Cyclodextrin-based host-guest complexes loaded with regorafenib for colorectal cancer treatment
The malignancy of colorectal cancer (CRC) is connected with inflammation and tumor-associated macrophages (TAMs), but effective therapeutics for CRC are limited. To integrate therapeutic targeting with tumor microenvironment (TME) reprogramming, here we develop biocompatible, non-covalent channel-ty...
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Veröffentlicht in: | Nature communications 2021-02, Vol.12 (1), p.759-18, Article 759 |
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Sprache: | eng |
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Zusammenfassung: | The malignancy of colorectal cancer (CRC) is connected with inflammation and tumor-associated macrophages (TAMs), but effective therapeutics for CRC are limited. To integrate therapeutic targeting with tumor microenvironment (TME) reprogramming, here we develop biocompatible, non-covalent channel-type nanoparticles (CNPs) that are fabricated through host-guest complexation and self-assemble of mannose-modified γ-cyclodextrin (M-γ-CD) with Regorafenib (RG), RG@M-γ-CD CNPs. In addition to its carrier role, M-γ-CD serves as a targeting device and participates in TME regulation. RG@M-γ-CD CNPs attenuate inflammation and inhibit TAM activation by targeting macrophages. They also improve RG’s anti-tumor effect by potentiating kinase suppression. In vivo application shows that the channel-type formulation optimizes the pharmacokinetics and bio-distribution of RG. In colitis-associated cancer and CT26 mouse models, RG@M-γ-CD is proven to be a targeted, safe and effective anti-tumor nanomedicine that suppresses tumor cell proliferation, lesions neovascularization, and remodels TME. These findings indicate RG@M-γ-CD CNPs as a potential strategy for CRC treatment.
Regorafenib is a multi-kinase inhibitor in use for the treatment of colorectal cancer (CRC). To improve drug pharmacokinetics and bioavailability, here the authors design mannose-modified cyclodextrin-based host-guest complexes loaded with Regorafenib, showing anti-tumor responses in preclinical models of CRC. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-021-21071-0 |