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April 17, 2026The Journal of Organic Chemistry1 citationsOpen Access

Trifluoromethylthio and Trifluoromethyl Functionalization of Endomorphin-1 Enhances its Hydrophobicity and Plasma Stability while Preserving its Affinity for the μ-Opioid Receptor

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JGJure GregorcJNJolien De NeveKGKarine Guitot

Key Points

  • To evaluate the impact of trifluoromethylthio and trifluoromethyl modifications on the pharmacokinetic properties of endomorphin-1.
  • Solid-phase synthesis of fluorinated endomorphin-1 analogs
  • In vitro binding assays with μ-opioid receptor
  • Plasma stability studies measuring half-life
  • Most fluorinated analogs maintained strong μ-opioid receptor binding affinity
  • Modification with l-Dmt(3-SCF3) resulted in an optimal profile (Ki = 1.4 nM, EC50 = 0.9 nM)
  • Significant increase in plasma stability (72-fold longer half-life than EM1)

Abstract

The incorporation of fluorinated amino acid residues into peptides represents a promising strategy for improving the pharmacokinetic properties of bioactive peptides. Herein, we report the solid-phase synthesis (SPPS) of a set of ten SCF3- or CF3-modified neuropeptide analogs based on endomorphin-1 (EM1). EM1, a selective subnanomolar μ-opioid receptor (μOR) agonist with poor metabolic stability (t1/2 = 6 min in human plasma), was selected as a model to evaluate the effects of SCF3 and CF3 functionalization on the pharmacokinetic profile of short bioactive peptides. The syntheses of eight ready-to-use SCF3- or CF3-containing building blocks for SPPS and their incorporation into peptides are reported. In vitro μOR binding and functional activity assays demonstrated that most fluorinated analogs retained binding affinity and potency, accompanied by increased hydrophobicity. Among the series, modification of the pharmacophoric Tyr1 residue with l-Dmt(3-SCF3) yielded the most favorable profile (Ki = 1.4 nM, EC50 = 0.9 nM). Plasma stability studies revealed a significant increase in half-life for this ligand (72-fold relative to EM1 and 14-fold relative to EM1(Dmt1)), and thus, further demonstrated the potential of SCF3-containing amino acids in therapeutic peptide design.

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Cite This Study

Gregorc et al. (2026) studied this question.

synapsesocial.com/papers/69e1ce605cdc762e9d857627https://doi.org/10.1021/acs.joc.6c00321
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