Design and synthesis of photoswitchable desloratadine ligands for histamine H1 receptor photopharmacology

Abstract

Despite the pharmacological relevance of the histamine H1 receptor (H1R), the second most therapeutically targeted G protein-coupled receptor (GPCR), an effective photoswitchable ligand to optically control this receptor remains elusive. In this work, we aimed to identify a suitable photoswitchable H1R ligand by performing an ‘azoscan’ on the H1R antagonist desloratadine. Taking advantage of the synthetic toolbox available for the desloratadine scaffold, aniline groups were regioselectively installed on the aromatic positions of this scaffold to enable the synthesis of azobenzene analogs targeting the orthosteric binding pocket of H1R. Additionally, we functionalized the piperidine ring of desloratadine with azobenzene moieties. These two strategies resulted in a total of nine photoswitchable compounds, displaying efficient trans to cis isomerization (PSScis > 87%) and a broad range of thermal relaxation half-lives. Pharmacological evaluation revealed the 2-position (10a) to be most suitable for accommodation of a photoswitchable group, as it exhibits the most balanced profile in absolute affinity (Ki trans = 2 nM) and a 3.2-fold light-induced affinity shift. Computational docking studies provide a rationale, with the binding pose of the trans and cis isomer in the H1R binding pocket potentially being inverted. While the development of effective photoswitchable ligands for H1R remains challenging, this study provides promising opportunities for future optimization to achieve optical control of this GPCR.

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Article information

Article type
Research Article
Submitted
07 Jul 2025
Accepted
13 Aug 2025
First published
13 Aug 2025
This article is Open Access
Creative Commons BY license

RSC Med. Chem., 2025, Accepted Manuscript

Design and synthesis of photoswitchable desloratadine ligands for histamine H1 receptor photopharmacology

L. Binkhorst, I. Josimovic, D. de Vetten, T. Nijman, N. Hauwert, S. Ahmad, O. P.J. van Linden, I. de Esch, H. Vischer, M. Wijtmans and R. Leurs, RSC Med. Chem., 2025, Accepted Manuscript , DOI: 10.1039/D5MD00589B

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