Piotrowska Dorota G, Andrei Graciela, Schols Dominique, Snoeck Robert, Łysakowska Magdalena
Bioorganic Chemistry Laboratory, Faculty of Pharmacy, Medical University of Łódź, 90-151 Łódź, Muszyńskiego 1, Poland.
Rega Institute for Medical Research, KU Leuven, Minderbroedersstraat 10, B-3000 Leuven, Belgium.
Eur J Med Chem. 2017 Jan 27;126:84-100. doi: 10.1016/j.ejmech.2016.10.002. Epub 2016 Oct 4.
Cycloadditions of N-substituted C-(diethoxyphosphoryl)nitrones to N-allylated quinazoline-2,4-diones functionalized at N3 with substituted benzoyl or benzyl groups proceeded with moderate to good diastereoselectivities (d.e. 28-68%). The synthesized isoxazolidine phosphonates were assessed for the antiviral activity against a broad range of DNA and RNA viruses. Compounds trans-13c, cis-13c/trans-13c (86:14), cis-15b/trans-15b (87:13) and trans-15d/cis-15d (95:5) exhibited the highest activity toward both TK and TK VZV strains (mean EC values in the range of 3.0-8.7 μM). The EC's for isoxazolidines trans-12a, cis-12a, cis-13a, trans-13d, cis-15a/trans-15a (50:50) ranged between 6.9 and 8.5 μM for VZV TK strain and between 10.7 and 13.2 μM for VZV TK strain. The isoxazolidine phosphonates cis-15/trans-15 having benzyl substituents both at N3 of the quinazoline-2,4-dione skeleton and at N2 of the isoxazolidine ring displayed some anti-cytomegalovirus potency but at the same time showed significant cytostatic activity for human embryonic lung fibroblasts (used to carry out the antiviral assays) as well as for other cell lines (i.e. CEM, L1210, HeLa and HMEC-1).
N-取代的C-(二乙氧基磷酰基)硝酮与在N3位被取代苯甲酰基或苄基官能化的N-烯丙基喹唑啉-2,4-二酮的环加成反应具有中等至良好的非对映选择性(非对映体过量28-68%)。对合成的异恶唑烷膦酸酯进行了针对多种DNA和RNA病毒的抗病毒活性评估。化合物反式-13c、顺式-13c/反式-13c(86:14)、顺式-15b/反式-15b(87:13)和反式-15d/顺式-15d(95:5)对胸苷激酶(TK)和TK水痘带状疱疹病毒(VZV)株均表现出最高活性(平均半数有效浓度(EC)值在3.0-8.7 μM范围内)。异恶唑烷反式-12a、顺式-12a、顺式-13a、反式-13d、顺式-15a/反式-15a(50:50)对VZV TK株的EC值在6.9至8.5 μM之间,对VZV TK株的EC值在10.7至13.2 μM之间。在喹唑啉-2,4-二酮骨架的N3位和异恶唑烷环的N2位均具有苄基取代基的异恶唑烷膦酸酯顺式-15/反式-15表现出一定的抗巨细胞病毒效力,但同时对人胚肺成纤维细胞(用于进行抗病毒试验)以及其他细胞系(即CEM、L1210、HeLa和HMEC-1)显示出显著的细胞生长抑制活性。