Recent advances in nanoscale metal-organic frameworks biosensors for detection of biomarkers
暂无分享,去创建一个
Chen Wang | Qiu-Yang Xu | Zheng Tan | Xue-Wei Liao | Chen Wang | Zheng Tan | Qiuyang Xu | Xuewei Liao
[1] Chao Zhang,et al. Aluminum Nanocrystals: A Sustainable Substrate for Quantitative SERS-Based DNA Detection. , 2017, Nano letters.
[2] Faqian Liu,et al. Electrodeposition of gold nanoparticles on Cu-based metal-organic framework for the electrochemical detection of nitrite , 2019, Sensors and Actuators B: Chemical.
[3] Zhonghua Zhu,et al. Efficient gas and alcohol uptake and separation driven by two types of channels in a porous MOF: an experimental and theoretical investigation , 2020 .
[4] Haidong Zhao,et al. Biomarker-targeted fluorescent probes for breast cancer imaging , 2018 .
[5] Min Liu,et al. High-Throughput and Sensitive Fluorimetric Strategy for MicroRNAs in Blood Using Wettable Microwells Array and Silver Nanoclusters with Red Fluorescence Enhanced by Metal Organic Frameworks. , 2018, ACS applied materials & interfaces.
[6] Kang Wang,et al. Strategy for In Situ Imaging of Cellular Alkaline Phosphatase Activity Using Gold Nanoflower Probe and Localized Surface Plasmon Resonance Technique. , 2018, Analytical chemistry.
[7] Rijun Gui,et al. Assembly of Black Phosphorous Nanosheets and MOF to Form Functional Hybrid Thin-Film for Precise Protein Capture, Dual-Signal and Intrinsic Self-Calibration Sensing of Specific Cancer-Derived Exosomes. , 2020, Analytical chemistry.
[8] Xiaoyu Wang,et al. Phosphate-responsive 2D-metal-organic-framework-nanozymes for colorimetric detection of alkaline phosphatase. , 2020, Journal of materials chemistry. B.
[9] Juewen Liu,et al. Heating Drives DNA to Hydrophobic Regions While Freezing to Hydrophilic Regions of Graphene Oxide for Highly Robust Biosensors. , 2020, Journal of the American Chemical Society.
[10] D. Cao,et al. Amino-Functionalized Luminescent Metal-Organic Framework Test Paper for Rapid and Selective Sensing of SO2 Gas and Its Derivatives by Luminescence Turn-On Effect. , 2018, Analytical chemistry.
[11] D. Cao,et al. A Novel Zr-MOF as Fluorescence Turn-On Probe for Real-Time Detecting H2 S Gas and Fingerprint Identification. , 2018, Small.
[12] M. Allendorf,et al. Reports of Meetings , 1970 .
[13] Shuming Nie,et al. Surface-Enhanced Raman Scattering Active Gold Nanoparticles with Enzyme-Mimicking Activities for Measuring Glucose and Lactate in Living Tissues. , 2017, ACS nano.
[14] Zhongxing Zhao,et al. SERS-Active MIL-100(Fe) Sensory Array for Ultrasensitive and Multiplex Detection of VOCs. , 2020, Angewandte Chemie.
[15] M. Allendorf,et al. An updated roadmap for the integration of metal-organic frameworks with electronic devices and chemical sensors. , 2017, Chemical Society reviews.
[16] A. Salimi,et al. Ni-hemin metal–organic framework with highly efficient peroxidase catalytic activity: toward colorimetric cancer cell detection and targeted therapeutics , 2018, Journal of Nanobiotechnology.
[17] Keng Wooi Ng,et al. Poly(lactic acid)/Carbon Nanotube Composite Microneedle Arrays for Dermal Biosensing. , 2019, Analytical chemistry.
[18] R. Leblanc,et al. Recent Developments of Carbon Dots in Biosensing: A Review. , 2020, ACS sensors.
