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Neuroprotective activity of selective mGlu1 and mGlu5 antagonists in vitro and in vivo.

机译:选择性的mGlu1和mGlu5拮抗剂在体外和体内的神经保护活性。

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The neuroprotective potential of allosteric mGlu5 and mGlu1 antagonists such as 6-methyl-2-(phenylethynyl)-pyridin (MPEP)/[(2-methyl-1,3-thiazol-4-yl)ethynyl]pyridine (MTEP) and (3-ethyl-2-methyl-quinolin-6-yl)-(4-methoxy-cyclohexyl)-methanone methanesulfonate (EMQMCM), was tested in vitro in organotypic hippocampal cultures and in the middle cerebral artery occlusion model of stroke in vivo. Both classes of agent have high selectivity toward mGlu sub-types and are active in animal models of various diseases indicating satisfactory CNS penetration. In organotypic hippocampal cultures MPEP showed high neuroprotective potency against sub-chronic (12 days) insult produced by 3-NP with an IC50 of c.a. 70 nM. In contrast, although the mGlu1 antagonist EMQMCM was also protective, it seems to be weaker yielding an IC50 of c.a. 1 microM. Similarly, in the transient (90 min) middle cerebral artery occlusion model of ischaemia in rats, MTEP seems to be more effective than EMQMCM. MTEP, at 2.5 mg/kg and at 5 mg/kg provided 50 and 70% neuroprotection if injected 2 h after the onset of ischaemia. At a dose of 5 mg/kg, significant (50%) neuroprotection was also seen if the treatment was delayed by 4 h. EMQMCM was not protective at 5 mg/kg (given 2 h after occlusion) but at 10 mg/kg 50% of neuroprotection was observed. The present data support stronger neuroprotective potential of mGlu5 than mGlu1 antagonists.
机译:变构mGlu5和mGlu1拮抗剂如6-甲基-2-(苯基乙炔基)-吡啶(MPEP)/ [(2-甲基-1,3-噻唑-4-基)乙炔基]吡啶(MTEP)和( 3-乙基-2-甲基喹啉-6-基)-(4-甲氧基-环己基)-甲酮甲烷磺酸盐(EMQMCM)在器官型海马培养物中和中风的大脑中动脉闭塞模型中进行了体外测试。这两类药物对mGlu亚型都具有高选择性,并且在各种疾病的动物模型中具有活性,表明令人满意的CNS渗透性。在器官型海马培养物中,MPEP对由3-NP引起的亚慢性(12天)损伤表现出高度的神经保护作用,IC50为c.a。 70 nM。相反,尽管mGlu1拮抗剂EMQMCM也具有保护作用,但似乎较弱,IC50为c.a。 1微米同样,在大鼠短暂性脑缺血局部缺血(90分钟)模型中,MTEP似乎比EMQMCM更有效。如果在局部缺血发作2小时后注射,则2.5 mg / kg和5 mg / kg的MTEP可提供50%和70%的神经保护。如果将治疗延迟4小时,则在5 mg / kg的剂量下,还可以观察到显着(50%)的神经保护作用。 EMQMCM在5 mg / kg(闭塞2小时后)无保护作用,但在10 mg / kg时有50%的神经保护作用。目前的数据支持mGlu5比mGlu1拮抗剂更强的神经保护潜力。

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