Morita Hironobu, Abe Chikara, Awazu Chihiro, Tanaka Kunihiko
Department of Physiology, Gifu University Graduate School of Medicine, 1-1 Yanagido, Gifu 501-1194, Japan.
Neurosci Lett. 2007 Feb 2;412(3):201-5. doi: 10.1016/j.neulet.2006.11.014. Epub 2006 Nov 22.
To test the hypothesis that an altered gravitational environment induces plastic changes in the vestibulo-cardiovascular reflex, arterial pressure (AP) and hypothalamic glutamate concentration were examined in 2 groups of conscious rats, i.e., a 3-G group and a 1-G group, in which rats were maintained under a 3-G and 1-G environment for 2 weeks, respectively. The vestibulo-cardiovascular reflex was stimulated by a gravitational change induced by a parabolic flight that consisted of 3 phases: "pull-up", during which the G load gradually increased to 2G; a 20s "push-over" into microgravity; and "pull-out", during which the G load increased to 1.8. In the 1-G group, the AP increased by 11.9+/-1.2 mmHg during the pull-up hypergravity period. The AP response was significantly attenuated in the 3-G group (4.0+/-0.8 mmHg). During the push-over microgravity period, the AP decreased from the peak level in the pull-up period and recovered to the pre-parabolic control level (-1.8+/-2.4 mmHg). In rats of the 3-G group, the AP was not altered by push-over microgravity. These AP responses were associated with a significant increase in the glutamate concentration in the hypothalamus (4.4+/-0.7%). The glutamate response was also significantly attenuated in the 3-G group compared with that in the 1-G group. These results indicate that an altered gravitational environment induces plastic alterations in the vestibulo-cardiovascular reflex.
为了验证重力环境改变会引起前庭-心血管反射可塑性变化这一假说,分别在两组清醒大鼠(即3-G组和1-G组)中检测动脉压(AP)和下丘脑谷氨酸浓度,两组大鼠分别在3-G和1-G环境下维持2周。通过抛物线飞行诱导的重力变化刺激前庭-心血管反射,抛物线飞行由三个阶段组成:“拉起”阶段,在此期间G负荷逐渐增加至2G;20秒的“推覆”进入微重力阶段;以及“拉出”阶段,在此期间G负荷增加至1.8。在1-G组中,拉起超重阶段动脉压升高11.9±1.2 mmHg。3-G组的动脉压反应明显减弱(4.0±0.8 mmHg)。在推覆微重力阶段,动脉压从拉起阶段的峰值水平下降,并恢复到抛物线飞行前的对照水平(-1.8±2.4 mmHg)。在3-G组大鼠中,推覆微重力并未改变动脉压。这些动脉压反应与下丘脑谷氨酸浓度显著升高(4.4±0.7%)相关。与1-G组相比,3-G组的谷氨酸反应也明显减弱。这些结果表明,重力环境改变会引起前庭-心血管反射的可塑性改变。