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◆ Journal of controlled release : official journal of the Controlled Release Society2026-09-23

Targeted dual degradation of GPC-3 and VEGFR with multivalent DNA nanoflower-based LYTACs for hepatocellular carcinoma therapy.

Ping Zhou, Jinzhi Zang, Jiaxuan Wang, Minghui Cao, Ruixin Ge, Yongqi Liu, Wei Pan, Miao Chen, Huijuan Liu, Chenghao Xuan, Tao Sun, Songbo Xie

原始摘要(英文原文)· Original abstract
While targeted therapies for hepatocellular carcinoma (HCC) have advanced, their clinical benefits remain constrained by limited efficacy, off-target toxicity, and the frequent emergence of drug resistance and recurrence. To address these challenges, we developed a multivalent DNA nanoflower-based dual-targeting LYTAC (lysosome-targeting chimera) platform tailored for HCC. This NanoLYTAC integrates two key functional elements: (i) a high-density array of bispecific aptamers that simultaneously recognize glypican-3 (GPC-3)-a highly HCC-specific surface marker-and vascular endothelial growth factor receptor (VEGFR), and (ii) galactose (Gal) modifications that enable liver-specific targeting via the asialoglycoprotein receptor (ASGPR). The construct is preferentially internalized by HCC cells, where it promotes the ASGPR-mediated lysosomal degradation of both VEGFR and GPC-3, leading to potent suppression of cell proliferation and migration, and induction of apoptotic death. In vivo, the NanoLYTAC exhibits pronounced tumor-specific accumulation and achieves significant tumor growth inhibition without inducing detectable systemic toxicity. Together, this work establishes a targeted, efficient, and well-tolerated dual-protein degradation strategy, offering a promising therapeutic avenue for HCC.
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Targeted dual degradation of GPC-3 and VEGFR with multivalent DNA nanoflower-based LYTACs for hepatocellular carcinoma therapy. — 科研速览 Science Skim