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September 12, 2025Journal of Medicinal Chemistry0 citations

Discovery of Tricyclic Derivative as Novel and Potent Respiratory Syncytial Virus Fusion Glycoprotein Inhibitor with an Improved Pharmacokinetic Profile

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LZLi’ao ZhangBXBao XueMCMingkang Cao

Key Points

  • CGR-51 shows significantly enhanced potency against RSV isolates in cellular assays, suggesting its effectiveness.
  • This inhibitor's improved pharmacokinetic profile may lead to better treatment outcomes for RSV infections.
  • CGR-51 inhibits viral entry by targeting the RSV fusion glycoprotein, indicating a novel mechanism of action.
  • Its lower toxicity compared to lonafarnib enhances CGR-51's potential as a safer therapeutic candidate.

Abstract

Respiratory syncytial virus (RSV) is a major pathogen causing acute respiratory infections, and the RSV fusion glycoprotein (F) has been identified as a key target for developing small-molecule inhibitors. Based on our prior identification of lonafarnib as an F protein inhibitor, medicinal chemistry efforts led to the development of CGR-51, which exhibits significantly enhanced potency against both laboratory and clinical RSV isolates in cellular assays. Time-of-addition and SPR assays indicate that CGR-51 inhibits viral entry by targeting the RSV F protein, but has farnesyltransferase-independent antiviral efficacy. Passage of RSV with CGR-51 selects for phenotypic resistance with the emergence of the K399N mutation in the RSV F protein. Additionally, CGR-51 exhibits an improved pharmacokinetic profile and effectively suppresses RSV replication in a BALB/c mouse model of RSV infection, while showing lower toxicity compared to lonafarnib. Collectively, CGR-51 represents a promising RSV F protein inhibitor candidate for the treatment of RSV infection.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68d44b3031b076d99fa54837https://doi.org/10.1021/acs.jmedchem.5c00692
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