Potential of small-molecule fungal metabolites in antiviral chemotherapy.

Q2 Pharmacology, Toxicology and Pharmaceutics Antiviral Chemistry and Chemotherapy Pub Date : 2017-08-01 Epub Date: 2017-07-23 DOI:10.1177/2040206617705500
Biswajit G Roy
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引用次数: 32

Abstract

Various viral diseases, such as acquired immunodeficiency syndrome, influenza, and hepatitis, have emerged as leading causes of human death worldwide. Scientific endeavor since invention of DNA-dependent RNA polymerase of pox virus in 1967 resulted in better understanding of virus replication and development of various novel therapeutic strategies. Despite considerable advancement in every facet of drug discovery process, development of commercially viable, safe, and effective drugs for these viruses still remains a big challenge. Decades of intense research yielded a handful of natural and synthetic therapeutic options. But emergence of new viruses and drug-resistant viral strains had made new drug development process a never-ending battle. Small-molecule fungal metabolites due to their vast diversity, stereochemical complexity, and preapproved biocompatibility always remain an attractive source for new drug discovery. Though, exploration of therapeutic importance of fungal metabolites has started early with discovery of penicillin, recent prediction asserted that only a small percentage (5-10%) of fungal species have been identified and much less have been scientifically investigated. Therefore, exploration of new fungal metabolites, their bioassay, and subsequent mechanistic study bears huge importance in new drug discovery endeavors. Though no fungal metabolites so far approved for antiviral treatment, many of these exhibited high potential against various viral diseases. This review comprehensively discussed about antiviral activities of fungal metabolites of diverse origin against some important viral diseases. This also highlighted the mechanistic details of inhibition of viral replication along with structure-activity relationship of some common and important classes of fungal metabolites.

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小分子真菌代谢物在抗病毒化疗中的潜力。
各种病毒性疾病,如获得性免疫缺陷综合征、流感和肝炎,已成为世界范围内人类死亡的主要原因。自1967年发明痘病毒dna依赖RNA聚合酶以来,科学努力使人们对病毒复制有了更好的了解,并开发了各种新的治疗策略。尽管药物发现过程的各个方面都取得了相当大的进步,但开发商业上可行、安全、有效的药物治疗这些病毒仍然是一个巨大的挑战。几十年的深入研究产生了一些天然和合成的治疗选择。但新病毒和耐药病毒株的出现使新药开发过程成为一场永无止境的战斗。小分子真菌代谢物由于其巨大的多样性、立体化学的复杂性和预先批准的生物相容性,一直是新药发现的一个有吸引力的来源。尽管随着青霉素的发现,真菌代谢物的治疗重要性的探索已经很早就开始了,但最近的预测断言,只有一小部分(5-10%)的真菌物种被鉴定出来,而进行科学研究的真菌物种要少得多。因此,探索新的真菌代谢物、进行其生物测定以及随后的机制研究在新药开发中具有重要意义。虽然到目前为止还没有真菌代谢物被批准用于抗病毒治疗,但其中许多显示出对抗各种病毒性疾病的高潜力。本文综述了不同来源真菌代谢产物对一些重要病毒性疾病的抗病毒活性。这也突出了抑制病毒复制的机制细节以及一些常见和重要的真菌代谢产物的结构-活性关系。
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来源期刊
Antiviral Chemistry and Chemotherapy
Antiviral Chemistry and Chemotherapy Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
5.20
自引率
0.00%
发文量
5
审稿时长
15 weeks
期刊介绍: Antiviral Chemistry & Chemotherapy publishes the results of original research concerned with the biochemistry, mode of action, chemistry, pharmacology and virology of antiviral compounds. Manuscripts dealing with molecular biology, animal models and vaccines are welcome. The journal also publishes reviews, pointers, short communications and correspondence.
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