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September 16, 2025Future Medicinal Chemistry2 citations

Design, development, and therapeutic applications of PARP-1 selective inhibitors

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YXYue XuXLXiangqian LiYZYuanyuan Zhao

Key Points

  • Selective PARP-1 inhibitors may enhance therapeutic efficacy while reducing toxicity associated with broad-spectrum inhibitors.
  • The review provides a comprehensive analysis of 14 selective inhibitors, detailing their structure-activity relationships and binding characteristics.
  • Homology comparisons reveal the conformational heterogeneity of PARP-1/-2, aiding in the identification of selective binding pockets.
  • The proposed 'secondary site contact' design strategy could lead to the development of more selective and effective PARP inhibitors.

Abstract

Poly(ADP-ribose) polymerase (PARP) plays a key role in DNA damage repair and has become a critical target for tumor therapy. In recent years, several PARP inhibitors, such as Olaparib and Niraparib, have achieved clinical success in breast cancer susceptibility genes (BRCA) mutant tumors by exploiting the synthetic lethality of homologous recombination-deficient cancers. However, problems have emerged in clinical application, such as hematologic toxicity, which may be related to the lack of subtype selectivity of PARP-1/-2. Selective inhibitors of PARP-1 that can overcome toxicity have emerged as a new strategy for PARP inhibitor development. In this review, we first reveal the conformational heterogeneity of the PARP-1/-2 active region through homology comparison and systematically explain the spatial topological characteristics of its selective binding pockets. Then, the structure-activity relationships of 14 reported selective inhibitors of PARP-1 are analyzed to reveal the key pharmacophores occupying the active region, as well as to characterize the specific groups bound to the selective binding domain. Finally, we discuss the structural requirements of selective PARP-1 inhibitors and propose the "secondary site contact" design strategy for the development of new PARP inhibitors.

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Cite This Study

Xu et al. (2025) studied this question.

synapsesocial.com/papers/68d44f8331b076d99fa5705ehttps://doi.org/10.1080/17568919.2025.2561467
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