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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Bilirubin facilitates depolarizing GABA/glycinergic synaptic transmission in the ventral cochlear nucleus of rats.
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Bilirubin facilitates depolarizing GABA/glycinergic synaptic transmission in the ventral cochlear nucleus of rats.

机译:胆红素促进大鼠腹侧耳蜗核中的GABA /甘氨酸能突触传递去极化。

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摘要

Excitotoxicity contributes to bilirubin-induced central nervous system injury; however, the mechanisms involved remain controversial. Previous studies from our lab have demonstrated that in juvenile rats bilirubin facilitates gamma-aminobutyric acid (GABA)/glycinergic synaptic transmission through activation of presynaptic protein kinase A (PKA) in isolated neurons of the ventral cochlear nucleus (VCN). However, the descending mechanism and physiological effects of bilirubin-induced potentiation remain unclear. Here, whole-cell recordings show that 3x10(-6) M bilirubin increased the frequency of both spontaneous (sPSCs) and miniature (mPSCs) GABA/glycinergic postsynaptic currents in VCN neurons of postnatal day 12-14 (P12-14) rats. This action was dependent on the concentration and duration of exposure to bilirubin and was only partially suppressed by 10(-5) M bicuculline. The potentiation effect on mPSCs persisted in a Ca2+-free solution, but was fully occluded by pretreatment with 1,2 bis-(2-aminophenoxy) ethane-N,N,N',N'-tetraacetic acid acetoxymethyl ester (BAPTA-AM), an intracellular Ca2+ chelator. Following pretreatment of the neurons with BAPTA-AM, forskolin, a PKA activator, had no effect on the frequency or amplitude of mPSCs. This suggests that Ca2+ release from presynaptic stores is part of the descending pathway of PKA activation and is responsible for biliurbin-induced potentiation of cell activity. Using gramicidin-perforated patch recordings, the reversal potential of GABA-evoked currents (EGABA) was also investigated. The GABA response resulted in depolarization of 12 of 20 recorded VCN neurons from P12-14 rats. Therefore, potentiation of depolarizing GABA/glycinergic transmission by bilirubin may underlie bilirubin excitotoxicity, which may play a role in the hearing impairment observed among hyperbilirubinemic neonates.
机译:兴奋性毒性导致胆红素引起的中枢神经系统损伤。但是,涉及的机制仍存在争议。我们实验室先前的研究表明,在幼年大鼠中,胆红素通过激活腹侧耳蜗核(VCN)的分离神经元中的突触前蛋白激酶A(PKA)来促进γ-氨基丁酸(GABA)/甘氨酸能突触传递。但是,尚不清楚胆红素诱导的增强作用的下降机制和生理作用。在这里,全细胞记录显示3x10(-6)M胆红素增加了出生后12-14天(P12-14)大鼠VCN神经元中自发(sPSCs)和微型(mPSCs)GABA /甘氨酸能突触后电流的频率。该作用取决于暴露于胆红素的浓度和持续时间,并且仅部分被10(-5)M双小分子抑制。对mPSC的增强作用在无Ca2 +溶液中持续存在,但通过用1,2-双-(2-氨基苯氧基)乙烷-N,N,N',N'-N'-四乙酸乙酰氧基甲基酯(BAPTA-AM)预处理而完全被遮挡),一种细胞内Ca2 +螯合剂。用BAPTA-AM预处理神经元后,福斯高林(一种PKA激活剂)对mPSC的频率或幅度没有影响。这表明从突触前存储释放的Ca2 +是PKA激活的下降途径的一部分,并负责胆红素诱导的细胞活性增强。使用短杆菌肽穿孔的贴片记录,还研究了GABA诱发电流(EGABA)的逆转电位。 GABA反应导致P12-14大鼠20个记录的VCN神经元中的12个去极化。因此,胆红素对GABA /甘氨酸能传递去极化作用的增强可能是胆红素兴奋性毒性的基础,这可能在高胆红素血症新生儿中观察到的听力障碍中起作用。

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