ArticleMolecular pharmaceutics2026
Integrating Tumor Targeting and Half-Life Extension into a Dual-Surfaced Single-Domain ADAPT Protein.
Article in Molecular pharmaceutics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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9 authors.
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Abstract
Folate receptor alpha (FRα) is frequently overexpressed in ovarian cancer while showing limited expression in healthy tissues. Targeting of FRα has been extensively investigated using antibody-based therapies but less so with small scaffold proteins. Small scaffold proteins represent an alternative approach with potential advantages such as site-specific conjugation and deep tumor penetration but are limited by a short half-life. Here, we describe the development of a dual-surfaced ADAPT scaffold protein (6 kDa) with simultaneous bispecificity for FRα and albumin. Using combinatorial libraries and phage display, we identified a candidate, termed ADAPT22, with high isoform selectivity and subnanomolar affinity for FRα (KD = 0.8 nM), paired with a low nanomolar affinity for albumin (KD = 2.4 nM). Importantly, ADAPT22 is able to interact with both targets simultaneously, truly combining extended retention in blood via albumin association and tumor targeting via FRα within a single-domain protein. The simultaneous nature was verified in vitro to soluble proteins and to FRα-positive cells and in vivo using a mouse xenograft model. In mice, ADAPT22 demonstrated markedly extended blood retention, reduced renal uptake, and specific accumulation in FRα-positive tumors, confirming simultaneous dual-surface binding. To the best of our knowledge, this is the smallest half-life extended affinity protein designed for therapeutic targeting of FRα.
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