Mohammadi Pour Pardis, Fakhri Sajad, Asgary Sedigheh, Farzaei Mohammad Hosein, Echeverría Javier
Department of Pharmacognosy, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran.
Pharmaceutical Sciences Research Center, Health Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.
Front Pharmacol. 2019 Nov 8;10:1207. doi: 10.3389/fphar.2019.01207. eCollection 2019.
As the leading cause of death worldwide, viruses significantly affect global health. Despite the rapid progress in human healthcare, there are few viricidal and antiviral therapies that are efficient enough. The rapid emergence of resistance, and high costs, as well as the related side effects of synthetic antiviral drugs, raise the need to identify novel, effective, and safe alternatives against viral diseases. Nature has been of the most exceptional help and source of inspiration for developing novel multi-target antiviral compounds, affecting several steps of the viral life cycle and host proteins. For that matter and due to safety and efficacy limitations, as well as high resistance rate of conventional therapies, hundreds of natural molecules are preferred over the synthetic drugs. Besides, natural antiviral agents have shown acceptable antiviral value in both preclinical and clinical trials.This is the first review regarding molecular and cellular pathways of the virus life cycle, treatment strategies, and therapeutic targets of several viral diseases with a particular focus on anthocyanins as promising natural compounds for significant antiviral enhancements. Clinical applications and the need to develop nano-formulation of anthocyanins in drug delivery systems are also considered.
作为全球主要死因,病毒对全球健康产生重大影响。尽管人类医疗保健取得了快速进展,但高效的杀病毒和抗病毒疗法却寥寥无几。合成抗病毒药物耐药性的迅速出现、高昂成本以及相关副作用,使得人们需要寻找针对病毒性疾病的新型、有效且安全的替代药物。自然界一直是开发新型多靶点抗病毒化合物最杰出的助力和灵感来源,这些化合物可影响病毒生命周期和宿主蛋白的多个步骤。鉴于此,由于传统疗法存在安全性和有效性限制以及高耐药率,数百种天然分子比合成药物更受青睐。此外,天然抗病毒剂在临床前和临床试验中均显示出可接受的抗病毒价值。这是首篇关于病毒生命周期的分子和细胞途径、治疗策略以及几种病毒性疾病治疗靶点的综述,特别关注花青素作为有望显著增强抗病毒能力的天然化合物。同时也考虑了花青素在药物递送系统中的临床应用以及开发其纳米制剂的必要性。