Rapid disease diagnosis using low-cost paper and paper-hybrid microfluidic devices
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Xiujun Li | Hamed Tavakoli | Wan Zhou | Lei Ma | Cynthia Bautista | H. Tavakoli | Wan Zhou | Xiujun Li | Lei Ma | Cynthia Bautista
[1] Hamed Tavakoli,et al. A low-cost microfluidic platform for rapid and instrument-free detection of whooping cough. , 2019, Analytica chimica acta.
[2] S. Tasoglu,et al. Continuous-Ink, Multiplexed Pen-Plotter Approach for Low-Cost, High-Throughput Fabrication of Paper-Based Microfluidics. , 2017, Analytical chemistry.
[3] Jinghua Yu,et al. Three-dimensional paper-based electrochemiluminescence immunodevice for multiplexed measurement of biomarkers and point-of-care testing. , 2012, Biomaterials.
[4] A. Steckl,et al. Paper Microfluidics for Point-of-Care Blood-Based Analysis and Diagnostics. , 2018, Analytical chemistry.
[5] Bin Liu,et al. Paper-based fluoroimmunoassay for rapid and sensitive detection of antigen , 2012 .
[6] XiuJun Li,et al. A PDMS/paper/glass hybrid microfluidic biochip integrated with aptamer-functionalized graphene oxide nano-biosensors for one-step multiplexed pathogen detection. , 2013, Lab on a chip.
[7] Mohidus Samad Khan,et al. Qualitative and quantitative detection of T7 bacteriophages using paper based sandwich ELISA. , 2015, Colloids and surfaces. B, Biointerfaces.
[8] C. Rozand. Paper-based analytical devices for point-of-care infectious disease testing , 2013, European Journal of Clinical Microbiology & Infectious Diseases.
[9] Emanuel Carrilho,et al. Paper-based ELISA. , 2010, Angewandte Chemie.
[10] Min Su,et al. Paper-based electrochemical cyto-device for sensitive detection of cancer cells and in situ anticancer drug screening. , 2014, Analytica chimica acta.
[11] S. Hossain,et al. Multiplexed paper test strip for quantitative bacterial detection , 2012, Analytical and Bioanalytical Chemistry.
[12] Xiujun Li,et al. Paper and Paper Hybrid Microfluidic Devices for Point‐of‐care Detection of Infectious Diseases , 2020 .
[13] Rodrigo Martinez-Duarte,et al. Microfabrication technologies in dielectrophoresis applications—A review , 2012, Electrophoresis.
[14] Wei Shen,et al. Progress in patterned paper sizing for fabrication of paper-based microfluidic sensors , 2010 .
[15] Adam T Woolley,et al. Microfluidics: Innovations in Materials and Their Fabrication and Functionalization. , 2019, Analytical chemistry.
[16] Richard M Crooks,et al. Paper electrochemical device for detection of DNA and thrombin by target-induced conformational switching. , 2014, Analytical chemistry.
[17] Fernando Silva,et al. Catalytic Effect of Gold Nanoparticles Self-Assembled in Multilayered Polyelectrolyte Films , 2007 .
[18] G. Whitesides,et al. Low-cost printing of poly(dimethylsiloxane) barriers to define microchannels in paper. , 2008, Analytical chemistry.
[19] Shenguang Ge,et al. Photoelectrochemical lab-on-paper device equipped with a porous Au-paper electrode and fluidic delay-switch for sensitive detection of DNA hybridization. , 2013, Lab on a chip.
[20] Jingjing Liu,et al. A paper-based detection method of cancer cells using the photo-thermal effect of nanocomposite. , 2016, Journal of pharmaceutical and biomedical analysis.
[21] W. Dungchai,et al. Lab-on-paper with dual electrochemical/colorimetric detection for simultaneous determination of gold and iron. , 2010, Analytical chemistry.
[22] G. Whitesides,et al. Paper-based piezoresistive MEMS sensors. , 2011, Lab on a chip.
[23] G. Whitesides,et al. Patterned paper as a platform for inexpensive, low-volume, portable bioassays. , 2007, Angewandte Chemie.
[24] O. Chailapakul,et al. Multiplex Paper-Based Colorimetric DNA Sensor Using Pyrrolidinyl Peptide Nucleic Acid-Induced AgNPs Aggregation for Detecting MERS-CoV, MTB, and HPV Oligonucleotides , 2017, Analytical chemistry.
[25] Chien-Fu Chen,et al. Paper-based tuberculosis diagnostic devices with colorimetric gold nanoparticles , 2013, Science and technology of advanced materials.
[26] Sharma T Sanjay,et al. Exploration of Nanoparticle-Mediated Photothermal Effect of TMB-H2O2 Colorimetric System and Its Application in a Visual Quantitative Photothermal Immunoassay. , 2018, Analytical chemistry.
