Hoffman-Goetz L, Slivchak J, Konyer J, Ward G
Department of Health Studies and Gerontology, Faculty of Applied Health Sciences, University of Waterloo, Waterloo, Ontario, Canada, N2L 3G1.
Physiol Behav. 2000 Sep 15;70(5):489-94. doi: 10.1016/s0031-9384(00)00293-6.
It is well documented that the hypothalamic-pituitary-adrenal (HPA) axis influences immunological responses to stress. Maternal factors have been shown to be necessary for appropriate modulation of the HPA axis in the developing rat. The purpose of this study was to determine whether artificially reared (AR) infant rat pups (a procedure whereby infant rats are gastrostomized and reared independently of maternal factors) have an altered function of the HPA axis in terms of thymocyte apoptosis (programmed cell death) and other indices of thymic stress. AR and maternally reared (MR) Long-Evans rat pups were randomized to control, fasted, stressed, and fasted+stressed treatment groups, as well as an unhandled, MR naive group that served as a baseline control. AR rat pups were significantly heavier than MR (p<0.001). AR rat pups had significantly lighter thymuses than did the MR pups (p<0.001) and fasted pups had significantly lighter thymuses than unfasted pups, regardless of whether they were in the AR or MR condition (p<0.005). AR pups had significantly lower thymic cell numbers and a greater percent of necrotic cells than did MR pups. There were no significant effects of rearing condition on the percent of apoptotic thymocytes. The thymocyte alterations observed in this study between the two rearing conditions suggest that AR reduces thymic weight and cell numbers, which may have consequences for the development of adult cellular immunity.
有充分文献记载,下丘脑 - 垂体 - 肾上腺(HPA)轴会影响对压力的免疫反应。已表明母体因素对于发育中大鼠的HPA轴进行适当调节是必要的。本研究的目的是确定人工饲养(AR)的幼鼠(一种将幼鼠进行胃造口术并独立于母体因素饲养的方法)在胸腺细胞凋亡(程序性细胞死亡)和胸腺应激的其他指标方面是否具有改变的HPA轴功能。将AR和母体饲养(MR)的Long-Evans幼鼠随机分为对照组、禁食组、应激组、禁食 + 应激处理组,以及作为基线对照的未处理的MR幼鼠组。AR幼鼠比MR幼鼠显著更重(p<0.001)。AR幼鼠的胸腺比MR幼鼠显著更轻(p<0.001),并且禁食幼鼠的胸腺比未禁食幼鼠显著更轻,无论它们是处于AR还是MR状态(p<0.005)。AR幼鼠的胸腺细胞数量显著更低,坏死细胞百分比比MR幼鼠更高。饲养条件对凋亡胸腺细胞百分比没有显著影响。本研究在两种饲养条件之间观察到的胸腺细胞改变表明,AR会降低胸腺重量和细胞数量,这可能对成年细胞免疫的发育产生影响。