[19] Martin Moskovits,et al. Electromagnetic theories of surface-enhanced Raman spectroscopy. , 2017, Chemical Society reviews.
[20] De‐Yin Wu,et al. Nanostructure-based plasmon-enhanced Raman spectroscopy for surface analysis of materials , 2016 .
[21] Ahmad Afzalinia,et al. Ultrasensitive Fluorescent miRNA Biosensor Based on a "Sandwich" Oligonucleotide Hybridization and Fluorescence Resonance Energy Transfer Process Using an Ln(III)-MOF and Ag Nanoparticles for Early Cancer Diagnosis: Application of Central Composite Design. , 2020, ACS applied materials & interfaces.
[22] Dan Du,et al. 2D Graphene Oxide/Fe-MOF Nanozyme Nest with Superior Peroxidase-Like Activity and Its Application for Detection of Woodsmoke Exposure Biomarker. , 2019, Analytical chemistry.
[23] X. Chu,et al. Biomineralized Metal-Organic Framework Nanoparticles Enable Enzymatic Rolling Circle Amplification in Living Cells for Ultrasensitive MicroRNA Imaging. , 2019, Analytical chemistry.
[24] J. Baumberg,et al. Core-Shell Gold Nanorod@Zirconium-Based Metal-Organic Framework Composites as in Situ Size-Selective Raman Probes. , 2019, Journal of the American Chemical Society.
[25] Amit Jaiswal,et al. 2D MoS2 -Based Nanomaterials for Therapeutic, Bioimaging, and Biosensing Applications. , 2018, Small.
[26] R. Pemberton,et al. Screen-printed carbon based biosensors and their applications in agri-food safety , 2020, TrAC Trends in Analytical Chemistry.
[27] Haijuan Li,et al. Smart Plasmonic Nanorobot for Real-Time Monitoring Cytochrome c Release and Cell Acidification in Apoptosis during Electrostimulation. , 2018, Analytical chemistry.
[28] Longyi Zhu,et al. Electrocatalysis of cerium metal-organic frameworks for ratiometric electrochemical detection of telomerase activity. , 2019, Biosensors & bioelectronics.
[29] Hui Wei,et al. 2D-Metal-Organic-Framework-Nanozyme Sensor Arrays for Probing Phosphates and Their Enzymatic Hydrolysis. , 2018, Analytical chemistry.
[30] X. Xia,et al. Ultrasensitive Capture, Detection, and Release of Circulating Tumor Cells Using a Nanochannel-Ion Channel Hybrid Coupled with Electrochemical Detection Technique. , 2017, Analytical chemistry.
[31] Y. Miao,et al. Tracking Airborne Molecules from Afar: Three-Dimensional Metal-Organic-Framework - Surface-Enhanced Raman Scattering (MOF-SERS) Platform for Stand-Off and Real-Time Atmospheric Monitoring. , 2019, ACS nano.
[32] R. Yuan,et al. Matrix Coordination-Induced Electrochemiluminescence Enhancement of Tetraphenylethylene-Based Hafnium Metal–Organic Framework: An Electrochemiluminescence Chromophore for Ultrasensitive Electrochemiluminescence Sensor Construction , 2020 .
[33] Yuming Huang,et al. Recent advances in the construction and analytical applications of metal-organic frameworks-based nanozymes , 2018, TrAC Trends in Analytical Chemistry.
[34] J. Muñoz-Jordán,et al. Performance of the Trioplex real-time RT-PCR assay for detection of Zika, dengue, and chikungunya viruses , 2018, Nature Communications.
[35] Shuangyan Huan,et al. Nanoscale Metal-Organic Framework Based Two-Photon Sensing Platform for Bioimaging in Live Tissue. , 2019, Analytical chemistry.
[36] Chaozheng He,et al. Defect-rich bimetallic yolk–shell metal-cyanide frameworks as efficient electrocatalysts for oxygen evolution reactions , 2021, Journal of Materials Chemistry A.
