Whembolua Guy-Lucien S, Granger Douglas A, Singer Sarany, Kivlighan Katie T, Marguin Jeffrey A
Behavioral Endocrinology Laboratory, Department of Biobehavioral Health, 315 Health and Human Development East, The Pennsylvania State University, University Park, 16802, USA.
Horm Behav. 2006 Apr;49(4):478-83. doi: 10.1016/j.yhbeh.2005.10.005. Epub 2005 Nov 23.
Bacteria load in saliva was experimentally manipulated, and the consequences for the measurement of salivary testosterone (T), dehydroepiandrosterone (DHEA), and cortisol (C) were examined. Healthy adults (n = 19) donated the first saliva sample upon rising after which they rinsed their mouths with water, waited 10 min, and donated a second sample. Samples were either left untreated or passed through a 0.22-microm filter and then frozen at -80 degrees C or incubated at room temperature (RT) for 10 days. Aliquots of each sample were cultured on agar to determine baseline and post-incubation (or freezing) bacteria load. Bacteria counts were not significantly influenced by rinsing (with water), were substantially reduced by filtration, and increased by incubation at RT. Average levels of salivary T and C, but not DHEA, were significantly lower in samples stored at RT than samples frozen the day of collection. The change in bacteria count induced by storing samples at RT was associated with a change in testosterone but not cortisol or DHEA. When samples were passed through a 0.22-microm filter bacteria counts were reduced, and the association between bacteria and testosterone was reduced to non-significant. These findings contribute to a growing body of literature revealing that the process of sample collection, storage, and handling can dramatically influence the accuracy of information generated when salivary biomarkers are integrated into research and clinical diagnostics.
通过实验手段控制唾液中的细菌载量,并研究其对唾液睾酮(T)、脱氢表雄酮(DHEA)和皮质醇(C)测量结果的影响。健康成年人(n = 19)在起床后捐献第一份唾液样本,之后用水漱口,等待10分钟,然后捐献第二份样本。样本要么不做处理,要么通过0.22微米的过滤器,然后在-80℃下冷冻,或者在室温(RT)下孵育10天。将每个样本的等分试样接种在琼脂上,以确定基线以及孵育后(或冷冻后)的细菌载量。细菌计数不受(用水)漱口的显著影响,通过过滤可大幅降低,而在室温下孵育会使其增加。与采集当天冷冻的样本相比,室温下储存的样本中唾液T和C的平均水平显著降低,但DHEA的平均水平没有显著变化。在室温下储存样本导致的细菌计数变化与睾酮的变化有关,但与皮质醇或DHEA无关。当样本通过0.22微米的过滤器时,细菌计数减少,细菌与睾酮之间的关联降低至不显著。这些发现为越来越多的文献提供了补充,表明样本采集、储存和处理过程会极大地影响将唾液生物标志物纳入研究和临床诊断时所产生信息的准确性。