Scipioni Matteo, Kay Graeme, Megson Ian L, Kong Thoo Lin Paul
School of Pharmacy and Life Sciences , Robert Gordon University , Aberdeen , UK . Email:
Institute of Health Research & Innovation , University of the Highlands and Islands , Inverness , UK.
Medchemcomm. 2019 Apr 8;10(5):764-777. doi: 10.1039/c9md00048h. eCollection 2019 May 1.
Alzheimer's disease (AD) is the most common cause of dementia worldwide, normally affecting people aged over 65. Due to the multifactorial nature of this disease, a "multi-target-directed ligands" (MTDLs) approach for the treatment of this illness has generated intense research interest in the past few years. Vanillin is a natural antioxidant and it provides a good starting point for the synthesis of new compounds with enhanced antioxidant properties, together with many biological activities, including β-amyloid peptide aggregating and acetylcholinesterase inhibiting properties. Here we report novel vanillin derivatives, bearing a tacrine or a naphthalimido moiety. All compounds exhibited improved antioxidant properties using DPPH assay, with IC as low as 19.5 μM, FRAP and ORAC assays, with activities up to 1.54 and 6.4 Trolox equivalents, respectively. In addition, all compounds synthesized showed inhibitory activity toward acetylcholinesterase enzyme at μmolar concentrations using the Ellman assay. Computational docking studies of selected compounds showed interactions with both the catalytic anionic site and the peripheral anionic site of the enzyme. Furthermore, these compounds inhibited Aβ amyloid aggregation using the fluorometric ThT assay, with compound showing comparable inhibitory activity to the positive control, curcumin. At cellular level compound (1 μM) showed significant protective effects in neuroblastoma SH-SY5Y cell line when treated with hydrogen peroxide (400 μM). In our opinion, vanillin derivatives could provide a viable platform for future development of multi-targeted ligands against AD.
阿尔茨海默病(AD)是全球痴呆最常见的病因,通常影响65岁以上的人群。由于该疾病的多因素性质,“多靶点导向配体”(MTDLs)治疗方法在过去几年引发了强烈的研究兴趣。香草醛是一种天然抗氧化剂,为合成具有增强抗氧化性能以及包括β-淀粉样肽聚集抑制和乙酰胆碱酯酶抑制特性等多种生物活性的新化合物提供了良好的起点。在此我们报道了带有他克林或萘二甲酰亚胺部分的新型香草醛衍生物。使用DPPH测定法,所有化合物均表现出改善的抗氧化性能,IC低至19.5 μM,使用FRAP和ORAC测定法,活性分别高达1.54和6.4 Trolox当量。此外,使用Ellman测定法,所有合成的化合物在微摩尔浓度下均表现出对乙酰胆碱酯酶的抑制活性。所选化合物的计算对接研究表明与该酶的催化阴离子位点和外周阴离子位点均有相互作用。此外,使用荧光ThT测定法,这些化合物抑制Aβ淀粉样蛋白聚集,化合物表现出与阳性对照姜黄素相当的抑制活性。在细胞水平,当用400 μM过氧化氢处理时,化合物(1 μM)在神经母细胞瘤SH-SY5Y细胞系中显示出显著的保护作用。我们认为,香草醛衍生物可为未来开发针对AD的多靶点配体提供一个可行的平台。