[37] Shaojun Dong,et al. GOx@ZIF-8(NiPd) Nanoflower: An Artificial Enzyme System for Tandem Catalysis. , 2017, Angewandte Chemie.
[38] C. Li,et al. Design of Metal-Organic Framework-Based Nanoprobes for Multicolor Detection of DNA Targets with Improved Sensitivity. , 2018, Analytical chemistry.
[39] Yuanjian Zhang,et al. Quantitative evaluation of biological reaction kinetics in confined nanospaces. , 2014, Analytical chemistry.
[40] Siyu Lu,et al. Two-dimensional oriented growth of Zn-MOF-on-Zr-MOF architecture: A highly sensitive and selective platform for detecting cancer markers. , 2019, Biosensors & bioelectronics.
[41] P. Cheng,et al. Multicenter Metal–Organic Framework‐Based Ratiometric Fluorescent Sensors , 2019, Advanced materials.
[42] Zuanguang Chen,et al. One-Step Electrodeposition of Silver Nanostructures on 2D/3D Metal-Organic Framework ZIF-67: Comparison and Application in Electrochemical Detection of Hydrogen Peroxide. , 2020, ACS applied materials & interfaces.
[43] Jian Wang,et al. Metal-organic framework-based nanomaterials for biomedical applications , 2020, Chinese Chemical Letters.
[44] Hua Zhang,et al. Ultrathin 2D Metal–Organic Framework Nanosheets , 2015, Advanced materials.
[45] Qian Song,et al. Selective Surface Enhanced Raman Scattering for Quantitative Detection of Lung Cancer Biomarkers in Superparticle@MOF Structure , 2018, Advanced materials.
[46] X. Xia,et al. Fabrication of Bio‐Inspired 2D MOFs/PAA Hybrid Membrane for Asymmetric Ion Transport , 2019, Advanced Functional Materials.
[47] Baokang Jin,et al. Metal-organic gel and metal-organic framework based switchable electrochemiluminescence RNA sensing platform for Zika virus , 2020 .
[48] Kang Wang,et al. Insight into the Unique Fluorescence Quenching Property of Metal-Organic Frameworks upon DNA Binding. , 2017, Analytical chemistry.
[49] Feng Li,et al. Nucleic Acid-Functionalized Metal-Organic Framework-Based Homogeneous Electrochemical Biosensor for Simultaneous Detection of Multiple Tumor Biomarkers. , 2019, Analytical chemistry.
[50] Maria Chan,et al. Ultralow-loading platinum-cobalt fuel cell catalysts derived from imidazolate frameworks , 2018, Science.
[51] Yanling Song,et al. Fluidic Multivalent Membrane Nanointerface Enables Synergetic Enrichment of Circulating Tumor Cells with High Efficiency and Viability. , 2020, Journal of the American Chemical Society.
[52] Ying Xiong,et al. Emerging strategies to enhance the sensitivity of competitive ELISA for detection of chemical contaminants in food samples , 2020 .
[53] Shikuan Yang,et al. Quantitative and Sensitive SERS Platform with Analyte Enrichment and Filtration Function. , 2020, Nano letters.
[54] Zhiyong Guo,et al. Dye modified metal-organic framework as a recyclable luminescent sensor for nicotine determination in urine solution and living cell. , 2019, ACS applied materials & interfaces.
[55] Yuanjing Cui,et al. A luminescent cerium metal-organic framework for the turn-on sensing of ascorbic acid. , 2017, Chemical communications.
[56] Kimoon Kim,et al. Homochiral metal-organic frameworks for asymmetric heterogeneous catalysis. , 2012, Chemical reviews.
[57] Changsi Cai,et al. para-Aminothiophenol Radical Reaction-Functionalized Gold Nanoprobe for One-to-All Detection of Five Reactive Oxygen Species In Vivo. , 2018, Analytical chemistry.
