Related Experiment Video
Updated: Jun 28, 2026

Preparation and Delivery of Protein Microcrystals in Lipidic Cubic Phase for Serial Femtosecond Crystallography
Published on: September 20, 2016
Discovery of Novel 2-Morpholine Tetrahydroisoquinoline CXCR4 Antagonists with Unique Properties
Yesim Altas Tahirovic1, Zafer Sahin1, Edgars Jecs1
1Department of Chemistry, Emory University, 1515 Dickey Drive NE, Atlanta, Georgia 30322, United States.
Abstract:
The exploration of tetrahydroisoquinoline-based CXCR4 antagonists as therapeutics is described. Starting from TIQ-15, halogen and heterocycle derivatives led to the identification of the 2-position N-morpholine. The initial compounds, 28 and 42, had significant improvements in CYP 2D6 inhibition and PAMPA permeability while maintaining CXCR4 potency. These were evaluated in a mouse pharmacokinetic (PK) study, exhibiting low oral bioavailability. In a second round of medicinal chemistry, the N-methyl derivative 45 provided surprisingly good CXCR4 potency. The compound had high permeability, modest metabolic stability, and CYP 2D6 inhibition, with a high hERG therapeutic index (TI) and improved exposure when dosed orally to mice. Subsequently, extensive changes to the morpholine ring of 45 led to compounds 75 and 81, which provided potent CXCR4 activity, high permeability, good selectivity against CYP 2D6, and a high hERG TI. Pharmacokinetic studies in mice for 75 and 81 showed similar improvements to 45 in exposure after oral dosing.
More Related Videos
07:41A Kinetic Fluorescence-based Ca2+ Mobilization Assay to Identify G Protein-coupled Receptor Agonists, Antagonists, and Allosteric Modulators
Published on: February 20, 2018
06:56A Flow Cytometry-based Assay to Identify Compounds That Disrupt Binding of Fluorescently-labeled CXC Chemokine Ligand 12 to CXC Chemokine Receptor 4
Published on: March 10, 2018
Related Concept Videos
Drug Discovery: Overview
Cholinergic Antagonists: Chemistry and Structure-Activity Relationship
Opioid Receptors: Overview
Antipsychotic Drugs: Typical and Atypical Agents