4.7 Article

Structure-Permeability Relationship of Semipeptidic Macrocycles-Understanding and Optimizing Passive Permeability and Efflux Ratio

Journal

JOURNAL OF MEDICINAL CHEMISTRY
Volume 63, Issue 13, Pages 6774-6783

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jmedchem.0c00013

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Funding

  1. Bayer AG
  2. Natural Sciences and Engineering Research Council of Canada [RGPIN 201705513]
  3. Canadian Foundation for Innovation

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We herein report the first thorough analysis of the structure-permeability relationship of semipeptidic macrocycles. In total, 47 macrocycles were synthesized using a hybrid solid-phase/solution strategy, and then their passive and cellular permeability was assessed using the parallel artificial membrane permeability assay (PAMPA) and Caco-2 assay, respectively. The results indicate that semipeptidic macrocycles generally possess high passive permeability based on the PAMPA, yet their cellular permeability is governed by efflux, as reported in the Caco-2 assay. Structural variations led to tractable structure- permeability and structure-efflux relationships, wherein the linker length, stereoinversion, N-methylation, and peptoids site-specifically impact the permeability and efflux. Extensive nuclear magnetic resonance, molecular dynamics, and ensemble-based three-dimensional polar surface area (3D-PSA) studies showed that ensemble-based 3D-PSA is a good predictor of passive permeability.

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