[58] Ping Li,et al. In Situ Fluorescence Imaging the Levels of Glycosylation and Phosphorylation by MOFs-based Nanoprobe in Depressed Mice. , 2020, Analytical chemistry.
[59] N. Zhang,et al. Metal-organic frameworks-derived hierarchical ZnO structures as efficient sensing materials for formaldehyde detection , 2020 .
[60] Xiangyu Jiao,et al. Control of capillary behavior through target-responsive hydrogel permeability alteration for sensitive visual quantitative detection , 2019, Nature Communications.
[61] Ailiang Chen,et al. Replacing antibodies with aptamers in lateral flow immunoassay. , 2015, Biosensors & bioelectronics.
[62] Yuming Chen,et al. In situ synthesis of a MOFs/PAA hybrid with ultrahigh ionic current rectification. , 2020, Nanoscale.
[63] Chengzhou Zhu,et al. Glucose Oxidase-Integrated Metal-Organic Framework Hybrids as Biomimetic Cascade Nanozymes for Ultrasensitive Glucose Biosensing. , 2019, ACS applied materials & interfaces.
[64] Hiang Kwee Lee,et al. Plasmonic nose: integrating the MOF-enabled molecular preconcentration effect with a plasmonic array for recognition of molecular-level volatile organic compounds. , 2018, Chemical communications.
[65] Jayoung Kim,et al. Wearable biosensors for healthcare monitoring , 2019, Nature Biotechnology.
[66] Xiaoyu Xie,et al. Regulating Fluorescent Aptamer-sensing Behavior of Zeolitic Imidazolate Framework (ZIF-8) Platform via Lanthanide Ions Doping. , 2019, ACS applied materials & interfaces.
[67] X. Xia,et al. In Situ Fabrication of Ultrasmall Gold Nanoparticles/2D MOFs Hybrid as Nanozyme for Antibacterial Therapy. , 2020, Small.
[68] Xiuling Li,et al. Recent progress in the design fabrication of metal-organic frameworks-based nanozymes and their applications to sensing and cancer therapy. , 2019, Biosensors & bioelectronics.
[69] Xiaoqing Chen,et al. Integrating Target-Triggered Aptamer-Capped HRP@Metal-Organic Frameworks with a Colorimeter Readout for On-Site Sensitive Detection of Antibiotics. , 2020, Analytical chemistry.
[70] Kang Wang,et al. Lanthanide-based metal-organic framework nanosheets with unique fluorescence quenching properties for two-color intracellular adenosine imaging in living cells , 2017 .
[71] Yuchao Li,et al. Red‐Blood‐Cell Waveguide as a Living Biosensor and Micromotor , 2019, Advanced Functional Materials.
[72] Guanghua Li,et al. A non-luminescent Eu-MOF-based "turn-on" sensor towards an anthrax biomarker through single-crystal to single-crystal phase transition. , 2019, Chemical communications.
[73] Qian Zhou,et al. Recent advances in photoelectrochemical biosensors for analysis of mycotoxins in food , 2020, TrAC Trends in Analytical Chemistry.
[74] M. Gu,et al. Aptamer-based environmental biosensors for small molecule contaminants. , 2017, Current opinion in biotechnology.
[75] Pinghua Ling,et al. Metal-organic framework nanosheets with flower-like structure as probes for H2S detection and in situ singlet-oxygen production. , 2019, Chemical communications.
[76] Qi Liu,et al. Molecular Vise Approach to Create Metal-Binding Sites in MOFs and Detection of Biomarkers. , 2018, Angewandte Chemie.
[77] Haifeng Dong,et al. Biodegradable Metal-Organic Frameworks Power DNAzyme for in Vivo Temporal-Spatial Control Fluorescence Imaging of Aberrant MicroRNA and Hypoxic Tumor. , 2020, Analytical chemistry.
[78] Wen-jun Song. Intracellular DNA and microRNA sensing based on metal-organic framework nanosheets with enzyme-free signal amplification. , 2017, Talanta.
