Hyaluronic Acid-based Supramolecular Nanomedicine with Optimized Ratio of Oxaliplatin/Chlorin e6 for Combined Chemotherapy and O2-Economized Photodynamic Therapy.
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Greta Mok | Shengke Li | Ruibing Wang | Yuanfu Ding | Junyan Li | Ziyi Wang | Jingwei Luo | Xun Xu
[1] Greta Mok,et al. Hyaluronic acid-based supramolecular medicine with polyamines sequestration capability for cooperative anti-psoriasis. , 2022, Carbohydrate polymers.
[2] S. Mitragotri,et al. Strategies to improve the EPR effect: A mechanistic perspective and clinical translation. , 2022, Journal of controlled release : official journal of the Controlled Release Society.
[3] Lisi Xie,et al. Metal-Phenolic Network-Enabled Lactic Acid Consumption Reverses Immunosuppressive Tumor Microenvironment for Sonodynamic Therapy. , 2021, ACS nano.
[4] Xi Zhang,et al. An Activatable Host-Guest Conjugate as a Nanocarrier for Effective Drug Release through Self-Inclusion. , 2021, ACS applied materials & interfaces.
[5] Xiaoyu Xu,et al. Engineered macrophages as near-infrared light activated drug vectors for chemo-photodynamic therapy of primary and bone metastatic breast cancer , 2021, Nature Communications.
[6] Na Li,et al. ATP-triggered mitochondrial cascade reactions for cancer therapy with nanoscale zeolitic imidazole framework-90 , 2021, Theranostics.
[7] Ruibing Wang,et al. Supramolecular Vesicles Based on Gold Nanorods for Precise Control of Gene Therapy and Deferred Photothermal Therapy , 2021 .
[8] Ruibing Wang,et al. Supramolecular Polymerization-Induced Nanoassemblies for Self-Augmented Cascade Chemotherapy and Chemodynamic Therapy of Tumour. , 2021, Angewandte Chemie.
[9] Zhen Yuan,et al. A hypoxia responsive nanoassembly for tumor specific oxygenation and enhanced sonodynamic therapy. , 2021, Biomaterials.
[10] Shengke Li,et al. Supramolecular nanomedicine derived from cucurbit[7]uril-conjugated nano-graphene oxide for multi-modality cancer therapy. , 2021, Biomaterials science.
[11] Youyong Yuan,et al. Dual-Drug Backboned Polyprodrug with a Predefined Drug Combination for Synergistic Chemotherapy. , 2021, Nano letters.
[12] Yahui Wu,et al. Redox dual-responsive dendrimeric nanoparticles for mutually synergistic chemo-photodynamic therapy to overcome drug resistance. , 2020, Journal of controlled release : official journal of the Controlled Release Society.
[13] Zhen Yuan,et al. Polyphenol-based Nanomedicine Evokes Immune Activation for Combination Cancer Treatment. , 2020, Angewandte Chemie.
[14] Z. Qian,et al. ROS‐Responsive Camptothecin Prodrug Nanoparticles for On‐Demand Drug Release and Combination of Chemotherapy and Photodynamic Therapy , 2020, Advanced Functional Materials.
[15] Ruibing Wang,et al. Supramolecular Induction of Mitochondrial Aggregation and Fusion. , 2020, Journal of the American Chemical Society.
[16] Dongyang Zhao,et al. Light-triggered dual-modality drug release of self-assembled prodrug-nanoparticles for synergistic photodynamic and hypoxia-activated therapy. , 2020, Nanoscale horizons.
[17] A. Jemal,et al. Colorectal cancer statistics, 2020 , 2020, CA: a cancer journal for clinicians.
[18] Houhe Liu,et al. Self-Delivery Nanomedicine for O2-Economized Photodynamic Tumor Therapy. , 2020, Nano letters.
[19] Xiaolong Liu,et al. Tumor microenvironment-activated self-recognizing nanodrug through directly tailored assembly of small-molecules for targeted synergistic chemotherapy. , 2020, Journal of controlled release : official journal of the Controlled Release Society.
[20] Chungang Wang,et al. Tailored synthesis of hollow MOF/polydopamine Janus nanoparticles for synergistic multi-drug chemo-photothermal therapy , 2019 .
[21] H. Yang,et al. Tumor acidity and CD44 dual targeting hyaluronic acid-coated gold nanorods for combined chemo- and photothermal cancer therapy. , 2019, Carbohydrate polymers.
[22] Hung-Ming Wang,et al. Pembrolizumab alone or with chemotherapy versus cetuximab with chemotherapy for recurrent or metastatic squamous cell carcinoma of the head and neck (KEYNOTE-048): a randomised, open-label, phase 3 study , 2019, The Lancet.
