Doxorubicin-Fe(III)-Gossypol Infinite Coordination Polymer@PDA:CuO2 Composite Nanoparticles for Cost-Effective Programmed Photothermal-Chemodynamic-Coordinated Dual Drug Chemotherapy Trimodal Synergistic Tumor Therapy.
暂无分享,去创建一个
Ke Li | Xueping Li | Hongrui Zhu | Shuo Zhang | Daocheng Wu | Chenqi Huang | Jingran Di | Zepu Chang
[1] Peng Wang,et al. Phototheranostic Agents Based on Nonionic Heptamethine Cyanine for Realizing Synergistic Cancer Phototherapy , 2023, Advanced healthcare materials.
[2] Yu Chen,et al. Covalent Organic Framework Nanobowls as Activatable Nanosensitizers for Tumor‐Specific and Ferroptosis‐Augmented Sonodynamic Therapy , 2023, Advanced science.
[3] Yue Lan,et al. Dual-stimuli responsive smart nanoprobe for precise diagnosis and synergistic multi-modalities therapy of superficial squamous cell carcinoma , 2023, Journal of Nanobiotechnology.
[4] Da-Wei Zhang,et al. Self-delivery biomedicine for enhanced photodynamic therapy by feedback promotion of tumor autophagy. , 2023, Acta biomaterialia.
[5] J. Tao,et al. When Iodine Meets Starch: On-Demand Generation of Photothermal Hydrogels for Mild-Temperature Photothermal-Chemo Disinfection. , 2022, ACS applied materials & interfaces.
[6] Li Cheng,et al. Titanium Sulfide Nanosheets Serve as Cascade Bioreactors for H2S‐Mediated Programmed Gas–Sonodynamic Cancer Therapy , 2022, Advanced science.
[7] Qinfu Zhao,et al. Tailored nanoplatforms with detachable ‘meteorolite’ for photothermal-enhanced programmed tumor therapy , 2022, Carbon.
[8] Wanhai Xu,et al. Bacteria-inspired transformable nanoparticle targets and covers residual tumor against bladder cancer recurrence , 2022, Nano Today.
[9] Wei Feng,et al. An NIR‐II Photothermally Triggered “Oxygen Bomb” for Hypoxic Tumor Programmed Cascade Therapy , 2022, Advanced materials.
[10] Jun Zhang,et al. Chemodynamic and Photothermal Combination Therapy Based on Dual-Modified Metal-Organic Framework for Inducing Tumor Ferroptosis/Pyroptosis. , 2022, ACS applied materials & interfaces.
[11] Xuli Feng,et al. Self-Assembly of Intelligent Nanoplatform for Endogenous H2S-Triggered Multimodal Cascade Therapy of Colon Cancer. , 2022, Nano letters.
[12] Wei Zhang,et al. Escherichia coli Mimetic Gold Nanorod-Mediated Photo- and Immunotherapy for Treating Cancer and Its Metastasis. , 2022, ACS nano.
[13] Daocheng Wu,et al. Molecular Stacking Composite Nanoparticles of Gossypolone and Thermodynamic Agent for Elimination of Large Tumor in Mice via Electrothermal‐Thermodynamic‐Chemo Trimodal Combination Therapy , 2022, Advanced Functional Materials.
[14] G. Yin,et al. Fe(III)-Chelated Polydopamine Nanoparticles for Synergistic Tumor Therapies of Enhanced Photothermal Ablation and Antitumor Immune Activation. , 2022, ACS applied materials & interfaces.
[15] Wei Peng,et al. In situ Thermal-Responsive Magnetic Hydrogel for Multidisciplinary Therapy of Hepatocellular Carcinoma. , 2022, Nano letters.
[16] Zhuang Liu,et al. Albumin-Based Therapeutics Capable of Glutathione Consumption and Hydrogen Peroxide Generation for Synergetic Chemodynamic and Chemotherapy of Cancer. , 2022, ACS nano.
[17] Huijing Xiang,et al. Engineering 2D Cu-composed metal–organic framework nanosheets for augmented nanocatalytic tumor therapy , 2022, Journal of Nanobiotechnology.
[18] Wen-jun Wang,et al. γ‐Fe2O3 Loading Mitoxantrone and Glucose Oxidase for pH‐Responsive Chemo/Chemodynamic/Photothermal Synergistic Cancer Therapy , 2022, Advanced healthcare materials.
[19] Chang Xu,et al. Multimodal Imaging-Guided Spatiotemporal Tracking of Photosensitive Stem Cells for Breast Cancer Treatment. , 2022, ACS applied materials & interfaces.
[20] Xudong Fan,et al. Cooperative coordination-mediated multi-component self-assembly of “all-in-one” nanospike theranostic nano-platform for MRI-guided synergistic therapy against breast cancer , 2022, Acta pharmaceutica Sinica. B.
