Tino J A, Clark J M, Field A K, Jacobs G A, Lis K A, Michalik T L, McGeever-Rubin B, Slusarchyk W A, Spergel S H, Sundeen J E
Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, New Jersey 08543-4000.
J Med Chem. 1993 Apr 30;36(9):1221-9. doi: 10.1021/jm00061a013.
A series of branched-chain sugar isonucleosides was synthesized and evaluated for antiviral activity against herpesviruses. The preparation of homochiral [3S-(3 alpha, 4 beta, 5 alpha)]-2-amino-1, 9-dihydro-9-[tetrahydro-4,5-bis(hydroxymethyl)-3-furanyl]-6H-purin-6-one (7, BMS-181,164) and related compounds was stereospecifically achieved starting from 1,2-isopropylidene-D-xylofuranose (10). An efficient two-step reduction of the anomeric center of bis-acetate 18 involved formation of the chloride intermediate 19, followed by diisobutylaluminum hydride reduction. Tosylation of the resulting alcohol 20 provided the key intermediate 21, which was coupled with a variety of nucleobase anions. Several members of this new class of compounds possess activity against herpes simplex virus types 1 and 2 (HSV-1 and -2), varicella-zoster virus (VZV), and human cytomegalovirus (HCMV). Compound 7 exhibits potent and selective activity against thymidine kinase encoding herpesviruses, in particular, HSV-1 and HSV-2. Evaluation of compound 7 for inhibition of WI-38 cell growth indicated an ID50 of > 700 microM. Although the antiherpetic activity in vitro of 7 is less than that of acyclovir (1), compound 7 displays superior efficacy in mouse model infections. The (bromovinyl)uridine analog 8 (BMS-181,165) also exhibits selective activity against HSV-1 and VZV, with no cytostatic effect on WI-38 cell growth at > 800 microM. Compound 8 is active against simian varicella virus and is efficacious in the corresponding monkey model.
合成了一系列支链糖异核苷,并评估了它们对疱疹病毒的抗病毒活性。从1,2-异亚丙基-D-木糖呋喃糖(10)开始,通过立体专一性方法制备了同手性的[3S-(3α,4β,5α)]-2-氨基-1,9-二氢-9-[四氢-4,5-双(羟甲基)-3-呋喃基]-6H-嘌呤-6-酮(7,BMS-181,164)及相关化合物。双乙酸酯18的异头中心的高效两步还原涉及氯化物中间体19的形成,随后用二异丁基氢化铝还原。所得醇20的甲苯磺酰化得到关键中间体21,它与多种核苷酸碱基阴离子偶联。这类新化合物的几个成员对1型和2型单纯疱疹病毒(HSV-1和-2)、水痘带状疱疹病毒(VZV)和人巨细胞病毒(HCMV)具有活性。化合物7对编码胸苷激酶的疱疹病毒,特别是HSV-1和HSV-2,表现出强效和选择性活性。对化合物7抑制WI-38细胞生长的评估表明其半数抑制浓度(ID50)>700μM。虽然化合物7的体外抗疱疹活性低于阿昔洛韦(1),但在小鼠模型感染中,化合物7显示出更高的疗效。(溴乙烯基)尿苷类似物8(BMS-181,165)也对HSV-1和VZV表现出选择性活性,在浓度>800μM时对WI-38细胞生长无细胞生长抑制作用。化合物8对猴水痘病毒有活性,并且在相应的猴模型中有效。