AI Article Synopsis

  • Angiokinases like VEGFRs, FGFRs, and PDGFRs are key players in tumor blood vessel formation, and new anti-angiogenesis therapies targeting them have shown notable success.
  • A novel triple-angiokinase inhibitor named WXFL-152 was designed and synthesized, effectively blocking the signals from multiple angiokinases and inhibiting the growth of cells involved in blood vessel formation.
  • WXFL-152 has demonstrated significant anticancer activity in various preclinical models and has favorable pharmacokinetic properties, making it a promising candidate currently undergoing phase Ib clinical trials.

Article Abstract

Angiokinases, such as vascular endothelial-, fibroblast- and platelet-derived growth factor receptors (VEGFRs, FGFRs and PDGFRs) play crucial roles in tumor angiogenesis. Anti-angiogenesis therapy using multi-angiokinase inhibitor has achieved great success in recent years. In this study, we presented the design, synthesis, target identification, molecular mechanism, pharmacodynamics (PD) and pharmacokinetics (PK) research of a novel triple-angiokinase inhibitor WXFL-152. WXFL-152, identified from a series of 4-oxyquinoline derivatives based on a structure-activity relationship study, inhibited the proliferation of vascular endothelial cells (ECs) and pericytes by blocking the angiokinase signals VEGF/VEGFR2, FGF/FGFRs and PDGF/PDGFR simultaneously . Significant anticancer effects of WXFL-152 were confirmed in multiple preclinical tumor xenograft models, including a patient-derived tumor xenograft (PDX) model. Pharmacokinetic studies of WXFL-152 demonstrated high favourable bioavailability with single-dose and continuous multi-dose by oral administration in rats and beagles. In conclusion, WXFL-152, which is currently in phase Ib clinical trials, is a novel and effective triple-angiokinase inhibitor with clear PD and PK in tumor therapy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7488503PMC
http://dx.doi.org/10.1016/j.apsb.2020.04.002DOI Listing

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