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R-ketamine: a rapid-onset and sustained antidepressant without psychotomimetic side effects

机译:R-氯胺酮:一种快速发作且持续的抗抑郁药无拟精神病药副作用

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摘要

Although the efficacy of racemate ketamine, a rapid onset and sustained antidepressant, for patients with treatment-resistant depression was a serendipitous finding, clinical use of ketamine is limited, due to psychotomimetic side effects and abuse liability. Behavioral and side-effect evaluation tests were applied to compare the two stereoisomers of ketamine. To elucidate their potential therapeutic mechanisms, we examined the effects of these stereoisomers on brain-derived neurotrophic factor (BDNF)–TrkB signaling, and synaptogenesis in selected brain regions. In the social defeat stress and learned helplessness models of depression, R-ketamine showed a greater potency and longer-lasting antidepressant effect than S-ketamine (esketamine). Furthermore, R-ketamine induced a more potent beneficial effect on decreased dendritic spine density, BDNF–TrkB signaling and synaptogenesis in the prefrontal cortex (PFC), CA3 and dentate gyrus (DG) of the hippocampus from depressed mice compared with S-ketamine. However, neither stereoisomer affected these alterations in the nucleus accumbens of depressed mice. In behavioral tests for side effects, S-ketamine, but not R-ketamine, precipitated behavioral abnormalities, such as hyperlocomotion, prepulse inhibition deficits and rewarding effects. In addition, a single dose of S-ketamine, but not R-ketamine, caused a loss of parvalbumin (PV)-positive cells in the prelimbic region of the medial PFC and DG. These findings suggest that, unlike S-ketamine, R-ketamine can elicit a sustained antidepressant effect, mediated by increased BDNF–TrkB signaling and synaptogenesis in the PFC, DG and CA3. R-ketamine appears to be a potent, long-lasting and safe antidepressant, relative to S-ketamine, as R-ketamine appears to be free of psychotomimetic side effects and abuse liability.
机译:尽管消旋氯胺酮(一种快速起效和持续的抗抑郁药)的疗效是偶然发现的,但对于拟治疗的抑郁症患者却是偶然发现的,但由于拟精神病药物的副作用和滥用责任,氯胺酮的临床应用受到限制。行为和副作用评估测试用于比较氯胺酮的两种立体异构体。为了阐明其潜在的治疗机制,我们检查了这些立体异构体对脑源性神经营养因子(BDNF)-TrkB信号传导和特定脑区域突触形成的影响。在社交挫败压力和学习到的抑郁无助模型中,R-氯胺酮比S-氯胺酮(esketamine)显示出更大的效力和更持久的抗抑郁作用。此外,与S-氯胺酮相比,R-氯胺酮对抑郁症小鼠海马的前突皮质(PFC),CA3和齿状回(DG)降低树突棘密度,BDNF-TrkB信号传导和突触形成有更强的有益作用。但是,这两种立体异构体都不会影响抑郁小鼠伏隔核的这些变化。在副作用的行为测试中,S-氯胺酮而不是R-氯胺酮会引起行为异常,例如运动过度,前冲抑制缺陷和奖励作用。另外,单剂量的S-氯胺酮而不是R-氯胺酮引起内侧PFC和DG前缘区域小白蛋白(PV)阳性细胞的丢失。这些发现表明,与S-氯胺酮不同,R-氯胺酮可以引起持续的抗抑郁作用,这是由PFC,DG和CA3中BDNF-TrkB信号转导和突触形成介导的。相对于S-氯胺酮,R-氯胺酮似乎是一种有效,持久且安全的抗抑郁药,因为R-氯胺酮似乎没有拟精神病药物副作用和滥用责任。

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