2022
DOI: 10.1002/adma.202200449
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A Tumor Microenvironments‐Adapted Polypeptide Hydrogel/Nanogel Composite Boosts Antitumor Molecularly Targeted Inhibition and Immunoactivation

Abstract: Scheme 1. Schematic illustration of preparation and in vivo antitumor effect of Gel/(REG+NG/LY). After in situ administration, REG and LY were sequentially released from the hydrogel/nanogel composite, which synergistically inhibited tumor growth, prevented distant metastases, and reversed the immunosuppressive TMEs to trigger T-cell-dependent immune responses.

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Cited by 79 publications
(70 citation statements)
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“…226 Recently, Li et al developed a composite material consisting of thermosensitive hydrogel and ROS-responsive nanogels to enhance molecularly targeted therapy and activate the immune system against tumours through precise drug release. 227 First, the nanogels are composed of polyamine acid, ROS-responsive thioketal crosslinker, and TGF-b inhibitors (LY3200882, LY) through self-assembly. Then the nanogels and regorafenib (REG) are further co-encapsulated into hydrogels.…”
Section: Nanogels For the Delivery Of Cytokinesmentioning
confidence: 99%
“…226 Recently, Li et al developed a composite material consisting of thermosensitive hydrogel and ROS-responsive nanogels to enhance molecularly targeted therapy and activate the immune system against tumours through precise drug release. 227 First, the nanogels are composed of polyamine acid, ROS-responsive thioketal crosslinker, and TGF-b inhibitors (LY3200882, LY) through self-assembly. Then the nanogels and regorafenib (REG) are further co-encapsulated into hydrogels.…”
Section: Nanogels For the Delivery Of Cytokinesmentioning
confidence: 99%
“…However, uncertainties in drug loading ratio, release order, and spatiotemporal distribution hinders their synergistic therapeutic effects and clinical applications. Based on this, Li et al [152] developed a tumor microenvironment-adaptive composite consisting of thermosensitive hydrogels and reactive oxygen species (ROS)-responsive nanogels. It can be used for precision drug delivery to enhance molecularly targeted therapy and amplify immune activation.…”
Section: Drug Delivery Systemsmentioning
confidence: 99%
“…Most importantly, we discussed the potential clinical applications of MSCs and iPS cell membrane-camouflaged targeted delivery systems for anti-tumor therapies, such as chemotherapy, photodynamic therapy, magnetic hyperthermia therapy, imaging, CRISPR-Cas9 gene therapy, and synergistic therapy ( Table 1 ). In the future, the applications of this delivery system should be further investigated in other anti-tumor therapies, such as tumor blockade therapy [ 80 ] and anti-tumor immune therapy [ 81 ]. To sum up, stem cell membrane-coated NPs hold the tremendous prospect for biomedical applications in tumor therapy.…”
Section: Conclusion and Future Perspectivesmentioning
confidence: 99%