ACS applied materials & interfaces

Size-Changing Lipid Nanoparticles Activated by Fibrosis-Related Enzyme to Remodel Tissue and Improve Drug Delivery in Liver Cancer

Updated

Abstract

A size reduction from 170.5 nm to 146.3 nm upon exposure to FAP-α enhances drug transport in fibrotic hepatocellular carcinoma models.

  • The fibrotic tumor microenvironment in hepatocellular carcinoma hinders drug delivery by promoting immunosuppression and dense extracellular barriers.
  • A novel lipid nanoparticle platform, SOR/DOX@GPA-LNP, targets activated hepatic stellate cells and adapts its size for better penetration.
  • GPA-LNPs feature a FAP-α-cleavable peptide linker, enabling tumor-specific activation and improved drug release.
  • In vitro studies demonstrated selective targeting of activated hepatic stellate cells by GPA-LNPs.
  • In vivo imaging indicated enhanced accumulation and retention of GPA-LNPs in tumor models, suggesting improved therapeutic delivery.
  • The developed system showed superior antitumor efficacy and stromal remodeling compared to nonresponsive nanoparticle systems.

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