[21] G. Ning,et al. Infection microenvironment-activated core-shell nanoassemblies for photothermal/chemodynamic synergistic wound therapy and multimodal imaging. , 2022, Acta biomaterialia.
[22] T. Hyeon,et al. Enhanced Chemodynamic Therapy by Cu-Fe Peroxide Nanoparticles: Tumor Microenvironment-Mediated Synergistic Fenton Reaction. , 2022, ACS nano.
[23] Jun Lin,et al. Recent advances on endogenous/exogenous stimuli-triggered nanoplatforms for enhanced chemodynamic therapy , 2022, Coordination Chemistry Reviews.
[24] K. Cai,et al. Flower‐Like Nanozymes with Large Accessibility of Single Atom Catalysis Sites for ROS Generation Boosted Tumor Therapy , 2021, Advanced Functional Materials.
[25] Jun Lin,et al. One-Step Integration of Tumor Microenvironment-Responsive Calcium and Copper Peroxides Nanocomposite for Enhanced Chemodynamic/Ion-Interference Therapy. , 2021, ACS nano.
[26] Xiaolong Liu,et al. Natural Killer Cell Membrane‐Cloaked Virus‐Mimicking Nanogenerator with NIR‐Triggered Shape Reversal and •C/•OH Storm for Synergistic Thermodynamic–Chemodynamic Therapy , 2021, Advanced science.
[27] Shikai Liu,et al. Guiding Transition Metal‐Doped Hollow Cerium Tandem Nanozymes with Elaborately Regulated Multi‐Enzymatic Activities for Intensive Chemodynamic Therapy , 2021, Advanced materials.
[28] Michael E. Dunham,et al. Detection of pancreatic cancer by indocyanine green‐assisted fluorescence imaging in the first and second near‐infrared windows , 2021, Cancer communications.
[29] Shuang‐Shuang Wan,et al. Nanocatalyst‐Mediated Chemodynamic Tumor Therapy , 2021, Advanced healthcare materials.
[30] J. Qian,et al. NIR-II Responsive Hollow Magnetite Nanoclusters for Targeted Magnetic Resonance Imaging-Guided Photothermal/Chemo-Therapy and Chemodynamic Therapy. , 2021, Small.
[31] Yanli Zhao,et al. Ultrasmall Alloy Nanozyme for Ultrasound- and Near-Infrared Light-Promoted Tumor Ablation. , 2021, ACS nano.
[32] Ya Wang,et al. IR780‐Loaded Hyaluronic Acid@Gossypol–Fe(III)–EGCG Infinite Coordination Polymer Nanoparticles for Highly Efficient Tumor Photothermal/Coordinated Dual Drugs Synergistic Therapy , 2021, Advanced Functional Materials.
[33] Lan Xu,et al. A CaO2@Tannic Acid‐FeIII Nanoconjugate for Enhanced Chemodynamic Tumor Therapy , 2021, ChemMedChem.
[34] G. Guo,et al. Tumor Acidity and Near‐Infrared Light Responsive Dual Drug Delivery Polydopamine‐Based Nanoparticles for Chemo‐Photothermal Therapy , 2021, Advanced Functional Materials.
[35] Youshen Wu,et al. Highly Penetrable and On-Demand Oxygen Release with Tumor Activity Composite Nanosystem for Photothermal/Photodynamic Synergetic Therapy. , 2020, ACS nano.
[36] Y. Gan,et al. Photothermal Generation of Oxygen-Irrelevant Free Radicals with Simultaneous Suppression of Glutathione Synthesis for an Enhanced Photonic Thermodynamic Cancer Therapy. , 2020, ACS biomaterials science & engineering.
[37] Zhipeng Gu,et al. Regulating the absorption spectrum of polydopamine , 2020, Science Advances.
[38] Xiaoyuan Chen,et al. Clinical development and potential of photothermal and photodynamic therapies for cancer , 2020, Nature Reviews Clinical Oncology.
[39] Jun Lin,et al. Biocompatible CuO-decorated carbon nanoplatforms for multiplexed imaging and enhanced antitumor efficacy via combined photothermal therapy/chemodynamic therapy/chemotherapy , 2020, Science China Materials.
[40] Jianqing Gao,et al. Engineering bacterial outer membrane vesicles as transdermal nanoplatforms for photo-TRAIL–programmed therapy against melanoma , 2020, Science Advances.
[41] Shige Wang,et al. Integration of Fe3O4 with Bi2S3 for Multi-Modality Tumor Theranostics. , 2020, ACS applied materials & interfaces.
[42] Wei Li,et al. Bioinspired Construction of a Nanozyme-Based H2O2 Homeostasis Disruptor for Intensive Chemodynamic Therapy. , 2020, Journal of the American Chemical Society.
[43] Yu Chen,et al. Chemoreactive Nanotherapeutics by Metal Peroxide Based Nanomedicine , 2020, Advanced science.
