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Homobivalent Lamellarin-Like Schiff Bases: In Vitro Evaluation of Their Cancer Cell Cytotoxicity and Multitargeting Anti-Alzheimer’s Disease Potential

机译:同性恋偏相物的层状胶林基地:对其癌细胞细胞毒性的体外评估和多元治疗的抗阿尔茨海默病潜力

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摘要

Marine alkaloids belonging to the lamellarins family, which incorporate a 5,6-dihydro-1-phenylpyrrolo[2,1-a]isoquinoline (DHPPIQ) moiety, possess various biological activities, spanning from antiviral and antibiotic activities to cytotoxicity against tumor cells and the reversal of multidrug resistance. Expanding a series of previously reported imino adducts of DHPPIQ 2-carbaldehyde, novel aliphatic and aromatic Schiff bases were synthesized and evaluated herein for their cytotoxicity in five diverse tumor cell lines. Most of the newly synthesized compounds were found noncytotoxic in the low micromolar range (<30 μM). Based on a Multi-fingerprint Similarity Search aLgorithm (MuSSeL), mainly conceived for making protein drug target prediction, some DHPPIQ derivatives, especially bis-DHPPIQ Schiff bases linked by a phenylene bridge, were prioritized as potential hits addressing Alzheimer’s disease-related target proteins, such as cholinesterases (ChEs) and monoamine oxidases (MAOs). In agreement with MuSSeL predictions, homobivalent para-phenylene DHPPIQ Schiff base 14 exhibited a noncompetitive/mixed inhibition of human acetylcholinesterase (AChE) with Ki in the low micromolar range (4.69 μM). Interestingly, besides a certain inhibition of MAO A (50% inhibition of the cell population growth (IC50) = 12 μM), the bis-DHPPIQ 14 showed a good inhibitory activity on self-induced β-amyloid (Aβ)1–40 aggregation (IC50 = 13 μM), which resulted 3.5-fold stronger than the respective mono-DHPPIQ Schiff base 9.
机译:属于层状物的海洋生物碱含有5,6-二氢-1-苯基吡咯[2,1-a]异喹啉(DHPPIQ)部分,具有各种生物活性,跨越抗病毒和抗生素活性对肿瘤细胞的细胞毒性和细胞毒性多药抗性的逆转。扩大了一系列先前报道的DHPPIQ 2-碳醛,新的脂族和芳族席氏碱基的加工,并在本文中合成并评估了五种不同的肿瘤细胞系中的细胞毒性。在低微摩尔范围(<30μm)中,发现大部分新合成的化合物在低微胆管范围内(<30μm)。基于多指纹相似性搜索算法(贻贝),主要构思用于制备蛋白质药物靶预测,一些DHPPIQ衍生物,特别是由亚苯基桥连接的BIS-DHPPIQ Schiff碱,优先考虑寻找阿尔茨海默病相关的靶蛋白的潜在袭击,例如胆碱酯酶(Ches)和单胺氧化酶(MAOS)。在贻贝预测方面,同性恋甲基 - 苯基DHPPIQ Shpifq底座14在低微摩尔范围(4.69μm)中具有Ki的非竞争性/混合抑制。有趣的是,除了对MAO A的一定抑制(对细胞群生长的50%抑制(IC 50)=12μm),BIS-DHPPIQ 14在自诱导β-淀粉样蛋白(Aβ)1-40聚集上显示出良好的抑制活性(IC50 =13μm),比相应的单声道-DHPIQ席夫底座9强度为3.5倍。

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