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(-)-Tarchonanthuslactone: Design of New Analogues, Evaluation of their Antiproliferative Activity on Cancer Cell Lines, and Preliminary Mechanistic Studies

机译:(-)-Tarchonanthuslactone:设计新的类似物,评估其对癌细胞系的抗增殖活性,并进行初步的机理研究

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Natural products containing the alpha,beta-unsaturated delta-lactone skeleton have been shown to possess a variety of biological activities. The natural product (-)-tarchonanthuslactone (1) possessing this privileged scaffold is a popular synthetic target, but its biological activity remains underexplored. Herein, the total syntheses of dihydropyran-2-ones modeled on the structure of 1 were undertaken. These compounds were obtained in overall yields of 17-21 % based on the Keck asymmetric allylation reaction and were evaluated in vitro against eight different cultured human tumor cell lines. We further conducted initial investigation into the mechanism of action of selected analogues. Dihydropyran-2-one 8 [(S,E)-(6-oxo-3,6-dihydro-2H-pyran-2-yl)methyl 3-(3,4-dihydroxyphenyl)acrylate], a simplified analogue of (-)-tarchonanthuslactone (1) bearing an additional electrophilic site and a catechol system, was the most cytotoxic and selective compound against six of the eight cancer cell lines analyzed, including the pancreatic cancer cell line. Preliminary studies on the mechanism of action of compound 8 on pancreatic cancer demonstrated that apoptotic cell death takes place mediated by an increase in the level of reactive oxygen species. It appears as though compound 8, possessing two Michael acceptors and a catechol system, may be a promising scaffold for the selective killing of cancer cells, and thus, it deserves further investigation to determine its potential for cancer therapy.
机译:含有α,β-不饱和δ-内酯骨架的天然产物已显示具有多种生物活性。具有这种特权支架的天然产物(-)-酒石酸内酯(1)是一个受欢迎的合成靶标,但其生物学活性仍未得到开发。在此,进行了以1的结构为模型的二氢吡喃-2-酮的全部合成。这些化合物基于Keck不对称烯丙基化反应以17-21%的总收率获得,并针对八种不同的人类肿瘤细胞系进行了体外评估。我们进一步对所选类似物的作用机理进行了初步研究。二氢吡喃-2-酮8 [(S,E)-(6-氧代-3,6-二氢-2H-吡喃-2-基)甲基3-(3,4-二羟基苯基)丙烯酸酯],( -)-tarchonanthuslactone(1)带有一个额外的亲电部位和一个邻苯二酚系统,是对包括胰腺癌细胞在内的八种癌细胞中六种最具细胞毒性和选择性的化合物。化合物8对胰腺癌的作用机理的初步研究表明,凋亡细胞的死亡是由活性氧水平的升高介导的。具有两个迈克尔受体和一个邻苯二酚系统的化合物8似乎是选择性杀死癌细胞的有前途的支架,因此,值得进一步研究以确定其在癌症治疗中的潜力。

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