Ergang P, Kuželová A, Soták M, Klusoňová P, Makal J, Pácha J
Institute of Physiology Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Physiol Res. 2014;63(2):255-61. doi: 10.33549/physiolres.932588. Epub 2014 Jan 8.
Multiple lines of evidence suggest the participation of the hippocampus in the feedback inhibition of the hypothalamus-pituitary-adrenal axis during stress response. This inhibition is mediated by glucocorticoid feedback due to the sensitivity of the hippocampus to these hormones. The sensitivity is determined by the expression of glucocorticoid (GR) and mineralocorticoid (MR) receptors and 11beta-hydroxysteroid dehydrogenase type 1 (11HSD1), an enzyme that regulates the conversion of glucocorticoids from inactive to active form. The goal of our study was to assess the effect of stress on the expression of 11HSD1, GR and MR in the ventral and dorsal region of the CA1 hippocampus in three different rat strains with diverse responses to stress: Fisher 344, Lewis and Wistar. Stress stimulated 11HSD1 in the ventral but not dorsal CA1 hippocampus of Fisher 344 but not Lewis or Wistar rats. In contrast, GR expression following stress was decreased in the dorsal but not ventral CA1 hippocampus of all three strains. MR expression was not changed in either the dorsal or ventral CA1 region. These results indicate that (1) depending on the strain, stress stimulates 11HSD1 in the ventral hippocampus, which is known to be involved in stress and emotion reactions whereas (2) independent of strain, stress inhibits GR in the dorsal hippocampus, which is predominantly involved in cognitive functions.
多条证据表明,海马体在应激反应过程中参与下丘脑 - 垂体 - 肾上腺轴的反馈抑制。这种抑制是由糖皮质激素反馈介导的,因为海马体对这些激素敏感。这种敏感性由糖皮质激素(GR)和盐皮质激素(MR)受体以及11β - 羟基类固醇脱氢酶1型(11HSD1)的表达决定,11HSD1是一种调节糖皮质激素从无活性形式转化为活性形式的酶。我们研究的目的是评估应激对三种对应激反应不同的大鼠品系(Fisher 344、Lewis和Wistar)海马体CA1区腹侧和背侧区域中11HSD1、GR和MR表达的影响。应激刺激了Fisher 344大鼠海马体CA1区腹侧而非背侧的11HSD1,但对Lewis或Wistar大鼠没有影响。相反,应激后所有三个品系大鼠海马体CA1区背侧而非腹侧的GR表达降低。MR表达在CA1区背侧或腹侧均未发生变化。这些结果表明:(1)根据品系不同,应激刺激腹侧海马体中的11HSD1,已知其参与应激和情绪反应;而(2)与品系无关,应激抑制背侧海马体中的GR,其主要参与认知功能。