脂质双层融合
病毒包膜
病毒进入
药物发现
生物
病毒
抗病毒药物
药品
小分子
病毒学
甲型流感病毒
合理设计
计算生物学
限制
体内
病毒复制
血凝素(流感)
体外
作用机理
药物设计
化学
糖蛋白
抗病毒治疗
结构-活动关系
H5N1亚型流感病毒
扎那米韦
行动方式
正粘病毒科
病毒蛋白
行动地点
机制(生物学)
病毒感染
病毒膜
作者
Gözde Çınar,Mahmut Can Tekin,Gökçe Cihan‐Üstündağ
标识
DOI:10.2174/0113895575401074250923075239
摘要
Influenza viruses are major human pathogens that cause widespread respiratory infections, affecting millions of people globally and contributing to significant morbidity and mortality. Several currently available anti-influenza drugs are facing increasing levels of viral resistance. Therefore, the discovery of therapeutics targeting novel mechanisms of action is becoming increasingly important. A key viral protein involved in the infection process is the envelope glycoprotein Hemagglutinin (HA), which facilitates both host cell receptor binding and membrane fusion, two essential steps required for viral entry and replication. Due to its central role in the early stages of infection, HA has emerged as a highly promising target for antiviral drug development. Many smallmolecule HA inhibitors have been identified with potential anti-influenza activity by stabilizing the HA structure and preventing its conformational change during the membrane fusion process. This review presents a detailed chemical evaluation of these HA-targeting compounds based on studies reported in the literature, highlighting their core chemical scaffolds and structural features. The antiviral efficacy of these compounds is discussed based on in vitro and in vivo data, along with insights into their mechanisms of action. A comprehensive literature search was conducted, and studies meeting the predefined inclusion criteria were thoroughly reviewed. By focusing on the chemical structure of these inhibitors, this review provides information for the rational design of new therapeutic agents aimed at preventing or limiting influenza virus infections.
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