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ACIDFORM在小鼠模型中可使单纯疱疹病毒失活并预防生殖器疱疹:杀微生物剂组合的最佳候选物。

ACIDFORM inactivates herpes simplex virus and prevents genital herpes in a mouse model: optimal candidate for microbicide combinations.

作者信息

Tuyama Ana C G, Cheshenko Natalia, Carlucci Maria J, Li Jin-Hua, Goldberg Cindy L, Waller Donald P, Anderson Robert A, Profy Albert T, Klotman Mary E, Keller Marla J, Herold Betsy C

机构信息

Division of Infectious Disease, Department of Pediatrics, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

J Infect Dis. 2006 Sep 15;194(6):795-803. doi: 10.1086/506948. Epub 2006 Aug 16.

Abstract

The acidic vaginal milieu is presumed to inactivate pathogens but is neutralized by semen. This notion fostered the development of acid-buffering products, such as ACIDFORM (developed by Program for Topical Prevention of Conception and Disease, Rush University, and licensed by Instead), as microbicides. However, the extent and mechanism of protective activity provided by buffering gels is not known. Exposure of herpes simplex virus (HSV) to pH 4.5 or lower irreversibly inactivated HSV and reduced HSV yields by at least 90%; exposure to pH 5.0 had little or no effect. Pretreatment of HSV-2 with pH 3.5-4.5 triggered proteolysis, disrupting the HSV particle and resulting in a reduction in binding and invasion. ACIDFORM protected 21 (81%) of 26 mice from genital herpes, compared with 3 (12%) of 25 mice who received a placebo gel. ACIDFORM retained significant activity if mice were challenged with HSV delivered in seminal fluid. These findings suggest that ACIDFORM offers considerable protection against HSV and may be an optimal candidate for developing combination microbicides.

摘要

酸性阴道环境被认为可使病原体失活,但会被精液中和。这一观念推动了诸如ACIDFORM(由拉什大学避孕与疾病局部预防项目研发,并由Instead公司授权)这类酸缓冲产品作为杀菌剂的开发。然而,缓冲凝胶所提供的保护活性程度及机制尚不清楚。单纯疱疹病毒(HSV)暴露于pH 4.5或更低环境会使其不可逆地失活,并使HSV产量降低至少90%;暴露于pH 5.0几乎没有影响。用pH 3.5 - 4.5对HSV - 2进行预处理会引发蛋白水解,破坏HSV颗粒,导致其结合和侵袭能力下降。与接受安慰剂凝胶的25只小鼠中的3只(12%)相比,ACIDFORM保护了26只小鼠中的21只(81%)免受生殖器疱疹感染。如果用精液中的HSV对小鼠进行攻击,ACIDFORM仍保留显著活性。这些发现表明,ACIDFORM对HSV提供了相当大的保护,可能是开发联合杀菌剂的最佳候选产品。

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