首页> 美国卫生研究院文献>Journal of Clinical Microbiology >In Vitro and In Vivo Evaluations of Sodium Lauryl Sulfate and Dextran Sulfate as Microbicides against Herpes Simplex and Human Immunodeficiency Viruses
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In Vitro and In Vivo Evaluations of Sodium Lauryl Sulfate and Dextran Sulfate as Microbicides against Herpes Simplex and Human Immunodeficiency Viruses

机译:十二烷基硫酸钠和葡聚糖硫酸盐作为杀菌剂对单纯疱疹病毒和人类免疫缺陷病毒的体外和体内评价

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摘要

The efficacy of sodium lauryl sulfate (SLS), a sulfated anionic chaotropic surfactant, and dextran sulfate (DS), a polysulfated carbohydrate, against herpes simplex virus (HSV) and human immunodeficiency virus (HIV) infections was evaluated in cultured cells and in different murine models of HSV infection. Results showed that both SLS and DS were potent inhibitors of the infectivities of various HSV-1 and HSV-2 strains. Pretreatment of HIV-1 (strain NL4-3) with SLS also reduced its infectivity to 1G5 cells. DS prevented the binding of HSV to cell surface receptors and therefore its entry into cells. Pretreatment of HSV-1 (strain F) with 50 μM SLS resulted in a complete loss of virus infectivity to Vero cells. However, viruses were able to enter into cells and to produce in the nuclei capsid shells devoid of a DNA core. The amount of the glycoprotein D gene produced in these cells remained unchanged compared to controls, suggesting that SLS could interfere with the maturation of the virus. At a higher SLS concentration (100 μM), HSV was highly damaged by SLS pretreatment and only a few viral particles could enter into cells to produce abnormal capsids. Although DS was a more potent inhibitor of HSV infectivity in vitro, it was unable to provide any protection in murine models of HSV infection. However, SLS conferred a complete protection of animals infected cutaneously with pretreated viruses. In addition, skin pretreatment of mice with a polymer formulation containing SLS completely prevented the development of cutaneous lesions. More interestingly, intravaginal pretreatment of mice with SLS in a buffered solution also completely protected against lethal HSV-2 infection. Taken together, our results suggest that SLS could thus represent a candidate of choice as a microbicide to prevent the sexual transmission of HIV, HSV, and possibly other pathogens that cause sexually transmitted diseases.
机译:在培养细胞和不同细胞中评估了十二烷基硫酸钠(SLS)(一种硫酸化的阴离子离液表面活性剂)和硫酸葡聚糖(DS)(一种多硫酸化的碳水化合物)对单纯疱疹病毒(HSV)和人类免疫缺陷病毒(HIV)感染的功效。 HSV感染的小鼠模型。结果表明,SLS和DS均是各种HSV-1和HSV-2菌株感染力的有效抑制剂。用SLS预处理HIV-1(NL4-3株)也降低了其对1G5细胞的感染性。 DS阻止HSV与细胞表面受体结合,从而阻止其进入细胞。用50μMSLS预处理HSV-1(F株)导致病毒对Vero细胞的感染力完全丧失。但是,病毒能够进入细胞并在无DNA核的核衣壳中产生。与对照相比,这些细胞中产生的糖蛋白D基因的数量保持不变,这表明SLS可能会干扰病毒的成熟。在较高的SLS浓度(100μM)下,HSV受到SLS预处理的严重破坏,只有少数病毒颗粒可以进入细胞以产生异常衣壳。尽管DS在体外是更有效的HSV感染性抑制剂,但是它不能在HSV感染的鼠模型中提供任何保护。但是,SLS赋予了用经预处理的病毒经皮肤感染的动物完全保护。此外,用含有SLS的聚合物制剂对小鼠进行皮肤预处理完全可以防止皮肤损伤的发展。更有趣的是,在缓冲溶液中用SLS对小鼠进行阴道内预处理也可以完全防止致命的HSV-2感染。综上所述,我们的结果表明,SLS可以作为防止HIV,HSV以及可能引起性传播疾病的其他病原体的性传播的杀菌剂而成为一种选择。

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