Laboratory of Biochemistry, Sousse, Tunisia.
J Med Virol. 2013 Feb;85(2):272-81. doi: 10.1002/jmv.23450. Epub 2012 Nov 14.
Herpes simplex virus (HSV) infections have become a public health problem worldwide. The emergence of acyclovir-resistant viral strains and the failure of vaccination to prevent herpetic infections have prompted the search for new antiviral drugs. Accordingly, the present study was undertaken to synthesize chemically and evaluate Dermaseptin S(4) (S(4)), an anti-microbial peptide derived from amphibian skin, and its derivatives in terms of anti-herpetic activity. The effects of biochemical modifications on their antimicrobial potential were also investigated. The peptides were incubated together with HSV-2 on target cells under various conditions, and the antiviral effects were examined via a cell metabolic labeling method. The findings revealed that DS(4) derivatives elicited concentration-dependent antiviral activity at micromole concentrations. The biochemical modifications of S(4) allowed for the reduction of peptide cytotoxicity without altering antiviral activity. Dermaseptins were added at different times during the viral cycle to investigate the mode of antiviral action. At the highest non-cytotoxic concentrations, most of the tested derivatives were noted to exhibit high antiviral activity particularly when pre-incubated with free herpes viruses prior to infection. Among these peptides, K(4)K(20)S(4) exhibited the highest antiviral activity against HSV-2 sensitive and resistant strains. Interestingly, the antiviral activity of K(4)K(20)S(4) was effective on both acyclovir-resistant and -sensitive viruses. The findings indicate that K(4)K(20)S(4) can be considered a promising candidate for future application as a therapeutic virucidal agent for the treatment of herpes viruses.
单纯疱疹病毒(HSV)感染已成为全球公共卫生问题。阿昔洛韦耐药病毒株的出现以及疫苗接种未能预防疱疹感染,促使人们寻找新的抗病毒药物。因此,本研究旨在通过化学合成和评估 Dermaseptin S(4)(S(4))来合成和评估一种源自两栖动物皮肤的抗菌肽及其衍生物的抗疱疹活性,并研究其生物化学修饰对其抗菌潜力的影响。将肽与 HSV-2 在靶细胞中在各种条件下一起孵育,并通过细胞代谢标记法检查抗病毒效果。研究结果表明,DS(4)衍生物在微摩尔浓度下表现出浓度依赖性的抗病毒活性。S(4)的生化修饰允许在不改变抗病毒活性的情况下降低肽细胞毒性。在病毒周期的不同时间添加 Dermaseptins 以研究抗病毒作用的模式。在最高非细胞毒性浓度下,测试的大多数衍生物在感染前与游离疱疹病毒预孵育时表现出特别高的抗病毒活性。在这些肽中,K(4)K(20)S(4)对 HSV-2 敏感和耐药株均表现出最高的抗病毒活性。有趣的是,K(4)K(20)S(4)的抗病毒活性对阿昔洛韦耐药和敏感病毒均有效。研究结果表明,K(4)K(20)S(4)可以被认为是一种有前途的候选药物,可作为治疗疱疹病毒的治疗性杀病毒剂。