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首页> 外文期刊>Molecules >New Flurbiprofen Derivatives: Synthesis, Membrane Affinity and Evaluation of in Vitro Effect on β-Amyloid Levels
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New Flurbiprofen Derivatives: Synthesis, Membrane Affinity and Evaluation of in Vitro Effect on β-Amyloid Levels

机译:新的氟比洛芬衍生物:合成,膜亲和性和对β淀粉样蛋白水平体外影响的评价。

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Alzheimer’s disease (AD) is characterized by irreversible and progressive loss of memory and cognition and profound neuronal loss. Current therapeutic strategies for the treatment of AD have been directed to a variety of targets with the aim of reversing or preventing the disease but, unfortunately, the available treatments often produce no significant clinical benefits. During the last decades compounds that inhibit or modulate γ-secretase, reducing β amyloid (Aβ) levels, have been considered as potential therapeutics for AD. Among these the (R)-enantiomer of flurbiprofen (FLU) seems to be very promising, but it shows low brain penetration. In this study, in order to improve the properties of FLU against Alzheimer’s pathogenesis we synthesized some novel FLU lipophilic analogues. Lipophilicity of the new molecules has been characterized in terms of clogP, log KC18/W and log K IAM/W values. Permeability has been determined in both gastrointestinal PAMPA (PAMPA-GI) at different pH values and in brain blood barrier PAMPA (PAMPA-BBB) models. They were also tested for their ability to inhibit in vitro γ-secretase activity using rat CTXTNA2 astrocytes. Interestingly, the investigated molecules demonstrated to reduce Aβ 42 levels without affecting the amyloid precursor protein APP level in a clear concentrations-dependent manner.
机译:阿尔茨海默氏病(AD)的特征是不可逆和进行性的记忆力和认知力丧失以及严重的神经元丧失。当前用于治疗AD的治疗策略已经针对多种目标,目的是逆转或预防该疾病,但是不幸的是,可用的治疗常常没有产生明显的临床益处。在最近的几十年中,抑制或调节γ-分泌酶,降低β淀粉样蛋白(Aβ)水平的化合物被认为是AD的潜在疗法。其中,氟比洛芬的(R)-对映异构体(FLU)看起来非常有前景,但显示出较低的脑部穿透力。在这项研究中,为了改善FLU对阿尔茨海默氏病发病机制的特性,我们合成了一些新颖的FLU亲脂性类似物。通过clogP,log K C18 / W 和log K IAM / W 值表征了新分子的亲脂性。已在不同pH值的胃肠道PAMPA(PAMPA-GI)和脑血屏障PAMPA(PAMPA-BBB)模型中确定了通透性。还使用大鼠CTXTNA2星形胶质细胞测试了它们抑制体外γ-分泌酶活性的能力。有趣的是,所研究的分子证明以明显的浓度依赖性方式降低Aβ42水平而不影响淀粉样前体蛋白APP水平。

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