Selective PARP1 inhibitors (2021-2025): patent landscape, structural evolution, and future therapeutic opportunities.

IF 4.7 2区 医学 Q1 CHEMISTRY, MEDICINAL
Jilong Duan, Yanjing Duan, Dongling Gu, Jia Yang, Fenghua Kang, Youchao Deng, Dongsheng Cao
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引用次数: 0

Abstract

Introduction: Poly(ADP-ribose) polymerase 1 (PARP1) is a key mediator of DNA damage repair and an attractive therapeutic target for homologous recombination-deficient malignancies. The development of selective PARP1 inhibitors has been driven by the need to reduce the hematological toxicities associated with nonselective PARP inhibition.

Area covered: This review summarizes patents and recent advances in selective PARP1 inhibitors reported from 2021 to the present. Particular emphasis is placed on the structural evolution of AZD5305-derived compounds and emerging quinazolinone- and isoquinolinone-based chemotypes. Key design strategies, including adenine-pocket optimization, linker remodeling, conformational restriction, and scaffold diversification, are discussed together with their impact on PARP1 selectivity and biological activity.

Expert opinion: Selective PARP1 inhibition has become a major focus of innovation in the PARP field. Current patents indicate that adenine-pocket engagement, linker optimization, conformational control, and scaffold innovation are central to achieving high PARP1 selectivity and represent important directions for future intellectual property development. Despite significant progress, the disclosed chemical space remains relatively limited, highlighting opportunities for further scaffold diversification and differentiated patent strategies. These advances are expected to facilitate the development of next-generation PARP1-targeted therapeutics with improved safety profiles and broader clinical potential.

选择性PARP1抑制剂(2021-2025):专利格局、结构演变和未来治疗机会
简介:聚(adp -核糖)聚合酶1 (PARP1)是DNA损伤修复的关键介质,是同源重组缺陷恶性肿瘤的一个有吸引力的治疗靶点。选择性PARP1抑制剂的开发是由于需要减少与非选择性PARP抑制相关的血液学毒性。涵盖领域:本综述总结了从2021年至今报道的选择性PARP1抑制剂的专利和最新进展。特别强调azd5305衍生化合物的结构演变和新兴的喹唑啉酮和异喹唑啉酮为基础的化学型。关键的设计策略,包括腺嘌呤袋优化、连接子重塑、构象限制和支架多样化,以及它们对PARP1选择性和生物活性的影响进行了讨论。专家意见:选择性抑制PARP1已成为PARP领域的主要创新焦点。目前的专利表明,腺嘌呤袋结合、连接子优化、构象控制和支架创新是实现PARP1高选择性的核心,也是未来知识产权发展的重要方向。尽管取得了重大进展,但公开的化学品空间仍然相对有限,这突出了进一步支架多样化和差异化专利策略的机会。这些进展有望促进下一代parp1靶向治疗药物的开发,具有更高的安全性和更广泛的临床潜力。
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来源期刊
CiteScore
12.10
自引率
1.50%
发文量
50
审稿时长
6-12 weeks
期刊介绍: Expert Opinion on Therapeutic Patents (ISSN 1354-3776 [print], 1744-7674 [electronic]) is a MEDLINE-indexed, peer-reviewed, international journal publishing review articles on recent pharmaceutical patent claims, providing expert opinion the scope for future development, in the context of the scientific literature. The Editors welcome: Reviews covering recent patent claims on compounds or applications with therapeutic potential, including biotherapeutics and small-molecule agents with specific molecular targets; and patenting trends in a particular therapeutic area Patent Evaluations examining the aims and chemical and biological claims of individual patents Perspectives on issues relating to intellectual property The audience consists of scientists, managers and decision-makers in the pharmaceutical industry and others closely involved in R&D Sample our Bioscience journals, sign in here to start your access, Latest two full volumes FREE to you for 14 days.
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