首页> 外文期刊>Psychoneuroendocrinology: An International Journal >alpha-Amylase as a reliable and convenient measure of sympathetic activity: don't start salivating just yet!
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alpha-Amylase as a reliable and convenient measure of sympathetic activity: don't start salivating just yet!

机译:α-淀粉酶是一种可靠且方便的交感神经活动量度:暂时不要流口水!

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Recent years have seen a growing interest in salivary alpha-amylase (sAA) as a non-invasive marker for sympathetic nervous system (SNS) activity. Saliva offers many advantages as a biomarker fluid and sAA is one of its most plentiful components. sAA is a digestive enzyme that breaks down starch, which provides a simple means of quantification by measuring its enzymatic activity. This commentary will address a number of common misconceptions and methodological issues that surround the use of sAA as a marker of SNS activity and limit its utility in biobehavioral research. The usefulness of sAA as an SNS marker is undermined by the fact that the parasympathetic nerves also play a significant role in sAA release. Local parasympathetic nerves regulate sAA activity via: (1) alpha-amylase release from glands that are solely or mainly parasympathetically innervated; (2) via synergistic sympathetic-parasympathetic effects on protein secretion (known as 'augmented secretion'); and (3) via effects on salivary flow rate. Regarding methodology, we discuss why it is problematic: (1) to ignore the contribution of salivary flow rate; (2) to use absorbent materials for saliva collection, and; (3) to stimulate saliva secretion by chewing. While these methodological problems can be addressed by using standardized and timed collection of unstimulated saliva, the physiological regulation of sAA secretion presents less resolvable issues. We conclude that at present there is insufficient support for the use and interpretation of sAA activity as a valid and reliable measure of SNS activity.
机译:近年来,人们对唾液α-淀粉酶(sAA)作为交感神经系统(SNS)活动的非侵入性标记物的兴趣日益浓厚。唾液作为生物标志物液体具有许多优势,而sAA是其最丰富的成分之一。 sAA是一种分解淀粉的消化酶,可通过测量其酶活性提供简单的定量方法。该评论将解决围绕sAA作为SNS活性标记物的使用的许多常见误解和方法论问题,并限制其在生物行为研究中的效用。副交感神经在sAA释放中也起着重要作用这一事实削弱了sAA作为SNS标记物的有用性。局部副交感神经通过以下方式调节sAA的活性:(1)从仅或主要副交感神经支配的腺体释放α-淀粉酶; (2)通过对蛋白质分泌的协同交感-副交感作用(称为“增强分泌”); (3)通过影响唾液流速。关于方法论,我们讨论了为什么会有问题:(1)忽略唾液流速的贡献; (2)使用吸收性材料收集唾液,并且; (3)通过咀嚼刺激唾液分泌。虽然可以通过使用标准化且定时的未刺激唾液收集来解决这些方法学问题,但sAA分泌的生理调节却存在较少可解决的问题。我们得出的结论是,目前对于使用和解释sAA活动作为SNS活动的有效且可靠的衡量标准还没有足够的支持。

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