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4-氧代二氢喹啉PNU-183792对人和动物疱疹病毒的广谱抗病毒活性。

Broad-spectrum antiviral activity of PNU-183792, a 4-oxo-dihydroquinoline, against human and animal herpesviruses.

作者信息

Brideau Roger J, Knechtel Mary L, Huang Audris, Vaillancourt Valerie A, Vera Ellen E, Oien Nancee L, Hopkins Todd A, Wieber Janet L, Wilkinson Karen F, Rush Bob D, Schwende Francis J, Wathen Michael W

机构信息

Pharmacia, 49001, Kalamazoo, MI, USA.

出版信息

Antiviral Res. 2002 Apr;54(1):19-28. doi: 10.1016/s0166-3542(01)00208-x.

Abstract

We identified a novel class of 4-oxo-dihydroquinolines represented by PNU-183792 which specifically inhibit herpesvirus polymerases. PNU-183792 was highly active against human cytomegalovirus (HCMV, IC(50) value 0.69 microM), varicella zoster virus (VZV, IC(50) value 0.37 microM) and herpes simplex virus (HSV, IC(50) value 0.58 microM) polymerases but was inactive (IC(50) value >40 microM) against human alpha (alpha), gamma (gamma), or delta (delta) polymerases. In vitro antiviral activity against HCMV was determined using cytopathic effect, plaque reduction and virus yield reduction assays (IC(50) ranging from 0.3 to 2.4 microM). PNU-183792 antiviral activity against both VZV (IC(50) value 0.1 microM) and HSV (IC(50) ranging from 3 to 5 microM) was analyzed using plaque reduction assays. PNU-183792 was also active (IC(50) ranging 0.1-0.7 microM) in cell culture assays against simian varicella virus (SVV), murine cytomegalovirus (MCMV) and rat cytomegalovirus (RCMV). Cell culture activity was compared with the appropriate licensed drugs ganciclovir (GCV), cidofovir (CDV) and acyclovir (ACV). PNU-183792 was also active against both GCV-resistant and CDV-resistant HCMV and against ACV-resistant HSV. Toxicity assays using four different species of proliferating mammalian cells indicated PNU-183792 was not cytotoxic at relevant drug concentrations (CC(50) value >100 microM). PNU-183792 was inactive against unrelated DNA and RNA viruses indicating specificity for herpesviruses. In animals, PNU-183792 was orally bioavailable and was efficacious in a model of lethal MCMV infection.

摘要

我们鉴定出了一类以PNU - 183792为代表的新型4 - 氧代 - 二氢喹啉,它们能特异性抑制疱疹病毒聚合酶。PNU - 183792对人巨细胞病毒(HCMV,半数抑制浓度(IC(50))值为0.69微摩尔/升)、水痘带状疱疹病毒(VZV,IC(50)值为0.37微摩尔/升)和单纯疱疹病毒(HSV,IC(50)值为0.58微摩尔/升)的聚合酶具有高活性,但对人α(α)、γ(γ)或δ(δ)聚合酶无活性(IC(50)值>40微摩尔/升)。使用细胞病变效应、蚀斑减少和病毒产量减少试验测定了PNU - 183792对HCMV的体外抗病毒活性(IC(50)范围为0.3至2.4微摩尔/升)。使用蚀斑减少试验分析了PNU - 183792对VZV(IC(50)值为0.1微摩尔/升)和HSV(IC(50)范围为3至5微摩尔/升)的抗病毒活性。PNU - 183792在细胞培养试验中对猴水痘病毒(SVV)、鼠巨细胞病毒(MCMV)和大鼠巨细胞病毒(RCMV)也具有活性(IC(50)范围为0.1 - 0.7微摩尔/升)。将细胞培养活性与相应的已获许可药物更昔洛韦(GCV)、西多福韦(CDV)和阿昔洛韦(ACV)进行了比较。PNU - 183792对GCV耐药和CDV耐药的HCMV以及ACV耐药的HSV也具有活性。使用四种不同的增殖哺乳动物细胞进行的毒性试验表明,在相关药物浓度下PNU - 183792无细胞毒性(半数细胞毒性浓度(CC(50))值>100微摩尔/升)。PNU - 183792对不相关的DNA和RNA病毒无活性,表明其对疱疹病毒具有特异性。在动物中,PNU - 183792口服具有生物利用度,并且在致死性MCMV感染模型中有效。

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