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萘二磺酸衍生物对人巨细胞病毒复制的选择性抑制作用。

Selective inhibition of human cytomegalovirus replication by naphthalenedisulfonic acid derivatives.

作者信息

Baba M, Konno K, Shigeta S, Wickramasinghe A, Mohan P

机构信息

Department of Microbiology, Fukushima Medical College, Japan.

出版信息

Antiviral Res. 1993 Mar;20(3):223-33. doi: 10.1016/0166-3542(93)90022-b.

Abstract

Several naphthalenedisulfonic acid derivatives were found to be selective inhibitors of human cytomegalovirus (CMV) replication in MRC-5 cells. Among the test compounds, the bis-naphthalenedisulfonic acid derivative having an hexamethylene spacer emerged as the most potent inhibitor of CMV replication. Its 50% antivirally effective concentration (EC50) for AD-169 strain was 12 microM, whereas the compound did not affect the growth of mock-infected MRC-5 cells at concentrations up to 500 microM. The naphthalenedisulfonic acid derivatives were also inhibitory to CMV clinical isolates. Virus yield reduction assay revealed that the compounds significantly reduced virus growth in CMV-infected MRC-5 cells. The bis-naphthalenedisulfonic acid derivatives with an hexamethylene spacer suppressed the expression of CMV-induced immediate early, and early antigens at a concentration of 20 microM, whereas the anti-CMV nucleoside ganciclovir did not do so even at the concentration that was 10-fold higher than its EC50 for CMV-induced plaque formation. Furthermore, naphthalenedisulfonic acid derivatives had to be present at the time of virus infection to exert their anti-CMV activity. These results suggest that the compounds are targeted at an early event in the virus replicative cycle, presumably, virus adsorption.

摘要

已发现几种萘二磺酸衍生物是人类巨细胞病毒(CMV)在MRC - 5细胞中复制的选择性抑制剂。在测试化合物中,具有六亚甲基间隔基的双萘二磺酸衍生物成为CMV复制的最有效抑制剂。其对AD - 169株的50%抗病毒有效浓度(EC50)为12 microM,而该化合物在浓度高达500 microM时不影响 mock感染的MRC - 5细胞的生长。萘二磺酸衍生物对CMV临床分离株也有抑制作用。病毒产量减少试验表明,这些化合物显著降低了CMV感染的MRC - 5细胞中的病毒生长。具有六亚甲基间隔基的双萘二磺酸衍生物在浓度为20 microM时可抑制CMV诱导的即刻早期和早期抗原的表达,而抗CMV核苷更昔洛韦即使在比其对CMV诱导斑块形成的EC50高10倍的浓度下也不能抑制。此外,萘二磺酸衍生物必须在病毒感染时存在才能发挥其抗CMV活性。这些结果表明,这些化合物针对的是病毒复制周期中的早期事件,大概是病毒吸附。

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