Daynes R A, Dudley D J, Araneo B A
Division of Cell Biology and Immunology, University of Utah School of Medicine, Salt Lake City 84132.
Eur J Immunol. 1990 Apr;20(4):793-802. doi: 10.1002/eji.1830200413.
Dehydroepiandrosterone (DHEA) is an adrenal steroid hormone produced in abundance by humans and most other warm-blooded animals, is uniquely sulfated (DHEAS) prior to export into the plasma, and exhibits an age-related decline in production with progressive age. No major physiological functions have been ascribed to the activity of this steroid, although DHEA is known to serve as an intermediary in sex steroid synthesis. Studies on the effects of glucocorticoids (GCS) on the immune system led us to question whether DHEA had effects on the ability of activated lymphocytes to produce interleukin 2 (IL 2). We determined that (a) lymphocytes from DHEA- or DHEAS-treated mice consistently produced much greater levels of IL 2 than normals in response to stimulation, (b) direct lymphocyte exposure to DHEA at low doses (10(-10)-10(-7) M) caused an enhanced capacity to secrete IL 2 following activation, (c) IL 2 production by activated cloned T cell lines could be augmented by DHEA treatment, and (d) GCS-induced depressions in IL 2 synthesis by T cells or T cell clones could be overcome in vitro and in vivo by exposure to the effects of DHEA. These findings suggest that DHEA, presumably through receptor-mediated mechanisms similar to other types of steroid hormones, may represent a natural and important regulator of IL 2 production in both normal and pathologic conditions.
脱氢表雄酮(DHEA)是一种肾上腺类固醇激素,人类和大多数其他温血动物都会大量分泌。在分泌到血浆之前,它会独特地硫酸化(成为硫酸脱氢表雄酮,DHEAS),并且其分泌量会随着年龄的增长而出现与年龄相关的下降。尽管已知DHEA在性类固醇合成中起中间体的作用,但尚未发现这种类固醇的活性具有任何主要生理功能。对糖皮质激素(GCS)对免疫系统影响的研究使我们质疑DHEA是否对活化淋巴细胞产生白细胞介素2(IL - 2)的能力有影响。我们确定:(a)来自经DHEA或DHEAS处理的小鼠的淋巴细胞在受到刺激时,始终比正常小鼠产生更高水平的IL - 2;(b)淋巴细胞直接暴露于低剂量(10^(-10) - 10^(-7) M)的DHEA后,活化后分泌IL - 2的能力增强;(c)DHEA处理可增强活化的克隆T细胞系产生IL - 2的能力;(d)在体外和体内,通过暴露于DHEA的作用,可以克服GCS诱导的T细胞或T细胞克隆中IL - 2合成的抑制。这些发现表明,DHEA可能通过与其他类型类固醇激素类似的受体介导机制,在正常和病理条件下都是IL - 2产生的天然且重要的调节因子。