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用于设计串联分子抗氧化剂和绿色催化剂的氟西汀支架。

Fluoxetine scaffold to design tandem molecular antioxidants and green catalysts.

作者信息

Ribaudo Giovanni, Bortoli Marco, Ongaro Alberto, Oselladore Erika, Gianoncelli Alessandra, Zagotto Giuseppe, Orian Laura

机构信息

Dipartimento di Medicina Molecolare e Traslazionale, Università degli Studi di Brescia Viale Europa 11 25123 Brescia Italy.

Dipartimento di Scienze Chimiche, Università degli Studi di Padova Via Marzolo 1 35131 Padova Italy

出版信息

RSC Adv. 2020 May 15;10(32):18583-18593. doi: 10.1039/d0ra03509b. eCollection 2020 May 14.

Abstract

Fluoxetine finds application in the treatment of depression and mood disorders. This selective serotonin-reuptake inhibitor (SSRI) also contrasts oxidative stress by direct ROS scavenging, modulation of the endogenous antioxidant defense system, and/or enhancement of the serotonin antioxidant capacity. We synthesised some fluoxetine analogues incorporating a selenium nucleus, thus expanding its antioxidant potential by enabling a hydroperoxides-inactivating, glutathione peroxidase (GPx)-like activity. Radical scavenging and peroxidatic activity were combined in a water-soluble, drug-like, tandem antioxidant molecule. Selenofluoxetine derivatives were reacted with HO in water, and the mechanistic details of the reaction were unravelled combining nuclear magnetic resonance (NMR), electrospray ionisation-mass spectrometry (ESI-MS) and quantum chemistry calculations. The observed oxidation-elimination process led to the formation of seleninic acid and cinnamylamine in a -selective manner. This mechanism is likely to be extended to other substrates for the preparation of unsaturated cinnamylamines.

摘要

氟西汀可用于治疗抑郁症和情绪障碍。这种选择性5-羟色胺再摄取抑制剂(SSRI)还通过直接清除活性氧、调节内源性抗氧化防御系统和/或增强5-羟色胺抗氧化能力来对抗氧化应激。我们合成了一些含有硒核的氟西汀类似物,从而通过赋予其类似谷胱甘肽过氧化物酶(GPx)的氢过氧化物失活活性来扩展其抗氧化潜力。自由基清除和过氧化物酶活性结合在一个水溶性、类药物的串联抗氧化分子中。硒代氟西汀衍生物在水中与HO反应,并结合核磁共振(NMR)、电喷雾电离质谱(ESI-MS)和量子化学计算揭示了反应的机理细节。观察到的氧化消除过程以一种选择性的方式导致了亚硒酸和肉桂胺的形成。这种机制可能会扩展到其他用于制备不饱和肉桂胺的底物上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b6/9053872/68ed4f5cb50e/d0ra03509b-f1.jpg

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