Albumin binding improves the pharmacokinetics and therapeutic efficacy of a <sup>177</sup>Lu-labeled HER2 Fab radioconjugate.

Liu, Peifei; Pang, Yizhen; Li, Cuicui; Hua, Yuqi; Zhen, Wenyao; Zhao, Tianzhi; Zhao, Xiaobin; Liu, Jie et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

Therapeutic antibodies and antibody-drug conjugates are limited by large molecular size, poor tumor penetration, and signaling-adaptive resistance. We introduce an engineering strategy for radiotherapeutic antibody fragments in which an albumin-binding domain (ABD) rebalances molecular size and pharmacokinetics. Using human epidermal growth factor receptor 2 (HER2) as a proof of concept, we developed <sup>177</sup>Lu-DOTA-Fab-ABD, which integrates rapid tumor penetration with albumin-mediated extended circulation, improving tumor dosimetry while reducing off-target radiation. In HER2 tumor models, <sup>177</sup>Lu-DOTA-Fab-ABD showed strong HER2 and albumin binding, reduced off-target retention, and substantially lower hematologic toxicity than full-length <sup>177</sup>Lu-DOTA-pertuzumab while maintaining potent β-particle tumor control. It also overcame intrinsic trastuzumab resistance by bypassing receptor blockade and inducing DNA double-strand breaks and displayed mechanistic complementarity with trastuzumab. Overall, <sup>177</sup>Lu-DOTA-Fab-ABD represents a generalizable framework for engineering fragment-based radiotherapeutics.

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