Synthesis and Biological Evaluation of Colchicine─Aryl/Alkyl Amine Hybrids as Potential Noncytotoxic Cholinesterase Inhibitors: Identification of SBN-284 as a Dual Inhibitor of Cholinesterases and NLRP3 Inflammasome.

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-08-07 Epub Date: 2024-07-26 DOI:10.1021/acschemneuro.4c00153
Chilakala Nagarjuna Reddy, Vijay K Nuthakki, Ankita Sharma, Sumera Malik, Misbah Tabassum, Rajesh Kumar, Sushil Choudhary, Fiza Iqbal, Ziya Tufail, Dilip M Mondhe, Ajay Kumar, Sandip B Bharate
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Abstract

Colchicine, one of the oldest anti-inflammatory natural products still used clinically, inhibits NF-κB signaling and NLRP3 inflammasome activation. Despite its cytotoxicity and narrow therapeutic range, colchicine continues to intrigue medicinal chemists exploring its anti-inflammatory potential. This study aimed to investigate the colchicine scaffold for its role in Alzheimer's disease by targeting neuroinflammation and cholinesterases. Molecular docking revealed that colchicine's hydrophobic trimethoxyphenyl framework can potentially bind to the peripheral anionic site of cholinesterases. Hybrid structures combining colchicine with aryl/alkyl amines were designed to bind both peripheral and catalytic sites of cholinesterases. We describe here the design, synthesis, and in vitro cytotoxicity evaluation of these colchicine-aryl/alkyl amine hybrids, along with their in silico interactions with the cholinesterase active site gorge. Nontoxic analogs demonstrating strong cholinesterase binding affinity were further evaluated for their anticholinesterase and antineuroinflammatory activities. The colchicine-donepezil hybrid, SBN-284 (3x), inhibited both acetylcholinesterase and butyrylcholinesterase as well as the NLRP3 inflammasome complex at low micromolar concentrations. It achieved this through noncompetitive inhibition, occupying the active site gorge and interacting with both peripheral and catalytic anionic sites of cholinesterases. Analog 3x was shown to cross the blood-brain barrier and exhibited no toxicity to neuronal cells, primary macrophages, or epithelial fR2 cells. These findings highlight the potential of this lead compound for further preclinical investigation as a promising anti-Alzheimer agent.

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作为潜在的无细胞毒性胆碱酯酶抑制剂的秋水仙碱-芳基/烷基胺杂交化合物的合成与生物学评价:鉴定 SBN-284 为胆碱酯酶和 NLRP3 炎症体的双重抑制剂。
秋水仙碱是目前仍在临床上使用的最古老的抗炎天然产品之一,它能抑制 NF-κB 信号传导和 NLRP3 炎性体的激活。尽管秋水仙碱具有细胞毒性,且治疗范围较窄,但它的抗炎潜力仍然吸引着医药化学家的探索。本研究旨在通过针对神经炎症和胆碱酯酶研究秋水仙碱支架在阿尔茨海默病中的作用。分子对接显示,秋水仙碱的疏水性三甲氧基苯基框架有可能与胆碱酯酶的外周阴离子位点结合。我们设计了秋水仙碱与芳基/烷基胺的混合结构,以结合胆碱酯酶的外周和催化位点。我们在此介绍了这些秋水仙碱-芳基/烷基胺杂化物的设计、合成和体外细胞毒性评估,以及它们与胆碱酯酶活性位点峡部的硅学相互作用。此外,还进一步评估了显示出与胆碱酯酶强结合亲和力的无毒类似物的抗胆碱酯酶和抗神经炎活性。秋水仙碱-多奈哌齐混合物 SBN-284(3x)在低微摩尔浓度下可抑制乙酰胆碱酯酶和丁酰胆碱酯酶以及 NLRP3 炎症小体复合物。它通过非竞争性抑制作用,占据活性位点峡部,并与胆碱酯酶的外周位点和催化阴离子位点相互作用来达到这一目的。研究表明,类似物 3x 能穿过血脑屏障,对神经细胞、原代巨噬细胞或上皮 fR2 细胞无毒性。这些发现凸显了该先导化合物作为一种有前途的抗阿尔茨海默氏症药物进行进一步临床前研究的潜力。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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