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Benzothiazepine CGP37157 and its isosteric 2′-ethyl analogue provide neuroprotection and block cell calcium entry

机译:苯并噻氮平CGP37157及其等排性2'-乙基类似物可提供神经保护作用并阻止细胞钙进入

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摘要

Benzothiazepine CGP37157 is widely used as tool to explore the role of mitochondria in cell Ca 2+ handling, by its blocking effect of the mitochondria Na +/Ca 2+ exchanger. Recently, CGP37157 has shown to exhibit neuroprotective properties. In the trend to improve its neuroprotection profile, we have synthesized ITH12505, an isosteric analogue having a methyl instead of chlorine at C2′ of the phenyl ring. ITH12505 has exerted neuroprotective properties similar to CGP37157 in chromaffin cells and hippocampal slices stressed with veratridine. Also, both compounds afforded neuroprotection in hippocampal slices stressed with glutamate. However, while ITH12505 elicited protection in SH-SY5Y cells stressed with oligomycin A/rotenone, CGP37157 was ineffective. In hippocampal slices subjected to oxygen/glucose deprivation plus reoxygenation, ITH12505 offered protection at 3-30 μM, while CGP37157 only protected at 30 μM. Both compounds caused blockade of Ca 2+ channels in high K +-depolarized SH-SY5Y cells. An in vitro experiment for assaying central nervous system penetration (PAMPA-BBB; parallel artificial membrane permeability assay for blood-brain barrier) revealed that both compounds could cross the blood-brain barrier, thus reaching their biological targets in the central nervous system. In conclusion, by causing a mild isosteric replacement in the benzothiazepine CGP37157, we have obtained ITH12505, with improved neuroprotective properties. These findings may inspire the design and synthesis of new benzothiazepines targeting mitochondrial Na +/Ca 2+ exchanger and L-type voltage-dependent Ca 2+ channels, having antioxidant properties. © 2012 American Chemical Society.
机译:苄索氮平CGP37157由于其对线粒体Na + / Ca 2+交换子的阻滞作用,被广泛用作探索线粒体在细胞Ca 2+处理中的作用的工具。最近,CGP37157已显示出神经保护特性。在改善其神经保护特性的趋势中,我们合成了ITH12505,这是一种等规类似物,在苯环的C2'处具有甲基而不是氯。 ITH12505在色拉芬细胞和维拉替丁应激的嗜铬细胞和海马切片中具有类似于CGP37157的神经保护特性。同样,两种化合物都在谷氨酸盐胁迫下的海马切片中提供了神经保护作用。但是,尽管ITH12505在受寡霉素A /鱼藤酮胁迫的SH-SY5Y细胞中引起保护,但CGP37157无效。在经历了氧/葡萄糖剥夺加复氧的海马切片中,ITH12505提供了3-30μM的保护,而CGP37157仅提供了30μM的保护。两种化合物均导致高K +去极化的SH-SY5Y细胞中的Ca 2+通道被阻断。一项用于测定中枢神经系统渗透性的体外实验(PAMPA-BBB;用于血脑屏障的平行人工膜通透性测定)表明,这两种化合物均可穿过血脑屏障,从而达到中枢神经系统的生物学目标。综上所述,通过在苯并噻氮平CGP37157中引起轻度的等排取代,我们获得了具有改善的神经保护特性的ITH12505。这些发现可能会启发设计和合成靶向线粒体Na + / Ca 2+交换子和具有抗氧化特性的L型电压依赖性Ca 2+通道的新型苯并硫氮平。 ©2012美国化学学会。

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