Saransaari P, Oja S S
Tampere Brain Research Center, Medical School, University of Tampere, and Centre for Laboratory Medicine, Tampere University Hospital, Finland.
Amino Acids. 2007;32(3):439-46. doi: 10.1007/s00726-006-0375-1. Epub 2006 Sep 27.
Taurine has been thought to be essential for the development and survival of neural cells and to protect them under cell-damaging conditions. In the brain stem taurine regulates many vital functions, including cardiovascular control and arterial blood pressure. We have recently characterized the release of taurine in the adult and developing brain stem under normal conditions. Now we studied the properties of preloaded [3H]taurine release under various cell-damaging conditions (hypoxia, hypoglycemia, ischemia, the presence of metabolic poisons and free radicals) in slices prepared from the mouse brain stem from developing (7-day-old) and young adult (3-month-old) mice, using a superfusion system. Taurine release was greatly enhanced under these cell-damaging conditions, the only exception being the presence of free radicals in both age groups. The ischemia-induced release was characterized to consist of both Ca2+-dependent and -independent components. Moreover, the release was mediated by Na+-, Cl--dependent transporters operating outwards, particularly in the immature brain stem. Cl- channel antagonists reduced the release at both ages, indicating that a part of the release occurs through ion channels, and protein kinase C appeared to be involved. The release was also modulated by cyclic GMP second messenger systems, since inhibitors of soluble guanylyl cyclase and phosphodiesterases suppressed ischemic taurine release. The inhibition of phospholipases also reduced taurine release at both ages. This ischemia-induced taurine release could constitute an important mechanism against excitotoxicity, protecting the brain stem under cell-damaging conditions.
牛磺酸被认为对神经细胞的发育和存活至关重要,并能在细胞损伤条件下保护它们。在脑干中,牛磺酸调节许多重要功能,包括心血管控制和动脉血压。我们最近已经描述了在正常条件下成年和发育中的脑干中牛磺酸的释放情况。现在,我们使用灌流系统,研究了从发育中的(7日龄)和年轻成年(3月龄)小鼠的脑干制备的切片在各种细胞损伤条件(缺氧、低血糖、缺血、代谢毒物和自由基存在)下预加载的[3H]牛磺酸释放的特性。在这些细胞损伤条件下,牛磺酸释放大大增强,两个年龄组中唯一的例外是自由基的存在。缺血诱导的释放其特征在于由钙依赖性和非依赖性成分组成。此外,释放是由向外运作的钠依赖性、氯依赖性转运体介导的,特别是在未成熟的脑干中。氯通道拮抗剂在两个年龄组都降低了释放,表明一部分释放是通过离子通道发生的,并且蛋白激酶C似乎参与其中。释放也受到环鸟苷酸第二信使系统的调节,因为可溶性鸟苷酸环化酶和磷酸二酯酶的抑制剂抑制了缺血性牛磺酸释放。磷脂酶的抑制在两个年龄组也降低了牛磺酸释放。这种缺血诱导的牛磺酸释放可能构成一种对抗兴奋性毒性的重要机制,在细胞损伤条件下保护脑干。