Synthesis and biological evaluations of novel endomorphin analogues containing α-hydroxy-β-phenylalanine (AHPBA) displaying mixed μ/δ opioid receptor agonist and δ opioid receptor antagonist activities Article

Hu, M, Giulianotti, MA, McLaughlin, JP et al. (2015). Synthesis and biological evaluations of novel endomorphin analogues containing α-hydroxy-β-phenylalanine (AHPBA) displaying mixed μ/δ opioid receptor agonist and δ opioid receptor antagonist activities . EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 92 270-281. 10.1016/j.ejmech.2014.12.049

cited authors

  • Hu, M; Giulianotti, MA; McLaughlin, JP; Shao, J; Debevec, G; Maida, LE; Geer, P; Cazares, M; Misler, J; Li, L; Dooley, C; Ganno, ML; Eans, SO; Mizrachi, E; Santos, RG; Yongye, AB; Houghten, RA; Yu, Y

abstract

  • A novel series of endomorphin-1 (EM-1) and endomorphin-2 (EM-2) analogues was synthesized, incorporating chiral α-hydroxy-β-phenylalanine (AHPBA), and/or Dmt1-Tic2 at different positions. Pharmacological activity and metabolic stability of the series was assessed. Consistent with earlier studies of β-amino acid substitution into endomorphins, multiple analogues incorporation AHPBA displayed high affinity for μ and δ opioid receptors (MOR and DOR, respectively) in radioligand competition binding assays, and an increased stability in rat brain membrane homogenates, notably Dmt-Tic-(2R,3S)AHPBA-Phe-NH2 (compound 26). Intracerebroventricular (i.c.v.) administration of 26 produced antinociception (ED50 value (and 95% confidence interval) Combining double low line 1.98 (0.79-4.15) nmol, i.c.v.) in the mouse 55 °C warm-water tail-withdrawal assay, equivalent to morphine (2.35 (1.13-5.03) nmol, i.c.v.), but demonstrated DOR-selective antagonism in addition to non-selective opioid agonism. The antinociception of 26 was without locomotor activity or acute antinociceptive tolerance. This novel class of peptides adds to the potentially therapeutically relevant collection of previously reported EM analogues.

publication date

  • January 27, 2015

Digital Object Identifier (DOI)

start page

  • 270

end page

  • 281

volume

  • 92