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Fragment-based approaches to anti-HIV drug discovery: state of the art and future opportunities

机译:基于片段的抗HIV药物发现方法:最新技术和未来机遇

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Introduction: The search for additional drugs to treat HIV infection is a continuing effort due to the emergence and spread of HIV strains resistant to nearly all current drugs. The recent literature reveals that fragment-based drug design/discovery (FBDD) has become an effective alternative to conventional high-throughput screening strategies for drug discovery.Areas covered: In this critical review, the authors describe the state of the art in FBDD strategies for the discovery of anti-HIV drug-like compounds. The article focuses on fragment screening techniques, direct fragment-based design and early hit-to-lead progress.Expert opinion: Rapid progress in biophysical detection and in silico techniques has greatly aided the application of FBDD to discover candidate agents directed at a variety of anti-HIV targets. Growing evidence suggests that structural insights on key proteins in the HIV life cycle can be applied in the early phase of drug discovery campaigns, providing valuable information on the binding modes and efficiently prompting fragment hit-to-lead progression. The combination of structural insights with improved methodologies for FBDD, including the privileged fragment-based reconstruction approach, fragment hybridization based on crystallographic overlays, fragment growth exploiting dynamic combinatorial chemistry, and high-speed fragment assembly via diversity-oriented synthesis followed by in situ screening, offers the possibility of more efficient and rapid discovery of novel drugs for HIV-1 prevention or treatment. Though the use of FBDD in anti-HIV drug discovery is still in its infancy, it is anticipated that anti-HIV agents developed via fragment-based strategies will be introduced into the clinic in the future.
机译:简介:由于对几乎所有当前药物都具有抗药性的HIV菌株的出现和传播,寻找治疗HIV感染的其他药物仍是一项持续的工作。最近的文献表明,基于片段的药物设计/发现(FBDD)已成为传统的高通量筛选药物发现策略的有效替代方法。涵盖的领域:在此重要综述中,作者描述了FBDD策略的最新技术用于发现抗HIV药物样化合物。本文着重于片段筛选技术,基于片段的直接设计和早期的领先进展。专家意见:生物物理检测和计算机技术的快速进步极大地帮助了FBDD的应用,从而发现了针对多种药物的候选药物。抗HIV目标。越来越多的证据表明,对HIV生命周期中关键蛋白质的结构洞察力可用于药物发现活动的早期阶段,提供有关结合模式的有价值信息,并有效地促进片段碰撞导致的进展。将结构见解与改进的FBDD方法相结合,包括基于片段的特权重建方法,基于结晶叠加的片段杂交,利用动态组合化学的片段生长以及通过面向多样性的合成进行高速片段组装,然后进行原位筛选,提供了更有效,更快速地发现用于HIV-1预防或治疗的新药的可能性。尽管在抗HIV药物发现中仍使用FBDD尚处于起步阶段,但预计将来通过基于片段的策略开发的抗HIV药物将被引入临床。

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