4.7 Article

A Systematic Exploration of Macrocyclization in Apelin-13: Impact on Binding, Signaling, Stability, and Cardiovascular Effects

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JOURNAL OF MEDICINAL CHEMISTRY
卷 61, 期 6, 页码 2266-2277

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jmedchem.7b01353

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资金

  1. Universite de Sherbrooke
  2. Canadian Institutes of Health Research
  3. Natural Sciences and Engineering Research Council of Canada
  4. Canada Foundation for Innovation
  5. Merck Sharpe Dohme
  6. Canadian Francophonie Scholarship Program (PCBF)
  7. MITACS
  8. FRQS
  9. Heart and Stroke Foundation of Canada (HFSC) New Investigator award
  10. Fonds de la Recherche du Quebec en Sante (FRQS)
  11. Canada Research Chair in Neurophysiopharmacology of Chronic Pain
  12. FRQNT

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The apelin receptor generates increasing interest as a potential target across several cardiovascular indications. However, the short half-life of its cognate ligands, the apelin peptides, is a limiting factor for pharmacological use. In this study, we systematically explored each position of apelin-13 to find the best position to cyclize the peptide, with the goal to improve its stability while optimizing its binding affinity and signaling profile. Macrocyclic analogues showed a remarkably higher stability in rat plasma (half-life >3 h versus 24 min for Pyr-apelin-13), accompanied by improved affinity (analogue 15, K-i 0.15 nM and t(1/2) 6.8 h). Several compounds displayed higher inotropic effects ex vivo in the Langendorff isolated heart model in rats (analogues 13 and 15, maximum response at 0.003 nM versus 0.03 nM of apelin-13). In conclusion, this study provides stable and active compounds to better characterize the pharmacology of the apelinergic system.

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