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February 14, 2026ACS Nano0 citations

In Vivo Programmed Assembly of Polymer–Peptide Conjugates to Overcome Multistage Drug Delivery Barriers

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LGLin GuoFYF. Richard YuXZX. Zhou

Key Points

  • The aim is to develop a responsive polymer-peptide conjugate system for improved drug delivery in cancer therapy.
  • Designed a polymer-peptide conjugate for programmed assembly.
  • Utilized ultrasound and acidic pH for responsive disassembly and reassembly.
  • Evaluated tumor penetration and cellular uptake in vitro and in vivo.
  • Achieved a 12-fold increase in tumor penetration efficiency.
  • Demonstrated an 8.8-fold rise in cellular uptake of the nanodrug.
  • Promoted endocytosis and induced apoptosis in tumor cells.

Abstract

Surmounting the cascade of biological barriers to efficient drug delivery is a central challenge in oncology. Here, we design a polymer-peptide conjugate (PPC) as an intelligent nanodrug capable of in vivo programmed assembly. The PPC system, responsive to both ultrasound (US) and acidic pH, demonstrates tunable size and charge for on-site disassembly and reassembly. Specifically, to facilitate deep tumor penetration, PPC nanoparticles disassemble into free molecules upon ultrasound stimulation at the tumor periphery. Subsequently, the negatively charged motifs reassemble into positively charged nanoparticles, triggered by the acidic tumor microenvironment, promoting endocytosis and mitochondrial damage-induced apoptosis. This approach achieves a 12-fold improvement in tumor penetration efficiency and an 8.8-fold increase in cellular uptake. Our work advances the design of intelligent nanodrugs and enhances the precision of drug delivery.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/6990112b2ccff479cfe57994https://doi.org/10.1021/acsnano.5c20521
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