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Novel 35-bis(arylidene)-4-oxo-1-piperidinyl dimers: Structure—activity relationships and potent antileukemic and antilymphoma cytotoxicity

机译:新型35-双(亚芳基)-4-氧代-1-哌啶基二聚体:结构-活性关系以及有效的抗白血病和抗淋巴瘤细胞毒性

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摘要

Novel clusters of 3,5-bis(benzylidene)-4-oxo-1-piperidinyl dimers >3–5 were evaluated against human Molt4/C8 and CEM T-lymphocytes and human HeLa cervix adenocarcinoma cells as well as murine L1210 leukemia neoplasms. Several of these compounds demonstrated IC50 values in the submicromolar and low micromolar range and compounds possessing 4-fluoro, 4-chloro and 3,4,5-trimethoxy substituents in the series >3 and >4 were identified as potent molecules. A heat map revealed the very high cytotoxic potencies of representative compounds against a number of additional leukemic and lymphoma cell lines and displayed greater toxicity to these cells than nonmalignant MCF10A and Hs-27 neoplasms. These dienones are more refractory to breast and prostate cancers. The evaluation of representative compounds in series >3–5 against a panel of human cancer cell lines revealed them to be potent cytotoxins with average IC50 values ranging from 0.05 to 8.51 μM In particular, the most potent compound >4g demonstrated over 382-fold and 590-fold greater average cytotoxic potencies in this screen than the reference drugs, melphalan and 5-fluorouracil, respectively. A mode of action investigation of two representative compounds >3f and >4f indicated that they induce apoptosis which is due, at least in part, to the activation of caspase-3 and depolarization of the mitochondrial membrane potential.
机译:还针对人类Molt4 / C8和CEM T淋巴细胞以及人类HeLa宫颈腺癌细胞评估了3,5-双(亚苄基)-4-氧-1-哌啶基二聚体> 3-5 的新型簇作为小鼠L1210白血病肿瘤。这些化合物中的几种表现出在亚微摩尔和低微摩尔范围内的IC50值,并且化合物具有在> 3 和> 4 <系列中具有4-氟,4-氯和3,4,5-三甲氧基取代基的化合物/ strong>被确定为有效分子。热图揭示了代表性化合物对许多其他白血病和淋巴瘤细胞系的极高细胞毒性,并且比非恶性MCF10A和Hs-27肿瘤对这些细胞的毒性更大。这些二烯酮对乳腺癌和前列腺癌更难治。针对一系列人类癌细胞系对> 3-5 系列中的代表性化合物进行的评估显示,它们是有效的细胞毒素,平均IC50值为0.05至8.51μM。特别是,最有效的化合物 > 4g 在此筛选中显示出比参考药物美法仑和5-氟尿嘧啶分别高出382倍和590倍的平均细胞毒性。对两种代表性化合物> 3f 和> 4f 的作用模式研究表明,它们诱导细胞凋亡,这至少部分是由于caspase-3的激活和Caspase-3的去极化作用所致。线粒体膜电位

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