[23] Ruibing Wang,et al. Gold nanorods with a noncovalently tailorable surface for multi-modality image-guided chemo-photothermal cancer therapy. , 2019, Chemical communications.
[24] Lianhui Wang,et al. One-pot growth of triangular SnS nanopyramids for photoacoustic imaging and photothermal ablation of tumors , 2019, New Journal of Chemistry.
[25] W. Tan,et al. Molecular Engineering-Based Aptamer-Drug Conjugates with Accurate Tunability of Drug Ratios for Drug Combination Cancer Targeted Therapy. , 2019, Angewandte Chemie.
[26] Shengke Li,et al. Host-Guest Interactions Initiated Supramolecular Chitosan Nanogels for Selective Intracellular Drug Delivery. , 2019, ACS applied materials & interfaces.
[27] Kwangmeyung Kim,et al. Theranostic designs of biomaterials for precision medicine in cancer therapy. , 2019, Biomaterials.
[28] Wei Cheng,et al. NIR-Light-Activated Combination Therapy with a Precise Ratio of Photosensitizer and Prodrug Using a Host-Guest Strategy. , 2019, Angewandte Chemie.
[29] Yanli Zhao,et al. Catalase-Integrated Hyaluronic Acid as Nanocarriers for Enhanced Photodynamic Therapy in Solid Tumor. , 2019, ACS nano.
[30] J. Hilborn,et al. Modulating Thiol p Ka Promotes Disulfide Formation at Physiological pH: An Elegant Strategy To Design Disulfide Cross-Linked Hyaluronic Acid Hydrogels. , 2019, Biomacromolecules.
[31] S. Hursting,et al. Zoledronic Acid-containing Nanoparticles With Minimum Premature Release Show Enhanced Activity Against Extraskeletal Tumor. , 2019, ACS applied materials & interfaces.
[32] Yin Dou,et al. A self-illuminating nanoparticle for inflammation imaging and cancer therapy , 2019, Science Advances.
[33] Shengke Li,et al. Polymeric Nanomedicine with "Lego" Surface Allowing Modular Functionalization and Drug Encapsulation. , 2018, ACS applied materials & interfaces.
[34] Ling Li,et al. Efficiency against multidrug resistance by co-delivery of doxorubicin and curcumin with a legumain-sensitive nanocarrier , 2018, Nano Research.
[35] Peng Yang,et al. Biodegradable Zwitterionic Nanogels with Long Circulation for Antitumor Drug Delivery. , 2018, ACS applied materials & interfaces.
[36] Shengke Li,et al. Highly Biocompatible Chlorin e6-Loaded Chitosan Nanoparticles for Improved Photodynamic Cancer Therapy. , 2018, ACS applied materials & interfaces.
[37] Zhiwei Sun,et al. Supramolecular polymeric chemotherapy based on cucurbit[7]uril-PEG copolymer. , 2018, Biomaterials.
[38] Xiaoyuan Chen,et al. Nanotechnology for Multimodal Synergistic Cancer Therapy. , 2017, Chemical reviews.
[39] Jun Lin,et al. Synthesis and Optimization of MoS2@Fe3O4‐ICG/Pt(IV) Nanoflowers for MR/IR/PA Bioimaging and Combined PTT/PDT/Chemotherapy Triggered by 808 nm Laser , 2017, Advanced science.
[40] Xi Zhang,et al. Supramolecular Chemotherapy: Cooperative Enhancement of Antitumor Activity by Combining Controlled Release of Oxaliplatin and Consuming of Spermine by Cucurbit[7]uril. , 2017, ACS applied materials & interfaces.
[41] S. Dhar,et al. A Nanoparticle Cocktail: Temporal Release of Predefined Drug Combinations. , 2015, Journal of the American Chemical Society.
[42] Wenbin Lin,et al. Self-assembled core-shell nanoparticles for combined chemotherapy and photodynamic therapy of resistant head and neck cancers. , 2015, ACS nano.
[43] Paula T. Hammond,et al. A Convergent Synthetic Platform for Single-Nanoparticle Combination Cancer Therapy: Ratiometric Loading and Controlled Release of Cisplatin, Doxorubicin, and Camptothecin , 2014, Journal of the American Chemical Society.
[44] Xiaohua Ma,et al. Mechanisms of drug combinations: interaction and network perspectives , 2009, Nature Reviews Drug Discovery.
[45] Gabriele Bergers,et al. Modes of resistance to anti-angiogenic therapy , 2008, Nature Reviews Cancer.