A, 20-45岁,男性B, 46-60岁)和8种不同生育状态女性(月经正常、服用口服避孕药、怀孕、哺乳期闭经、哺乳期闭经并服用口服避孕药、哺乳期并月经、绝经期和绝经后)的唾液[葡萄糖]、[Na+]、[K+]和电导率的昼夜节律。未受刺激的全唾液(2-3 ml)在48小时内每3小时收集一次。Spearman秩相关分析显示,所有[Na+]组的昼夜节律(平均值= 0.577 +/- 0.040)和电导率(平均值= 0.410 +/- 0.050)均具有显著的正系数。没有证据表明[Na+]和电导率在各组间的节律显著性差异。[K+]显示出较少的节律证据,组间差异更大(平均相关系数= 0.198 +/- 0.055)。除B组男性(0.016)、绝经期女性(0.151)和绝经后女性(0.310)外,其他各组[葡萄糖]节律(平均相关系数= 0.409 +/- 0.051)均显著。数据的模型分析显示,无论是电导率,[Na+]还是[K+],都没有明显的随年龄变化的节奏趋势,其中任何差异都可以用群体特征来解释。各组[葡萄糖]节律随年龄明显减弱(F-ratio = 7.46**), a组与B组之间存在差异(F-ratio = 6.95**)。结果表明,在未受刺激的唾液中,[Na+]和[传导性]的昼夜节律与生殖状态无关,而[K+]的昼夜节律则与生殖状态有关。[葡萄糖]的昼夜节律取决于年龄。随着年龄的增长,[葡萄糖]节律的丧失表明葡萄糖、Na+和K+在进入唾液时没有联系。讨论了进入和重吸收对唾液中葡萄糖、Na+和K+最终浓度的影响。
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Circadian changes in salivary constituents and conductivity in women and men.

Circadian rhythms in salivary [glucose], [Na+], [K+] and conductivity were measured in 2 age groups of men (men A, 20-45 years and men B, 46-60 years) and 8 different states of fertility in women (normally menstruating, taking oral contraceptives, pregnant, lactational amenorrhea, lactational amenorrhea and taking oral contraceptives, lactating and menstruating, menopausal, and post-menopausal). Unstimulated whole saliva (2-3 ml) was collected every 3 h over a 48 h span. Analysis of Spearman Rank Correlations indicated significant circadian rhythms (significant positive coefficients) for all groups of [Na+] (mean = 0.577 +/- 0.040) and conductivity (mean = 0.410 +/- 0.050). There was no evidence of differences in prominence of rhythm across groups for [Na+] and conductivity. [K+] showed less evidence of rhythms and much greater variability between groups (mean correlation coefficient = 0.198 +/- 0.055). Rhythms in [glucose] (mean correlation coefficient = 0.409 +/- 0.051) were evident in all groups except men B (0.016), menopausal women (0.151) and post-menopausal women (0.310). Model analysis of the data showed no discernible rhythmic trend with age for either conductivity, [Na+] or [K+], where any differences were explainable by the group characteristics. The rhythm in [glucose] showed a significant weakening with age over all groups (F-ratio = 7.46**), and was different between men A and men B (F-ratio = 6.95**). It was concluded that circadian rhythms were present in whole unstimulated saliva for conductivity and [Na+] and that these rhythms were independent of reproductive state, whereas circadian rhythms in [K+] were dependent on reproductive state. Circadian rhythms for [glucose] were dependent on age. The loss of a rhythm in [glucose] with age indicates that glucose, Na+ and K+ are not linked in their entry into saliva. The influence of entry and reabsorption on the final concentrations of glucose, Na+ and K+ in saliva is discussed.

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