2020
DOI: 10.1016/j.colsurfb.2020.110941
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Multi-stimuli responsive mesoporous silica-coated carbon nanoparticles for chemo-photothermal therapy of tumor

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Cited by 57 publications
(22 citation statements)
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“…The singlet oxygen generation and thermoresponsiveness of the loaded ICG in dimethylmaleic anhydride DMMA-modified PLL were efficient in destroying cancer cells. Figure 11 presents a multi-stimuli-responsive innovative system for controlled drug delivery, and thermal-chemotherapy for tumor treatment was described by Lu et al [136]. They obtained a novel mesoporous silica-coated carbon nanocomposite (DOX/MCN@Si-CDs) with redox/NIR/pH stimuli-responsive release ability and superior chemo-photothermal combined antitumor treatment activity as compared with individual treatments.…”
Section: Dual and Multi-responsive Nanomaterialsmentioning
confidence: 99%
“…The singlet oxygen generation and thermoresponsiveness of the loaded ICG in dimethylmaleic anhydride DMMA-modified PLL were efficient in destroying cancer cells. Figure 11 presents a multi-stimuli-responsive innovative system for controlled drug delivery, and thermal-chemotherapy for tumor treatment was described by Lu et al [136]. They obtained a novel mesoporous silica-coated carbon nanocomposite (DOX/MCN@Si-CDs) with redox/NIR/pH stimuli-responsive release ability and superior chemo-photothermal combined antitumor treatment activity as compared with individual treatments.…”
Section: Dual and Multi-responsive Nanomaterialsmentioning
confidence: 99%
“…One of the most widely explored MSN-based combinational chemotherapy is the integration of phototherapeutics and chemotherapeutics [ 374 , 375 , 376 , 377 , 378 , 379 ]. Fang et al constructed dual-stimuli responsive 5-fluorouracil (5-FU)-loaded and indocyanine green (ICG)-conjugated mesoporous silica-coated gold nanorods (GNR@SiO 2 -5-FU-ICG) for the multimodal imaging-guided synergistic therapy [ 277 ].…”
Section: Update On Msn Applications In Nanomedicinesmentioning
confidence: 99%
“…Zhang et al [112] synthesized a GSH-responsive probe using the fluorescent material amantadine-naphthalimide and the anticancer drug camptothecin to achieve active fluorescence imaging in cancer cells. Lu et al [113] used hollow mesoporous carbon (HMC) coated with doxorubicin and grafted reduction-sensitive near-infrared dye (HMC SS-CDPEI) to prepare a nanoprobe to monitor the release of doxorubicin. Choi et al [114] designed and synthesized a GSH-responsive fluorescent carbon nanoprobe.…”
Section: Fluorescent Nano-probe Design Based On Physiological Properties Of Gshmentioning
confidence: 99%