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Griffithsin a Highly Potent Broad-Spectrum Antiviral Lectin from Red Algae: From Discovery to Clinical Application

机译:Griffithsin一种来自红藻的高效广谱抗病毒凝集素:从发现到临床应用

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摘要

Virus entry into a susceptible host cell is the first step in the formation of all viral diseases. Controlling viral infections by disrupting viral entry is advantageous for antibody-mediated neutralization by the host’s immune system and as a preventive and therapeutic antiviral strategy. Recently, several plant-derived carbohydrate-binding proteins (lectins) have emerged as a new class of antiviral biologics by taking advantage of a unique glycosylation pattern only found on the surface of viruses. In particular, a red algae-derived griffithsin (GRFT) protein has demonstrated superior in vitro and in vivo antiviral activity with minimum host toxicity against a variety of clinically relevant, enveloped viruses. This review examines the structural characteristics of GRFT, focusing on its carbohydrate-binding capability. Its in vitro antiviral profiles against human immunodeficiency virus (HIV) are also discussed followed by a description of the results from a combination study using anti-HIV drugs. The results of several studies regarding its novel antiviral mechanism of action are provided in conjunction with an explanation of viral resistance profiles to GRFT. In addition, its in vitro and in vivo host toxicity profiles are summarized with its pharmacokinetic behavior using in vivo efficacy study results. Also, a large-scale production and formulation strategy, as well as a drug delivery strategy, for GRFT as a new class of broad-spectrum microbicides is discussed. Finally, results from two ongoing clinical studies examining GRFT’s effects on viruses are presented.
机译:病毒进入易感宿主细胞是所有病毒性疾病形成的第一步。通过破坏病毒的进入来控制病毒感染,有利于抗体介导的宿主免疫系统中和,以及作为预防和治疗性抗病毒策略。最近,通过利用仅在病毒表面发现的独特糖基化模式,几种植物来源的碳水化合物结合蛋白(凝集素)已成为一类新型的抗病毒生物制剂。特别是,源自红藻的格里菲斯汀(GRFT)蛋白已显示出优异的体外和体内抗病毒活性,并且对多种临床相关的包膜病毒的宿主毒性最小。这篇综述检查了GRFT的结构特征,重点是其碳水化合物的结合能力。还讨论了其针对人类免疫缺陷病毒(HIV)的体外抗病毒谱,随后描述了使用抗HIV药物进行的联合研究的结果。结合其对GRFT的病毒抗性概况的解释,提供了有关其新型抗病毒作用机制的多项研究结果。此外,使用体内功效研究结果总结了其体外和体内宿主毒性特征及其药代动力学行为。此外,还讨论了GRFT作为一类新型的广谱杀菌剂的大规模生产和配方策略以及药物输送策略。最后,介绍了两项正在进行的研究GRFT对病毒的影响的临床研究结果。

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