Dimmock J R, Vashishtha S C, Quail J W, Pugazhenthi U, Zimpel Z, Sudom A M, Allen T M, Kao G Y, Balzarini J, De Clercq E
College of Pharmacy and Nutrition, Department of Chemistry, and Department of Biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5C9, Canada.
J Med Chem. 1998 Oct 8;41(21):4012-20. doi: 10.1021/jm9801455.
The syntheses of a series of 1-aryl-5-diethylamino-1-penten-3-one hydrochlorides 1 and 1-aryl-3-diethylamino-1-propanone hydrochlorides 4 were accomplished. Attempts to prepare the corresponding bis(5-aryl-3-oxo-4-pentenyl)ethylamine hydrochlorides 2 and bis(3-aryl-3-oxopropyl)ethylamine hydrochlorides 5 led to the formation of a series of 4-(beta-arylvinyl)-3-(beta-arylvinylketo)-1-ethyl-4-piperidi nol hydrochlorides 9 and 4-aryl-3-arylketo-1-ethyl-4-piperidinol hydrochlorides 11, most of which were converted subsequently into the corresponding quaternary ammonium salts 10 and 12, respectively. The structures of these compounds were determined by 1H NMR spectroscopy and confirmed by X-ray crystallography of representative molecules. Most compounds displayed significant cytotoxicity toward murine P388 and L1210 cells as well as human tumors. In general, Mannich bases containing olefinic bonds were more cytotoxic than the analogues without this functional group, while the piperidines 9 and 11 were more potent than the acyclic analogues 1 and 4, respectively. Correlations were noted between various physicochemical constants in the aryl rings and cytotoxicity. Compound 9d displayed promising in vivo activity against colon cancers. This study has revealed that the piperidines 9 and 11 constitute new classses of cytotoxic agents.
完成了一系列1-芳基-5-二乙氨基-1-戊烯-3-酮盐酸盐1和1-芳基-3-二乙氨基-1-丙酮盐酸盐4的合成。尝试制备相应的双(5-芳基-3-氧代-4-戊烯基)乙胺盐酸盐2和双(3-芳基-3-氧代丙基)乙胺盐酸盐5,结果生成了一系列4-(β-芳基乙烯基)-3-(β-芳基乙烯基酮)-1-乙基-4-哌啶醇盐酸盐9和4-芳基-3-芳基酮-1-乙基-4-哌啶醇盐酸盐11,其中大多数随后分别转化为相应的季铵盐10和12。这些化合物的结构通过1H NMR光谱确定,并通过代表性分子的X射线晶体学得到证实。大多数化合物对小鼠P388和L1210细胞以及人类肿瘤显示出显著的细胞毒性。一般来说,含有烯键的曼尼希碱比没有该官能团的类似物具有更强的细胞毒性,而哌啶9和11分别比无环类似物1和4更有效。注意到芳环中的各种物理化学常数与细胞毒性之间存在相关性。化合物9d对结肠癌显示出有前景的体内活性。这项研究表明,哌啶9和11构成了新的细胞毒性剂类别。