[79] Jun‐Jie Zhu,et al. “Three-in-one” Nanohybrids as Synergistic Nanoquenchers to Enhance No-Wash Fluorescence Biosensors for Ratiometric Detection of Cancer Biomarkers , 2018, Theranostics.
[80] Weidong Fan,et al. Ligand controlled structure of cadmium(II) metal-organic frameworks for fluorescence sensing of Fe3+ ion and nitroaromatic compounds , 2019, Chinese Chemical Letters.
[81] Yunhui Yang,et al. A competitive microcystin-LR immunosensor based on Au NPs@metal-organic framework (MIL-101) , 2019, Chinese Chemical Letters.
[82] Yuanjian Zhang,et al. In Situ Detection and Imaging of Telomerase Activity in Cancer Cell Lines via Disassembly of Plasmonic Core-Satellites Nanostructured Probe. , 2017, Analytical chemistry.
[83] Ning Gan,et al. A Multicolor Fluorescence Nanoprobe Platform Using Two Dimensional Metal Organic Framework Nanosheets and Double Stirring Bars Assisted Target Replacement for Multiple Bioanalytical Applications. , 2019, ACS applied materials & interfaces.
[84] Fanggui Ye,et al. A ratiometric multicolor fluorescence biosensor for visual detection of alkaline phosphatase activity via a smartphone. , 2019, Biosensors & bioelectronics.
[85] D. Tang,et al. ZIF-8-Assisted NaYF4:Yb,Tm@ZnO Converter with Exonuclease III-Powered DNA Walker for Near-Infrared Light Responsive Biosensor. , 2019, Analytical chemistry.
[86] Min Zhou,et al. Light-Responsive Metal-Organic Framework as an Oxidase Mimic for Cellular Glutathione Detection. , 2019, Analytical chemistry.
[87] X. Xia,et al. Plasmonic hot charge carriers activated Ni centres of metal–organic frameworks for the oxygen evolution reaction , 2019, Journal of Materials Chemistry A.
[88] Xiaoquan Lu,et al. Dual-Emitting Fluorescent Metal-Organic Framework Nanocomposites as a Broad-Range pH Sensor for Fluorescence Imaging. , 2018, Analytical chemistry.
[89] Qingyun Liu,et al. Recent advances in dual-emission ratiometric fluorescence probes for chemo/biosensing and bioimaging of biomarkers , 2019, Coordination Chemistry Reviews.
[90] Songqin Liu,et al. Quantitative detection of potassium ions and adenosine triphosphate via a nanochannel-based electrochemical platform coupled with G-quadruplex aptamers. , 2014, Analytical chemistry.
[91] X. Xia,et al. Dendrimer-Au Nanoparticle Network Covered Alumina Membrane for Ion Rectification and Enhanced Bioanalysis , 2020, Nano letters.
[92] Xiaoyu Guo,et al. Enzyme-Free Tandem Reaction Strategy for Surface-Enhanced Raman Scattering Detection of Glucose by Using the Composite of Au Nanoparticles and Porphyrin-Based Metal-Organic Framework. , 2020, ACS applied materials & interfaces.
[93] J. Long,et al. Introduction to metal-organic frameworks. , 2012, Chemical reviews.
[94] C. Raman,et al. A Change of Wave-length in Light Scattering , 1928, Nature.
[95] Di Ning,et al. MOF based fluorescent assay of xanthine oxidase for rapid inhibitor screening with real-time kinetics monitoring. , 2018, Talanta.
[96] B. Yuliarto,et al. General synthesis of hierarchical sheet/plate-like M-BDC (M = Cu, Mn, Ni, and Zr) metal–organic frameworks for electrochemical non-enzymatic glucose sensing† , 2020, Chemical science.
[97] L. Cunha-Silva,et al. Sub-ppm Amine Detection via Absorption and Luminescence Turn-On caused by Ligand Exchange in Metal Organic Frameworks. , 2019, Analytical chemistry.