Department of Neuroscience, Rockefeller Neuroscience Institute, West Virginia University, Morgantown, WV, 26505, USA.
Department of Medicine, Division of Oncology/Hematology, West Virginia University, Morgantown, WV, 26505, USA.
Sci Rep. 2024 Jan 8;14(1):848. doi: 10.1038/s41598-023-50785-y.
Despite its demonstrated biological significance, time of day is a broadly overlooked biological variable in preclinical and clinical studies. How time of day affects the influence of peripheral tumors on central (brain) function remains unspecified. Thus, we tested the hypothesis that peripheral mammary cancer tumors alter the transcriptome of immune responses in the brain and that these responses vary based on time of day; we predicted that time of day sampling bias would alter the interpretation of the results. Brain tissues collected at mid dark and mid light from mammary tumor-bearing and vehicle injected mice were analyzed using the Nanostring nCounter immune panel. Peripheral mammary tumors significantly affected expression within the brain of over 100 unique genes of the 770 represented in the panel, and fewer than 25% of these genes were affected similarly across the day. Indeed, between 65 and 75% of GO biological processes represented by the differentially expressed genes were dependent upon time of day of sampling. The implications of time-of-day sampling bias in interpretation of research studies cannot be understated. We encourage considering time of day as a significant biological variable in studies and to appropriately control for it and clearly report time of day in findings.
尽管时间是一个在临床前和临床研究中被广泛忽视的生物学变量,但它具有明显的生物学意义。外周肿瘤如何影响中枢(大脑)功能的影响尚不清楚。因此,我们假设外周乳腺癌肿瘤改变了大脑中免疫反应的转录组,并且这些反应基于时间而变化;我们预测时间采样偏差会改变对结果的解释。使用 Nanostring nCounter 免疫面板分析了来自携带乳腺肿瘤和注射载体的小鼠的黑暗中期和光照中期的脑组织。外周乳腺肿瘤显著影响了该面板中代表的 770 个独特基因中的 100 多个基因在大脑中的表达,并且这些基因中不到 25%的基因在全天的影响相似。实际上,差异表达基因所代表的 GO 生物学过程中,有 65%至 75%取决于采样的时间。在解释研究研究时,时间采样偏差的影响不可低估。我们鼓励将时间视为研究中的一个重要生物学变量,并适当控制它,并在研究结果中清楚地报告时间。