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Updated: Sep 15, 2026

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Stimuli-Responsive DNA Tetrahedral Lysosome-Targeting Chimeras for Enhanced HER2 Protein Degradation
Lulu Song1, Miaomiao Zhou1, Ya Wang1
1College of Public Health, Zhengzhou University, No.100 Science Avenue, Zhengzhou City450001, China.
Abstract:
Overexpression and abnormal activation of membrane proteins promote malignant tumor cell proliferation, while traditional interventions are often limited by drug resistance caused by target mutations. Here, we designed a stimulus-responsive DNA tetrahedron lysosome-targeted chimera (tFNA-LYTAC) strategy for degrading embrane proteins. Two tetrahedra are modified with trivalent HER2 aptamers (tFNA1-Apt) and trivalent IGF2R aptamers (tFNA2-Apt), enabling targeted binding to HER2 and IGF2R, and are then self-assembled into tFNA-LYTAC under VEGF stimulation to promote HER2 degradation. The trivalent aptamer modification strategy significantly enhances the overall binding capacity of tFNA1-Apt to cells. Importantly, tFNA-LYTAC formed only in the presence of VEGF, integrating tetrahedral multivalent aptamer targeting with stimulus responsiveness to improve the degradation specificity. VEGF-responsive tFNA-LYTAC promoted HER2 degradation and suppressed the phosphorylation of key downstream signaling proteins. The study innovatively proposes a "target recognition-stimulus response-endocytic degradation" mode that selectively regulates membrane proteins through programmable multivalent aptamer nanostructures.
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