Ultrasound Triggered ZnO‐Based Devices for Tunable and Multifaceted Biomedical Applications
暂无分享,去创建一个
[1] Z. Qian,et al. Review of a new bone tumor therapy strategy based on bifunctional biomaterials , 2021, Bone Research.
[2] R. M. Kulkarni,et al. Nanostructured Ba/ZnO modified electrode as a sensor material for detection of organosulfur thiosalicylic acid , 2020 .
[3] N. Shetti,et al. Synthesis of Ca-doped ZnO nanoparticles and its application as highly efficient electrochemical sensor for the determination of anti-viral drug, acyclovir , 2020 .
[4] M. Laurenti,et al. Biodegradable and Drug-Eluting Inorganic Composites Based on Mesoporous Zinc Oxide for Urinary Stent Applications , 2020, Materials.
[5] M. Laurenti,et al. Doped Zinc Oxide Nanoparticles: Synthesis, Characterization and Potential Use in Nanomedicine , 2020, Applied sciences.
[6] N. Garino,et al. Zinc Oxide Nanocrystals and High-Energy Shock Waves: A New Synergy for the Treatment of Cancer Cells , 2020, Frontiers in Bioengineering and Biotechnology.
[7] R. M. Kulkarni,et al. Development of a novel nanosensor using Ca-doped ZnO for antihistamine drug , 2020 .
[8] N. Garino,et al. Leveraging re-chargeable nanobubbles on amine-functionalized ZnO nanocrystals for sustained ultrasound cavitation towards echographic imaging. , 2020, Ultrasonics sonochemistry.
[9] G. Canavese,et al. The Synergistic Effect of Nanocrystals Combined With Ultrasound in the Generation of Reactive Oxygen Species for Biomedical Applications , 2019, Front. Bioeng. Biotechnol..
[10] A. Chiodoni,et al. ZnO nanocrystals shuttled by extracellular vesicles as effective Trojan nano-horses against cancer cells , 2019, Nanomedicine.
[11] N. Shetti,et al. ZnO-based nanostructured electrodes for electrochemical sensors and biosensors in biomedical applications. , 2019, Biosensors & bioelectronics.
[12] N. Shetti,et al. A Novel Electrochemical Sensor for Detection of Molinate Using ZnO Nanoparticles Loaded Carbon Electrode , 2019, Electroanalysis.
[13] Yu Chen,et al. Reactive Oxygen Species (ROS)-Based Nanomedicine. , 2019, Chemical reviews.
[14] N. Garino,et al. Sonophotocatalytic degradation mechanisms of Rhodamine B dye via radicals generation by micro- and nano-particles of ZnO , 2019, Applied catalysis. B, Environmental.
[15] V. Cappello,et al. Piezoelectric barium titanate nanostimulators for the treatment of glioblastoma multiforme. , 2018, Journal of colloid and interface science.
[16] A. Lamberti,et al. Graphene Oxide Finely Tunes the Bioactivity and Drug Delivery of Mesoporous ZnO Scaffolds. , 2018, ACS applied materials & interfaces.
[17] M. Laurenti,et al. Porous ZnO/2–Hydroxyethyl Methacrylate Eluting Coatings for Ureteral Stent Applications , 2018, Coatings.
[18] G. Canavese,et al. Nanoparticle-assisted ultrasound: A special focus on sonodynamic therapy against cancer , 2018, Chemical engineering journal.
[19] N. Garino,et al. Lipid-Coated Zinc Oxide Nanoparticles as Innovative ROS-Generators for Photodynamic Therapy in Cancer Cells , 2018, Nanomaterials.
[20] M. Laurenti,et al. Gentamicin-Releasing Mesoporous ZnO Structures , 2018, Materials.
[21] Swagata Roy,et al. Superior performances of in situ synthesized ZnO/PVDF thin film based self-poled piezoelectric nanogenerator and self-charged photo-power bank with high durability , 2018 .
[22] Yeon Woong Choo,et al. Thermosensitive, Stretchable, and Piezoelectric Substrate for Generation of Myogenic Cell Sheet Fragments from Human Mesenchymal Stem Cells for Skeletal Muscle Regeneration , 2017 .
[23] M. Laurenti,et al. ZnO Nanostructures for Tissue Engineering Applications , 2017, Nanomaterials.
[24] Salvador Pané,et al. Ultrasound-mediated piezoelectric differentiation of neuron-like PC12 cells on PVDF membranes , 2017, Scientific Reports.
[25] P. Caliceti,et al. Enhanced selective sonosensitizing efficacy of ultrasound-based anticancer treatment by targeted gold nanoparticles. , 2016, Nanomedicine.