[27] A. Hassanzadeh,et al. Bioassay of ovarian cancer tumor protein CA 125 using novel nano-ink on the flexible paper substrate: A new platform for efficient diagnosis of cancer. , 2019, International journal of biological macromolecules.
[28] J. Brouwer. Detection of antibodies against Aspergillus fumigatus: comparison between double immunodiffusion, ELISA and immunoblot analysis. , 1988, International archives of allergy and applied immunology.
[29] Daniel Citterio,et al. An antibody-free microfluidic paper-based analytical device for the determination of tear fluid lactoferrin by fluorescence sensitization of Tb3+. , 2014, The Analyst.
[30] Albert Folch,et al. The upcoming 3D-printing revolution in microfluidics. , 2016, Lab on a chip.
[31] Chee Meng Benjamin Ho,et al. 3D printed microfluidics for biological applications. , 2015, Lab on a chip.
[32] Che-Hsin Lin,et al. Multiple enzyme-doped thread-based microfluidic system for blood urea nitrogen and glucose detection in human whole blood. , 2015, Biomicrofluidics.
[33] C. Ahn,et al. A novel microfluidic microplate as the next generation assay platform for enzyme linked immunoassays (ELISA). , 2012, Lab on a chip.
[34] Kin Fong Lei,et al. Paper-based enzyme-free immunoassay for rapid detection and subtyping of influenza A H1N1 and H3N2 viruses. , 2015, Analytica chimica acta.
[35] Shenguang Ge,et al. Ultrasensitive electrochemiluminescence assay of tumor cells and evaluation of H2O2 on a paper-based closed-bipolar electrode by in-situ hybridization chain reaction amplification. , 2018, Biosensors & bioelectronics.
[36] G. Whitesides,et al. Understanding wax printing: a simple micropatterning process for paper-based microfluidics. , 2009, Analytical chemistry.
[37] Ali Beskok,et al. Confined chemiluminescence detection of nanomolar levels of H2O2 in a paper-plastic disposable microfluidic device using a smartphone. , 2015, The Analyst.
[38] Maowei Dou,et al. Rapid and Accurate Diagnosis of the Respiratory Disease Pertussis on a Point-of-Care Biochip , 2019, EClinicalMedicine.
[39] George M. Whitesides,et al. PAPER-BASED ELECTROCHEMICAL ELISA , 2010 .
[40] Ronald Österbacka,et al. An impedimetric study of DNA hybridization on paper-supported inkjet-printed gold electrodes , 2014, Nanotechnology.
[41] Jane Ru Choi,et al. An integrated paper-based sample-to-answer biosensor for nucleic acid testing at the point of care. , 2016, Lab on a chip.
[42] Dirk Roggenbuck,et al. A novel automated indirect immunofluorescence autoantibody evaluation , 2012, Clinical Rheumatology.
[43] Min Su,et al. Cyto-sensing in electrochemical lab-on-paper cyto-device for in-situ evaluation of multi-glycan expressions on cancer cells. , 2015, Biosensors & bioelectronics.
[44] Jinghua Yu,et al. Paper-based electrochemiluminescence origami cyto-device for multiple cancer cells detection using porous AuPd alloy as catalytically promoted nanolabels. , 2015, Biosensors & bioelectronics.
[45] C. Röcken,et al. Proteomics of Pancreatic Cancer , 2008, Pancreas.
[46] S. Martins,et al. Capture and detection of DNA hybrids on paper via the anchoring of antibodies with fusions of carbohydrate binding modules and ZZ-domains. , 2014, Analytical chemistry.
[47] Chen-Meng Kuan,et al. Lignocellulose-based analytical devices: bamboo as an analytical platform for chemical detection , 2015, Scientific Reports.
[48] Szu-Ting Lin,et al. Paper-based diagnostic devices for clinical paraquat poisoning diagnosis. , 2016, Biomicrofluidics.
[49] G. Whitesides,et al. Simple telemedicine for developing regions: camera phones and paper-based microfluidic devices for real-time, off-site diagnosis. , 2008, Analytical chemistry.
[50] G. Whitesides,et al. Three-dimensional microfluidic devices fabricated in layered paper and tape , 2008, Proceedings of the National Academy of Sciences.
[51] Xiujun Li,et al. Remotely tunable microfluidic platform driven by nanomaterial-mediated on-demand photothermal pumping. , 2020, Lab on a chip.
[52] Joakim Lundeberg,et al. Activated paper surfaces for the rapid hybridization of DNA through capillary transport. , 2012, Analytical chemistry.
[53] Xuena Zhu,et al. Paper based point-of-care testing disc for multiplex whole cell bacteria analysis. , 2011, Biosensors & bioelectronics.
[54] S. S. Sibbett,et al. Multiplex lateral-flow test strips fabricated by two-dimensional shaping. , 2009, ACS applied materials & interfaces.
