Suppr超能文献

树枝状大分子双重作用位点的证据:SPL-2999既能抑制病毒进入,又能抑制单纯疱疹病毒复制的后期阶段。

Evidence of dual sites of action of dendrimers: SPL-2999 inhibits both virus entry and late stages of herpes simplex virus replication.

作者信息

Gong Yunhao, Matthews Barry, Cheung Dorothy, Tam Teresa, Gadawski Izabelle, Leung Daniel, Holan George, Raff John, Sacks Stephen

机构信息

Viridae Clinical Sciences, Inc., 1134 Burrard Street, Vancouver, BC, Canada V6Z 1Y8.

出版信息

Antiviral Res. 2002 Aug;55(2):319-29. doi: 10.1016/s0166-3542(02)00054-2.

Abstract

Dendrimers are macromolecules with broad-spectrum antiviral activity and minimal toxicity effective in animal models in preventing transmission of herpes simplex virus (HSV) infection. In order to further understand the mechanism of action, and toxicity profiles of the dendrimer SPL-2999 against HSV, we investigated in vitro activities as follows: modified plaque reduction assays for SPL-2999 showed that 50% effective concentrations (EC(50)) determined by pre-treatment of cells with SPL-2999 were 0.5 microg/ml (30 nM) for HSV-2 and 1 microg/ml (60 nM) for HSV-1, respectively. SPL-2999 was not toxic to Vero cells at concentration up to the highest tested (CC(50) greater than 1000 microg/ml). SPL-2999 appears to completely inhibit both viral adsorption and penetration to Vero cells at concentrations of higher than 3 microg/ml. Additionally, virus yield reduction assay showed that SPL-2999 was effective on cells already infected with HSV with EC(90)s (effective concentration giving 90% virus yield reduction) approximately 29.2 microg/ml for HSV-1 and 6.7 microg/ml for HSV-2. When Vero cells were infected with HSV at moi (multiplicity of infection) of 0.01 pfu/cell, the infected cells could be completely protected from viral cytopathic effect (CPE) by SPL-2999 with EC(90)s (effective concentration that protects 90% of cells from virus lysis) of 15 microg/ml for HSV-1 and 10 microg/ml for HSV-2. Results from Southern blot hybridization indicated that SPL-2999 inhibited DNA synthesis in HSV infected cells. We conclude that SPL-2999 inhibits both HSV entry into susceptible cells and late stages of HSV replication. Our data indicate that SPL-2999 is a potent inhibitor of both HSV-1 and -2 with the potential for further development as either a topical microbicide or a therapeutic agent.

摘要

树枝状大分子是具有广谱抗病毒活性且毒性极小的大分子,在动物模型中对预防单纯疱疹病毒(HSV)感染有效。为了进一步了解树枝状大分子SPL - 2999抗HSV的作用机制和毒性特征,我们进行了如下体外活性研究:针对SPL - 2999的改良蚀斑减少试验表明,通过用SPL - 2999预处理细胞测定的50%有效浓度(EC50),对于HSV - 2为0.5微克/毫升(30纳摩尔),对于HSV - 1为1微克/毫升(60纳摩尔)。在高达最高测试浓度时,SPL - 2999对Vero细胞无毒(CC50大于1000微克/毫升)。在高于3微克/毫升的浓度下,SPL - 2999似乎能完全抑制病毒对Vero细胞的吸附和穿透。此外,病毒产量减少试验表明,SPL - 2999对已感染HSV的细胞有效,其EC90(导致病毒产量减少90%的有效浓度)对于HSV - 1约为29.2微克/毫升,对于HSV - 2为6.7微克/毫升。当Vero细胞以0.01个空斑形成单位/细胞的感染复数(moi)感染HSV时,SPL - 2999能完全保护感染细胞免受病毒细胞病变效应(CPE),其EC90(保护90%的细胞免受病毒裂解的有效浓度)对于HSV - 1为15微克/毫升,对于HSV - 2为10微克/毫升。Southern印迹杂交结果表明,SPL - 2999抑制HSV感染细胞中的DNA合成。我们得出结论,SPL - 2999既抑制HSV进入易感细胞,也抑制HSV复制的后期阶段。我们的数据表明,SPL - 2999是HSV - 1和 - 2的有效抑制剂,有作为局部杀菌剂或治疗剂进一步开发的潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验