[26] J. Kotoky,et al. Chitosan-Iron Oxide Coated Graphene Oxide Nanocomposite Hydrogel: A Robust and Soft Antimicrobial Biofilm. , 2016, ACS applied materials & interfaces.
[27] V. Mattoli,et al. P(VDF‐TrFE)/BaTiO3 Nanoparticle Composite Films Mediate Piezoelectric Stimulation and Promote Differentiation of SH‐SY5Y Neuroblastoma Cells , 2016, Advanced healthcare materials.
[28] Min Qi,et al. Development of multifunctional cobalt ferrite/graphene oxide nanocomposites for magnetic resonance imaging and controlled drug delivery , 2016 .
[29] Senentxu Lanceros-Méndez,et al. Piezoelectric polymers as biomaterials for tissue engineering applications. , 2015, Colloids and surfaces. B, Biointerfaces.
[30] Satoshi Arai,et al. Piezoelectric Nanoparticle-Assisted Wireless Neuronal Stimulation , 2015, ACS nano.
[31] Candido Pirri,et al. Nanobranched ZnO Structure: p‐Type Doping Induces Piezoelectric Voltage Generation and Ferroelectric–Photovoltaic Effect , 2015, Advanced materials.
[32] Dasmawati Mohamad,et al. Review on Zinc Oxide Nanoparticles: Antibacterial Activity and Toxicity Mechanism , 2015, Nano-Micro Letters.
[33] A. Evdokiou,et al. SaOS2 Osteosarcoma Cells as an In Vitro Model for Studying the Transition of Human Osteoblasts to Osteocytes , 2014, Calcified Tissue International.
[34] R. Ganesan,et al. Effect of Cobalt Doping on Structural, Optical, and Magnetic Properties of ZnO Nanoparticles Synthesized by Coprecipitation Method , 2014 .
[35] Kock-Yee Law,et al. Definitions for Hydrophilicity, Hydrophobicity, and Superhydrophobicity: Getting the Basics Right. , 2014, The journal of physical chemistry letters.
[36] Federico Bella,et al. Multi-functional energy conversion and storage electrodes using flower-like Zinc oxide nanostructures , 2014 .
[37] H. Xiong. ZnO Nanoparticles Applied to Bioimaging and Drug Delivery , 2013, Advanced materials.
[38] D. Hui,et al. Antimicrobial mechanism based on H2O2 generation at oxygen vacancies in ZnO crystals. , 2013, Langmuir : the ACS journal of surfaces and colloids.
[39] Da Chen,et al. Graphene oxide: preparation, functionalization, and electrochemical applications. , 2012, Chemical reviews.
[40] V. Mattoli,et al. ZnO nanowire arrays as substrates for cell proliferation and differentiation , 2012 .
[41] S. Hultgren,et al. Update on biofilm infections in the urinary tract , 2012, World Journal of Urology.
[42] Arianna Menciassi,et al. Enhancement of neurite outgrowth in neuronal-like cells following boron nitride nanotube-mediated stimulation. , 2010, ACS nano.
[43] M. C. Stuart,et al. Emerging applications of stimuli-responsive polymer materials. , 2010, Nature materials.
[44] Joanne I. Yeh,et al. Comparison of the mechanism of toxicity of zinc oxide and cerium oxide nanoparticles based on dissolution and oxidative stress properties. , 2008, ACS nano.
[45] Masaru Saito,et al. Large photocurrent generation in dye-sensitized ZnO solar cells , 2008 .
[46] Zhong Lin Wang. Energy harvesting for self-powered nanosystems , 2008 .
[47] Yusuke Arima,et al. Effect of wettability and surface functional groups on protein adsorption and cell adhesion using well-defined mixed self-assembled monolayers. , 2007, Biomaterials.
[48] Jinhui Song,et al. Integrated nanogenerators in biofluid. , 2007, Nano letters.
[49] Nikolaos Stergiopulos,et al. RGD-Functionalized polymer brushes as substrates for the integrin specific adhesion of human umbilical vein endothelial cells. , 2007, Biomaterials.
[50] Mile Ivanda,et al. Sol–gel synthesis and characterization of nanocrystalline ZnO powders , 2005 .
[51] L. Lauro-Taroni,et al. INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF PHYSICS D: APPLIED PHYSICS , 2003 .
[52] P. Tenke,et al. Bacterial biofilm formation on urologic devices and heparin coating as preventive strategy. , 2004, International journal of antimicrobial agents.
[53] R. Jain,et al. Photodynamic therapy for cancer , 2003, Nature Reviews Cancer.
[54] Juergen Friedrich,et al. Spheroid-based drug screen: considerations and practical approach , 2009, Nature Protocols.
[55] G. Socrates,et al. Infrared and Raman characteristic group frequencies : tables and charts , 2001 .