Department of Immunology, Roswell Park Cancer Institute , Buffalo, NY , USA.
Front Immunol. 2014 Feb 10;5:23. doi: 10.3389/fimmu.2014.00023. eCollection 2014.
The ability of dendritic cells (DCs) to stimulate and regulate T cells is critical to effective anti-tumor immunity. Therefore, it is important to fully recognize any inherent factors which may influence DC function under experimental conditions, especially in laboratory mice since they are used so heavily to model immune responses. The goals of this report are to 1) briefly summarize previous work revealing how DCs respond to various forms of physiological stress and 2) to present new data highlighting the potential for chronic mild cold stress inherent to mice housed at the required standard ambient temperatures to influence baseline DCs properties in naïve and tumor-bearing mice. As recent data from our group shows that CD8(+) T cell function is significantly altered by chronic mild cold stress and since DC function is crucial for CD8(+) T cell activation, we wondered whether housing temperature may also be influencing DC function. Here we report that there are several significant phenotypical and functional differences among DC subsets in naïve and tumor-bearing mice housed at either standard housing temperature or at a thermoneutral ambient temperature, which significantly reduces the extent of cold stress. The new data presented here strongly suggests that, by itself, the housing temperature of mice can affect fundamental properties and functions of DCs. Therefore differences in basal levels of stress due to housing should be taken into consideration when interpreting experiments designed to evaluate the impact of additional variables, including other stressors on DC function.
树突状细胞 (DCs) 刺激和调节 T 细胞的能力对于有效的抗肿瘤免疫至关重要。因此,充分认识任何可能影响实验条件下 DC 功能的固有因素非常重要,尤其是在实验室小鼠中,因为它们被广泛用于模拟免疫反应。本报告的目的是:1)简要总结先前的工作,揭示 DCs 如何对各种形式的生理应激做出反应;2)介绍新的数据,重点介绍小鼠在标准环境温度下固有的慢性轻度冷应激对未受刺激和荷瘤小鼠中基线 DC 特性的潜在影响。由于我们小组的最新数据表明,慢性轻度冷应激显著改变了 CD8(+) T 细胞的功能,而 DC 功能对于 CD8(+) T 细胞的激活至关重要,我们想知道饲养温度是否也会影响 DC 功能。在这里,我们报告在标准饲养温度或热中性环境温度下饲养的未受刺激和荷瘤小鼠中,DC 亚群存在几种显著的表型和功能差异,这大大减轻了冷应激的程度。这里呈现的新数据强烈表明,仅仅是小鼠的饲养温度就可以影响 DC 的基本特性和功能。因此,在解释旨在评估包括其他应激源对 DC 功能的影响等附加变量的实验时,由于饲养而导致的基础压力水平的差异应予以考虑。