Department of Physiology, Gifu University Graduate School of Medicine, Gifu, Japan;
J Appl Physiol (1985). 2013 Oct 1;115(7):1082-7. doi: 10.1152/japplphysiol.00285.2013. Epub 2013 Aug 1.
Gravitational forces, including hypergravity or microgravity, induce plasticity of vestibular-related functions. These functions are not easily reversed if exposure to the gravitational forces occurs during vestibular development. In the present study, we hypothesized that vestibular-related stress responses might be suppressed in rats exposed to hypergravity during the vestibular development period. We exposed the rats to 2 g (hypergravity) during the preweaning (BW-HG; embryonic day 14 to postnatal week 3) or postweaning (AW-HG; postnatal weeks 4-6) periods. After recovery for 4 wk at 1 g, we conducted rotarod tests and then exposed the rats to 2 g for 90 min. In BW-HG rats, vestibular-related motor coordination on the rotarod test was partially, but not fully, restored to the level of AW-HG rats or rats raised at 1 g (1-G group). Loading-induced plasma adrenocorticotropic hormone and corticosterone levels were significantly suppressed in BW-HG and in rats with a vestibular lesion compared with AW-HG and 1-G rats. Arginine vasopressin and Fos expression levels in the paraventricular hypothalamic nucleus were also significantly lower in BW-HG and vestibular lesion rats than in AW-HG and 1-G rats. By contrast, there was no difference in the electrical foot shock-induced increase in plasma corticosterone among the experimental groups, suggesting that the nonvestibular-related stress response was not suppressed by exposure to 2 g during preweaning. These results indicated that exposure to hypergravity during preweaning specifically suppressed the vestibular-related stress response, and this suppression did not recover after 4 wk at 1 g.
重力,包括超重力或微重力,会引起前庭相关功能的可塑性。如果在前庭发育过程中暴露于重力下,这些功能不容易逆转。在本研究中,我们假设如果在前庭发育期间暴露于超重力下,与前庭相关的应激反应可能会受到抑制。我们在断奶前(BW-HG;胚胎第 14 天至出生后第 3 周)或断奶后(AW-HG;出生后第 4-6 周)期间将大鼠暴露于 2 g 中。在 1 g 下恢复 4 周后,我们进行了旋转棒测试,然后将大鼠暴露于 2 g 中 90 分钟。在 BW-HG 大鼠中,旋转棒测试中的前庭相关运动协调部分但不完全恢复到 AW-HG 大鼠或在 1 g 下饲养的大鼠的水平(1-G 组)。与 AW-HG 和 1-G 大鼠相比,BW-HG 和前庭损伤大鼠的负荷诱导的血浆促肾上腺皮质激素和皮质酮水平显著降低。与 AW-HG 和 1-G 大鼠相比,下丘脑室旁核中的精氨酸加压素和 Fos 表达水平也显著降低。相比之下,在实验各组之间,电脚休克引起的血浆皮质酮增加没有差异,这表明在断奶前暴露于 2 g 并未抑制非前庭相关的应激反应。这些结果表明,在断奶前暴露于超重力会特异性地抑制与前庭相关的应激反应,并且在 1 g 下恢复 4 周后,这种抑制不会恢复。