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社会挫败会刺激淋巴器官内局部糖皮质激素的再生。

Social defeat stimulates local glucocorticoid regeneration in lymphoid organs.

作者信息

Ergang Peter, Mikulecká Anna, Vodicˇka Martin, Vagnerová Karla, Mikšík Ivan, Pácha Jirˇí

机构信息

Institute of Physiology, Academy of Sciences of the Czech Republic, Prague, Czech Republic.

Department of Physiology, Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

Endocr Connect. 2018 Dec;7(12):1389-1396. doi: 10.1530/EC-18-0319.

Abstract

Stress is an important risk factors for human diseases. It activates the hypothalamic-pituitary-adrenal (HPA) axis and increases plasma glucocorticoids, which are powerful regulators of immune system. The response of the target cells to glucocorticoids depends not only on the plasma concentrations of cortisol and corticosterone but also on their local metabolism. This metabolism is catalyzed by 11β-hydroxysteroid dehydrogenases type 1 and 2, which interconvert glucocorticoid hormones cortisol and corticosterone and their 11-oxo metabolites cortisone and 11-dehydrocorticosterone. The goal of this study was to determine whether stress modulates glucocorticoid metabolism within lymphoid organs - the structures where immune cells undergo development and activation. Using the resident-intruder paradigm, we studied the effect of social stress on glucocorticoid metabolism in primary and secondary lymphoid organs of Fisher 344 (F344) and Lewis (LEW) rats, which exhibit marked differences in their HPA axis response to social stressors and inflammation. We show that repeated social defeat increased the regeneration of corticosterone from 11-dehydrocorticosterone in the thymus, spleen and mesenteric lymphatic nodes (MLN). Compared with the F344 strain, LEW rats showed higher corticosterone regeneration in splenocytes of unstressed rats and in thymic and MLN mobile cells after stress but corticosterone regeneration in the stroma of all lymphoid organs was similar in both strains. Inactivation of corticosterone to 11-dehydrocorticosterone was found only in the stroma of lymphoid organs but not in mobile lymphoid cells and was not upregulated by stress. Together, our findings demonstrate the tissue- and strain-dependent regeneration of glucocorticoids following social stress.

摘要

应激是人类疾病的重要风险因素。它激活下丘脑-垂体-肾上腺(HPA)轴并增加血浆糖皮质激素,而糖皮质激素是免疫系统的强大调节因子。靶细胞对糖皮质激素的反应不仅取决于皮质醇和皮质酮的血浆浓度,还取决于它们的局部代谢。这种代谢由1型和2型11β-羟基类固醇脱氢酶催化,它们使糖皮质激素皮质醇和皮质酮与其11-氧代代谢产物可的松和11-脱氢皮质酮相互转化。本研究的目的是确定应激是否会调节淋巴器官内的糖皮质激素代谢,淋巴器官是免疫细胞发育和激活的结构。使用定居者-入侵者范式,我们研究了社会应激对Fisher 344(F344)和Lewis(LEW)大鼠的初级和次级淋巴器官中糖皮质激素代谢的影响,这两种大鼠在其HPA轴对社会应激源和炎症的反应方面表现出明显差异。我们发现,反复的社会挫败会增加胸腺、脾脏和肠系膜淋巴结(MLN)中11-脱氢皮质酮向皮质酮的再生。与F344品系相比,LEW大鼠在未受应激的大鼠脾细胞中以及在应激后的胸腺和MLN可移动细胞中表现出更高的皮质酮再生,但在所有淋巴器官的基质中,两种品系的皮质酮再生相似。皮质酮向11-脱氢皮质酮的失活仅在淋巴器官的基质中发现,而不在可移动的淋巴细胞中发现,并且不受应激上调。总之,我们的研究结果证明了社会应激后糖皮质激素的组织和品系依赖性再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a32/6280584/c1b0328067a5/EC-18-0319fig1.jpg

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