Immunology Research Centre Branislav Janković, Institute of Virology, Vaccines and Sera Torlak, Belgrade, Serbia.
Ann N Y Acad Sci. 2012 Jul;1261:34-41. doi: 10.1111/j.1749-6632.2012.06623.x.
This paper highlights the multiple putative thymic and extrathymic points of intersection and interaction between glucocorticoids (GCs) and catecholamines (CAs)--the end-point mediators of the major routes of communication between the brain and the immune system--in the context of intricate thymic T cell-developmental tuning. More specifically, we discuss in detail findings indicating that adrenal GCs can influence thymopoiesis by adjusting directly and/or indirectly (through modulation of pituitary and local ACTH synthesis) not only thymic GC synthesis, in a cell type-specific manner, but also thymic CA bioavailability (via altering CA outflow from sympathetic nerve endings and local CA synthesis), β and α(1) -adrenoceptor (AR) expression, and/or AR-mediated intracellular signal transduction in thymic cells. In addition, this short review points to GC- and CA-sensitive stages along the multistep T cell-developmental journey and the possible effects of altered GC, and consequently CA signaling, on thymopoietic efficiency.
本文强调了糖皮质激素 (GCs) 和儿茶酚胺 (CAs)——大脑和免疫系统之间主要通讯途径的终点介质——在复杂的胸腺 T 细胞发育调节中,多个假定的胸腺和胸腺外交点和相互作用。更具体地说,我们详细讨论了研究结果表明,肾上腺 GCs 可以通过直接调节(通过调节垂体和局部 ACTH 合成)和/或间接调节(通过调节垂体和局部 ACTH 合成)不仅胸腺 GC 合成,而且还调节胸腺 CA 生物利用度(通过改变从交感神经末梢流出的 CA 和局部 CA 合成)、β 和 α(1)-肾上腺素能受体 (AR) 表达,以及/或 AR 介导的胸腺细胞内信号转导,以细胞类型特异性方式影响胸腺细胞的发育。此外,这篇简短的综述指出了 T 细胞发育过程中多个步骤的 GC 和 CA 敏感阶段,以及改变 GC(进而改变 CA 信号转导)对胸腺生成效率的可能影响。