[55] Min-Gon Kim,et al. A Paper-Based Device for Performing Loop-Mediated Isothermal Amplification with Real-Time Simultaneous Detection of Multiple DNA Targets , 2017, Theranostics.
[56] Xiujun Li,et al. One-Step Surface Modification to Graft DNA Codes on Paper: The Method, Mechanism and Its Application. , 2020, Analytical chemistry.
[57] Pedro Barquinha,et al. Gold on paper-paper platform for Au-nanoprobe TB detection. , 2012, Lab on a chip.
[58] I. Papautsky,et al. Development of a point-of-care diagnostic for influenza detection with antiviral treatment effectiveness indication. , 2017, Lab on a chip.
[59] Jinghua Yu,et al. Polyhedral-AuPd nanoparticles-based dual-mode cytosensor with turn on enable signal for highly sensitive cell evalution on lab-on-paper device. , 2018, Biosensors & bioelectronics.
[60] Temsiri Songjaroen,et al. Blood separation on microfluidic paper-based analytical devices. , 2012, Lab on a chip.
[61] Fernando Benito-Lopez,et al. Review on microfluidic paper-based analytical devices towards commercialisation. , 2018, Analytica chimica acta.
[62] Junfei Tian,et al. Paper-based microfluidic devices by plasma treatment. , 2008, Analytical chemistry.
[63] Wei Shen,et al. Quantitative biomarker assay with microfluidic paper-based analytical devices , 2010, Analytical and bioanalytical chemistry.
[64] Sihui Zhan,et al. A paper/polymer hybrid CD-like microfluidic SpinChip integrated with DNA-functionalized graphene oxide nanosensors for multiplex qLAMP detection. , 2017, Chemical communications.
[65] Qiuhong Wang,et al. Paper-based cell impedance sensor and its application for cytotoxic evaluation , 2015, Nanotechnology.
[66] Orawon Chailapakul,et al. Development of a one-step immunochromatographic strip test using gold nanoparticles for the rapid detection of Salmonella typhi in human serum. , 2012, Biosensors & bioelectronics.
[67] Xiujun Li,et al. Cost-effective and sensitive colorimetric immunosensing using an iron oxide-to-Prussian blue nanoparticle conversion strategy. , 2016, The Analyst.
[68] Peng Liu,et al. Integrated DNA purification, PCR, sample cleanup, and capillary electrophoresis microchip for forensic human identification. , 2011, Lab on a chip.
[69] Wei Shen,et al. Fabrication of paper-based microfluidic sensors by printing. , 2010, Colloids and surfaces. B, Biointerfaces.
[70] M. Dou,et al. A Versatile PDMS/Paper Hybrid Microfluidic Platform for Sensitive Infectious Disease Diagnosis , 2014, Analytical chemistry.
[71] M. Ali,et al. A Printed Multicomponent Paper Sensor for Bacterial Detection , 2017, Scientific Reports.
[72] Anavaj Sakuntabhai,et al. Paper-based RNA detection and multiplexed analysis for Ebola virus diagnostics , 2017, Scientific Reports.
[73] M. Yacoub,et al. Frequency and specificity of antiheart antibodies in patients with dilated cardiomyopathy detected using SDS-PAGE and western blotting. , 1993, Journal of the American College of Cardiology.
[74] Ratmir Derda,et al. Portable self-contained cultures for phage and bacteria made of paper and tape. , 2012, Lab on a chip.
[75] Feng Xu,et al. Multiplexed instrument-free meningitis diagnosis on a polymer/paper hybrid microfluidic biochip. , 2017, Biosensors & bioelectronics.
[76] Dr Ferdiye Taner,et al. The enzyme-linked immunosorbent assay (ELISA). , 1976, Bulletin of the World Health Organization.
[77] Chia-Ling Chang,et al. Cotton-based Diagnostic Devices , 2014, Scientific Reports.
[78] Yun Zhang,et al. Using the Rubik's Cube to directly produce paper analytical devices for quantitative point-of-care aptamer-based assays. , 2017, Biosensors & bioelectronics.
[79] J. Olkkonen,et al. Flexographically printed fluidic structures in paper. , 2010, Analytical chemistry.
[80] Xiujun Li,et al. A Low-Cost Nanomaterial-based Electrochemical Immunosensor on Paper for High-Sensitivity Early Detection of Pancreatic Cancer. , 2020, Sensors and actuators. B, Chemical.
[81] Fang Cheng,et al. Biofunctional paper via the covalent modification of cellulose. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[82] Lin Wang,et al. Advances in Smartphone-Based Point-of-Care Diagnostics , 2015, Proceedings of the IEEE.
[83] Wei Huang,et al. A paper-based chemiluminescence immunoassay device for rapid and high-throughput detection of allergen-specific IgE. , 2019, The Analyst.
