Design and Exploration of a Tricyclic Series of CNS-Penetrant CD38 Small Molecule Inhibitors

Abstract Cluster of Differentiation 38 (CD38) plays a key role in NAD+ metabolism and calcium signaling, and recent reports highlight therapeutic opportunities for CD38 modulation in central nervous system (CNS) disorders. In this report, we describe the rational design, synthesis, and exploration of structure–activity relationships (SAR) for a novel and brain-penetrant series of tricyclic compounds that form an adduct with ADPR to inhibit CD38 in an uncompetitive manner. Rigidification of the bioactive conformation via covalent tethering of a 6-membered heteroaromatic core to an imidazole warhead served as the key design element that afforded improved biochemical potency against both mouse and human CD38. Incremental property-based optimization of core and linker motifs generated analogues with enhanced unbound brain-to-plasma ratios in mice. These efforts led to the discovery of brain-penetrant CD38 inhibitor 16, which was evaluated in vivo and demonstrated dose-dependent increases of NAD+ measured in mouse brain and lung tissue samples following oral doses ranging from 3 to 100 mg/kg.

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Publication Details

Journal
ACS Medicinal Chemistry Letters
Published
2026-09-10
DOI
https://doi.org/10.1021/acsmedchemlett.6c00301
Primary Topic
Calcium signaling and nucleotide metabolism
Type
article
Field-Weighted Citation Impact
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article

Design and Exploration of a Tricyclic Series of CNS-Penetrant CD38 Small Molecule Inhibitors

Timothy R. Hodges, J. Brad Shotwell, Katerina M. Korch, Augustine Osuma et al.
ACS Medicinal Chemistry Letters
Calcium signaling and nucleotide metabolism
article

Design and Exploration of a Tricyclic Series of CNS-Penetrant CD38 Small Molecule Inhibitors

Timothy R. Hodges, J. Brad Shotwell, Katerina M. Korch, Augustine Osuma, Andrew M. Swensen, Madhurima Benekareddy, Benjamin D. Bergstrom, Noah P. Bradley, Purvi Jejurkar, Ioanna Zoi, John T. Randolph, Renee N. Sadowski, Rinku Jain, Jordan W. Brown, Anand Balakrishnan, Lance Bigelow, Reza Shiroodi, Алла Корепанова, Michael M. Sheehan, Youngjin Jang, Kelsey A. Lin, Alex Chapman, Chris Brosey
article en

Abstract

Abstract Cluster of Differentiation 38 (CD38) plays a key role in NAD+ metabolism and calcium signaling, and recent reports highlight therapeutic opportunities for CD38 modulation in central nervous system (CNS) disorders. In this report, we describe the rational design, synthesis, and exploration of structure–activity relationships (SAR) for a novel and brain-penetrant series of tricyclic compounds that form an adduct with ADPR to inhibit CD38 in an uncompetitive manner. Rigidification of the bioactive conformation via covalent tethering of a 6-membered heteroaromatic core to an imidazole warhead served as the key design element that afforded improved biochemical potency against both mouse and human CD38. Incremental property-based optimization of core and linker motifs generated analogues with enhanced unbound brain-to-plasma ratios in mice. These efforts led to the discovery of brain-penetrant CD38 inhibitor 16, which was evaluated in vivo and demonstrated dose-dependent increases of NAD+ measured in mouse brain and lung tissue samples following oral doses ranging from 3 to 100 mg/kg.

ACS Medicinal Chemistry Letters
AbbVie (United States) (US), Enzo Life Sciences (United States) (US)
Openalex Percentile: Top 14%
Calcium signaling and nucleotide metabolism
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