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A Supramolecular Nitric Oxide Nanodelivery System for Prevention of Tumor Metastasis by Inhibiting Platelet Activation and Aggregation

Bo Yu, Yongyan Deng, Fan Jia, Youxiang Wang, Qiao Jin, Jian Ji

2022ACS Applied Materials & Interfaces19 citationsDOI

Abstract

Tumor cell-induced platelet aggregation (TCIPA) is known as a critical step in hematogenous tumor metastasis. The endogenous nitric oxide (NO) plays an important role in anticoagulation, which might have great potential to inhibit TCIPA. Herein, a glutathione-sensitive supramolecular nanocarrier is prepared via host–guest interaction for effective delivery of NO and chemotherapeutic agent gemcitabine (GEM). NO could be effectively released in tumor cells and inhibits platelet activation and aggregation. The inhibition of TCIPA by NO could effectively attenuate the migration and invasion of tumor cells in vitro. Furthermore, the in vivo experiments demonstrate that the NO and GEM co-delivered supramolecular nanocarriers can suppress the growth of primary tumor. More importantly, although NO-containing nanocarriers cannot inhibit the growth of primary tumors effectively, they can significantly inhibit tumor metastasis. This NO-based nano-delivery system not only provides new inspiration for multifunctional applications of NO in cancer therapy but also shows great potential in clinical antimetastatic applications.

Topics & Concepts

Nitric oxideMaterials scienceSupramolecular chemistrySupramolecular polymersPlatelet aggregationPlatelet activationNanotechnologyMetastasisOxidePlateletCancer researchBiophysicsCancerMedicineChemistryImmunologyBiologyOrganic chemistryInternal medicineMoleculeMetallurgyInflammatory Biomarkers in Disease PrognosisNanoparticle-Based Drug DeliveryNanoplatforms for cancer theranostics
A Supramolecular Nitric Oxide Nanodelivery System for Prevention of Tumor Metastasis by Inhibiting Platelet Activation and Aggregation | Litcius