Janecki Tomasz, Błaszczyk Edyta, Studzian Kazimierz, Janecka Anna, Krajewska Urszula, Rózalski Marek
Institute of Organic Chemistry, Technical University of Łódź, Zeromskiego 116, 90-924 Łódź, Poland.
J Med Chem. 2005 May 19;48(10):3516-21. doi: 10.1021/jm048970a.
5-Alkyl- and 5-arylalkyl-3-methylenedihydrofuran-2-ones 13a-e, 3-alkylidenedihydrofuran-2-ones 18a-c, and 3-methylenepyrrolidin-2-ones 16a-e were synthesized utilizing ethyl 2-diethoxyphosphoryl-4-nitroalkanoates 9a-e as common intermediates. All obtained compounds were tested against L-1210, HL-60, and NALM-6 leukemia cells. The highest cytotoxic activity was observed for 3-methylenefuranones 13d,e bearing benzyl or 3,4-dimethoxyphenylmethyl substituents at position 5, with IC(50) values of 5.4 and 6.0 microM, respectively. Contrary to the literature reports, no enhancement in activity due to the presence of a hydroxy group was found when the cytotoxicity of furanones 13a,b,d and 5-(1'-hydroxyalkyl)-3-methylenedihydrofuran-2-ones 6a,b,d was compared. The anticancer activity of pyrrolidinones 16a-e and 3-alkylidenefuranones 18a-c was much weaker than that of furanones 13a-e.
以2-二乙氧基磷酰基-4-硝基链烷酸乙酯9a-e作为通用中间体,合成了5-烷基和5-芳基烷基-3-亚甲基二氢呋喃-2-酮13a-e、3-亚烷基二氢呋喃-2-酮18a-c和3-亚甲基吡咯烷-2-酮16a-e。对所有得到的化合物针对L-1210、HL-60和NALM-6白血病细胞进行了测试。对于在5位带有苄基或3,4-二甲氧基苯基甲基取代基的3-亚甲基呋喃酮13d、e,观察到了最高的细胞毒性活性,其IC(50)值分别为5.4和6.0 microM。与文献报道相反,当比较呋喃酮13a、b、d和5-(1'-羟烷基)-3-亚甲基二氢呋喃-2-酮6a、b、d的细胞毒性时,未发现由于羟基的存在而导致活性增强。吡咯烷酮16a-e和3-亚烷基呋喃酮18a-c的抗癌活性比呋喃酮13a-e弱得多。