A pHe sensitive nanodrug for collaborative penetration and inhibition of metastatic tumors.

J Control Release

Department of Pharmaceutics, China Pharmaceutical University, 639 Longmian Avenue, Nanjing 211198, China. Electronic address:

Published: December 2022

AI Article Synopsis

  • Current chemotherapies struggle with drug penetration and effective targeting of metastasis-related pathways due to the influence of cancer-associated fibroblasts (CAFs) in the tumor microenvironment.
  • Researchers created a new drug delivery system using a pH-sensitive methotrexate-chitosan conjugate combined with quercetin, which allows for targeted drug release and deeper tumor infiltration.
  • The study shows that this innovative approach not only increases drug availability but also effectively inhibits metastasis by disrupting CAF influence and preventing tumor cell invasion and transitions.

Article Abstract

Current chemotherapies for metastatic tumors are seriously restricted by limited drug infiltration and deficient disturbance of metastasis-associated complex pathways involving tumor cell autocrine as well as paracrine loops in the microenvironment (TME). Of note, cancer-associated fibroblasts (CAFs) play a predominant role in shaping TME favoring drug resistance and metastasis. Herein, we constructed a tumor extracellular pH (pH) sensitive methotrexate-chitosan conjugate (MTX-GC-DEAP) and co-assembled it with quercetin (QUE) to achieve co-delivered nanodrugs (MTX-GC-DEAP/QUE). The pH sensitive protonation and disassembly enabled MTX-GC-DEAP/QUE for stroma-specific delivery of QUE and positive-charged MTX-GC-DEAP molecular conjugates, thereby achieving deep tumor penetration via the combination of QUE-mediated CAF inactivation and adsorption-mediated transcytosis. On the basis of significantly promoted drug availability, a strengthened "omnidirectional" inhibition of pre-metastatic initiation was generated both in vitro and in vivo from the CAF inactivation-mediated reversion of metastasis-promoting environments as well as the inhibition of epithelial-mesenchymal transition, local and blood vessel invasion via QUE-mediated direct regulation on tumor cells. Our tailor-designed versatile nanodrug provides a deep insight into potentiating multi-faceted penetration of multi-mechanism-based regulating agents for intensive metastasis inhibition.

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Source
http://dx.doi.org/10.1016/j.jconrel.2022.11.012DOI Listing

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