Journal of Medicinal Chemistry· 2026Q1
Albumin-Binding Modification Improves Tumor Retention of Hydrophilic αvβ6-Targeting Radiotheranostic Tracers
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- Q1SCImago
- 2026year
Short summary
Attaching an albumin-binding moiety to hydrophilic αvβ6-targeting tracers significantly enhances their retention in pancreatic tumors and improves diagnostic and therapeutic efficacy.
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Key points
- Albumin-binding modification enhances tumor retention of hydrophilic αvβ6-targeting tracers.
- NOTA-Asp2-IPB-αvβ6L showed favorable targeting, high hydrophilicity, and albumin binding.
- [18F]AlF/[68Ga]Ga-Asp2-IPB-αvβ6L demonstrated improved tumor uptake and retention in PET/CT imaging.
- [177Lu]Lu-Asp2-IPB-αvβ6L effectively inhibited tumor growth with no apparent toxicity.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract Integrin αvβ6 is an attractive theranostic target for pancreatic ductal adenocarcinoma (PDAC). Existing αvβ6-targeting tracers are limited by relatively low tumor uptake and rapid tumor washout, compromising theranostic efficacy. In this study, a series of αvβ6-targeting ligands with different hydrophilic linkers and/or albumin-binding moiety were designed and evaluated with molecular docking and MD simulations. Among them, NOTA-Asp2-IPB-αvβ6L was selected for further theranostic evaluation due to its favorable targeting capability, enhanced tumor uptake and favorable pharmacokinetic properties. NOTA-Asp2-IPB-αvβ6L was labeled with 18F, 68Ga, and 177Lu, and showed favorable in vitro properties, including high hydrophilicity, αvβ6 affinity, and albumin binding. In PET/CT imaging, [18F]AlF/[68Ga]Ga-Asp2-IPB-αvβ6L exhibited enhanced tumor uptake and prolonged retention while maintaining favorable pharmacokinetics, showing favorable diagnostic efficiency. In therapeutic studies, [177Lu]Lu-Asp2-IPB-αvβ6L effectively inhibited tumor growth with no apparent toxicity. These results demonstrated [18F]AlF/[68Ga]Ga-Asp2-IPB-αvβ6L and [177Lu]Lu-Asp2-IPB-αvβ6L as promising radiotheranostic pairs for PDAC.
The authors' abstract, as published at the source. Journal of Medicinal Chemistry, 2026 · DOI ↗
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Field: Immunology and Allergy
Immunology and AllergyMedicine