[44] Jun Lin,et al. A Multifunctional Cascade Bioreactor Based on Hollow‐Structured Cu2MoS4 for Synergetic Cancer Chemo‐Dynamic Therapy/Starvation Therapy/Phototherapy/Immunotherapy with Remarkably Enhanced Efficacy , 2019, Advanced materials.
[45] M. Büchler,et al. Patterns of Recurrence After Resection of Pancreatic Ductal Adenocarcinoma: A Secondary Analysis of the ESPAC-4 Randomized Adjuvant Chemotherapy Trial. , 2019, JAMA surgery.
[46] Peng Yang,et al. Tailoring Synthetic Melanin Nanoparticles for Enhanced Photothermal Therapy. , 2019, ACS applied materials & interfaces.
[47] Yue Ding,et al. NIR-Responsive Polypeptide Nanocomposite Generates NO Gas, Mild Photothermia and Chemotherapy to Reverse Multidrug Resistant Cancer. , 2019, Nano letters.
[48] Rui Tian,et al. Synthesis of Copper Peroxide Nanodots for H2O2 Self-Supplying Chemodynamic Therapy. , 2019, Journal of the American Chemical Society.
[49] Minfeng Huo,et al. Ultrasmall Cu2-xS nanodots as photothermal-enhanced Fenton nanocatalysts for synergistic tumor therapy at NIR-II biowindow. , 2019, Biomaterials.
[50] M. Wan,et al. IR780 loaded perfluorohexane nanodroplets for efficient sonodynamic effect induced by short-pulsed focused ultrasound. , 2019, Ultrasonics sonochemistry.
[51] J. Chen,et al. Core-Satellite Nanomedicines for in Vivo Real-Time Monitoring of Enzyme-Activatable Drug Release by Fluorescence and Photoacoustic Dual-Modal Imaging. , 2018, ACS nano.
[52] W. Bu,et al. Chemodynamic Therapy: Tumour Microenvironment-Mediated Fenton and Fenton-like Reactions. , 2018, Angewandte Chemie.
[53] Youshen Wu,et al. Ultralong Circulating Lollipop‐Like Nanoparticles Assembled with Gossypol, Doxorubicin, and Polydopamine via π–π Stacking for Synergistic Tumor Therapy , 2018, Advanced Functional Materials.
[54] Youshen Wu,et al. Versatile hyaluronic acid modified AQ4N-Cu(II)-gossypol infinite coordination polymer nanoparticles: Multiple tumor targeting, highly efficient synergistic chemotherapy, and real-time self-monitoring. , 2018, Biomaterials.
[55] Xian‐Zheng Zhang,et al. Stimuli-Responsive "Cluster Bomb" for Programmed Tumor Therapy. , 2017, ACS nano.
[56] Zhiping Zhang,et al. Nanotechnology based therapeutic modality to boost anti‐tumor immunity and collapse tumor defense , 2017, Journal of controlled release : official journal of the Controlled Release Society.
[57] T. Ishizawa,et al. Liver transection using indocyanine green fluorescence imaging and hepatic vein clamping , 2017, The British journal of surgery.
[58] Dalong Ni,et al. Magnesium silicide nanoparticles as a deoxygenation agent for cancer starvation therapy. , 2017, Nature nanotechnology.
[59] Ligeng Xu,et al. Photothermal therapy with immune-adjuvant nanoparticles together with checkpoint blockade for effective cancer immunotherapy , 2016, Nature Communications.
[60] Hao Zhang,et al. Fe3O4@polydopamine Composite Theranostic Superparticles Employing Preassembled Fe3O4 Nanoparticles as the Core. , 2016, ACS applied materials & interfaces.
[61] Zhuang Liu,et al. Albumin-NIR dye self-assembled nanoparticles for photoacoustic pH imaging and pH-responsive photothermal therapy effective for large tumors. , 2016, Biomaterials.
[62] Lehui Lu,et al. Dopamine‐Melanin Colloidal Nanospheres: An Efficient Near‐Infrared Photothermal Therapeutic Agent for In Vivo Cancer Therapy , 2013, Advanced materials.
[63] Suwarna Datar,et al. Reversible Aggregation Control of Polyvinylpyrrolidone Capped Gold Nanoparticles as a Function of pH , 2012 .
[64] R. Chun. Lymphoma: which chemotherapy protocol and why? , 2009, Topics in companion animal medicine.
[65] Irfan Rahman,et al. Assay for quantitative determination of glutathione and glutathione disulfide levels using enzymatic recycling method , 2006, Nature Protocols.
[66] Y. Liu,et al. Thermochromism-induced temperature self-regulation and alternating photothermal nanohelix clusters for synergistic tumor chemo/photothermal therapy. , 2019, Biomaterials.
[67] Jiajun Liu,et al. Mulberry-like dual-drug complicated nanocarriers assembled with apogossypolone amphiphilic starch micelles and doxorubicin hyaluronic acid nanoparticles for tumor combination and targeted therapy. , 2015, Biomaterials.