Nat Biomed Eng. 2026 Jul 27. doi: 10.1038/s41551-026-01748-x. Online ahead of print.
ABSTRACT
The lack of brain penetrant and biologically stable positron emission tomography reporter systems hampers the development of neurological disease models and the monitoring of gene delivery because existing approaches depend on endogenous receptors that vary unpredictably in pathology. HaloTag, a fully exogenous protein label that forms rapid and irreversible bonds with synthetic ligands, provides a modular platform for engineering reporter probes with defined chemical properties. Here we developed a fluorine-18-labelled small-molecule HaloTag ligand optimized for brain entry and covalent retention at the reporter. The tracer showed specific binding in human cells expressing HaloTag and enabled non-invasive imaging of viral gene transfer to striatal neurons in mice, with clear detection of reporter expressing tissue and rapid clearance from surrounding regions. Optical imaging confirmed viral distribution and reporter expression, and a transgenic model expressing HaloTag fused to a postsynaptic protein demonstrated detection of physiologically expressed intraneuronal targets. This system establishes a modular platform for validating preclinical models and quantifying gene expression in the living brain.
PMID:42509348 | DOI:10.1038/s41551-026-01748-x

