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Phenserine

机译:芬太林

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摘要

Phenserine,a derivative of physostigmine,was first described as an inhibitor of acetylcholinesterase (AChE) and was shown to improve cognition in various experimental paradigms in rodents and dogs.It was clinically tested for Alzheimer's disease,with moderate success in initial Phase II studies.Phenserine deserves attention for an additional quality of action:in addition to inhibiting AChE,it modulates the amount of p-amyloid precursor protein (APP) in neuronal cell culture by reducing APP translation.This effect probably involves interaction of phenserine with a regulatory element in the 5'-untranslated region of the APP gene that controls APP expression.Phenserine apparently reduces translational efficiency of APP mRNA into protein,a process that may involve an interaction with iron and/or an iron-responsive element.As a consequence,phenserine reduces p-amyloid peptide (Ap) formation in vitro and in vivo.Phenserine is also unique because of differing actions of its enantiomers:(-)-phenserine is the active enantiomer for inhibition of AChE,whereas (+)-phenserine ('posiphen') has weak activity as an AChE inhibitor and can be dosed much higher.Both enantiomers are equipotent in downregulating APP expression.(+)-Posiphen may be a promising drug,either alone or in combination with (-)-phenserine,to attenuate the progression of Alzheimer's disease.
机译:毒扁豆碱的衍生物Phenserine首先被描述为乙酰胆碱酯酶(AChE)的抑制剂,并被证明可以提高啮齿动物和狗各种实验模式的认知度,并已在临床上进行了阿尔茨海默氏病的测试,在初期的II期研究中取得了一定的成功。苯丙氨酸具有额外的作用,值得关注:除抑制AChE外,它还通过减少APP翻译来调节神经元细胞培养物中对淀粉样前体蛋白(APP)的量。苯丙氨酸明显降低了APP mRNA转化为蛋白质的效率,该过程可能涉及与铁和/或铁反应性元素的相互作用。对淀粉样肽(Ap)在体内和体外形成。由于其对映异构体的不同作用,苯丙氨酸也很独特:茴香胺是抑制AChE的活性对映体,而(+)-酚(作为阳性)的活性弱于AChE抑制剂,且剂量可能更高。两种对映体在下调APP表达方面是等价的。单独或与(-)-酚组合使用是有希望的药物,可减轻阿尔茨海默氏病的进展。

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