[84] Jinghua Yu,et al. Paper-based three-dimensional electrochemical immunodevice based on multi-walled carbon nanotubes functionalized paper for sensitive point-of-care testing. , 2012, Biosensors & bioelectronics.
[85] Shenguang Ge,et al. Paper-based chemiluminescence ELISA: lab-on-paper based on chitosan modified paper device and wax-screen-printing. , 2012, Biosensors & bioelectronics.
[86] Qiang Ju,et al. Paper-based biodetection using luminescent nanoparticles. , 2016, The Analyst.
[87] Jianjun Sun,et al. A paper/polymer hybrid microfluidic microplate for rapid quantitative detection of multiple disease biomarkers , 2016, Scientific Reports.
[88] Martina Blažková,et al. Immunochromatographic strip test for detection of genus Cronobacter. , 2011, Biosensors & bioelectronics.
[89] D. Citterio,et al. Inkjet-printed microfluidic multianalyte chemical sensing paper. , 2008, Analytical chemistry.
[90] Xingyu Jiang,et al. Materials for Microfluidic Immunoassays: A Review , 2017, Advanced healthcare materials.
[91] Jinghua Yu,et al. Microfluidic paper-based photoelectrochemical sensing platform with electron-transfer tunneling distance regulation strategy for thrombin detection. , 2019, Biosensors & bioelectronics.
[92] Julien Reboud,et al. Paper‐Origami‐Based Multiplexed Malaria Diagnostics from Whole Blood , 2016, Angewandte Chemie.
[93] Feng Xu,et al. Biomarker detection for disease diagnosis using cost-effective microfluidic platforms. , 2015, The Analyst.
[94] Maowei Dou,et al. Nanoparticle-mediated photothermal effect enables a new method for quantitative biochemical analysis using a thermometer. , 2016, Nanoscale.
[95] Liang Tang,et al. Gold Nanoparticle Aggregation-Induced Quantitative Photothermal Biosensing Using a Thermometer: A Simple and Universal Biosensing Platform. , 2020, Analytical chemistry.
[96] Meng Li,et al. Battery-triggered ultrasensitive electrochemiluminescence detection on microfluidic paper-based immunodevice based on dual-signal amplification strategy. , 2013, Analytica chimica acta.
[97] Tao Dong,et al. Recent Developments in Optical Detection Technologies in Lab-on-a-Chip Devices for Biosensing Applications , 2014, Sensors.
[98] U. Reischl,et al. Rapid Diagnosis of Bacterial Meningitis by Real-Time PCR and Fluorescence In Situ Hybridization , 2005, Journal of Clinical Microbiology.
[99] Da-Jeng Yao,et al. Molecular-Level Dengue Fever Diagnostics: Developing a Combination of RT-LAMP and Paper-Based Devices , 2012, IEEE Nanotechnology Magazine.
[100] SinghAjay,et al. Evaluation of an enzyme-linked immunosorbent assay (ELISA) kit for the detection of botulinum neurotoxins A, B, E, and F in selected food matrices. , 2015 .
[101] Feng Xu,et al. Low-cost bioanalysis on paper-based and its hybrid microfluidic platforms. , 2015, Talanta.
[102] Shuangyan Huan,et al. A paper-based surface-enhanced resonance Raman spectroscopic (SERRS) immunoassay using magnetic separation and enzyme-catalyzed reaction. , 2013, The Analyst.
[103] Fang Fang,et al. Novel field amplification for sensitive colorimetric detection of microalbuminuria on a paper-based analytical device. , 2019, Analytica chimica acta.
[104] W. Dungchai,et al. A low-cost, simple, and rapid fabrication method for paper-based microfluidics using wax screen-printing. , 2011, The Analyst.
[105] Eka Noviana,et al. Paper-Based Microfluidic Devices: Emerging Themes and Applications. , 2017, Analytical chemistry.
[106] J. Köhler,et al. Electrochemical response of nitrogen-doped multi-walled carbon nanotubes decorated with gold and iridium nanoparticles toward ferrocyanide/ferricyanide redox system , 2016, Ionics.
[107] U. Krull,et al. Detection of a cancer biomarker protein on modified cellulose paper by fluorescence using aptamer-linked quantum dots. , 2017, The Analyst.
[108] George M Whitesides,et al. Electrochemical sensing in paper-based microfluidic devices. , 2010, Lab on a chip.
[109] Benjamin M Wu,et al. Single-step, paper-based concentration and detection of a malaria biomarker. , 2015, Analytica chimica acta.
[110] George M Whitesides,et al. FLASH: a rapid method for prototyping paper-based microfluidic devices. , 2008, Lab on a chip.
[111] B. Lin,et al. Fabrication and characterization of paper-based microfluidics prepared in nitrocellulose membrane by wax printing. , 2010, Analytical chemistry.
[112] Nuno M. M. Pires,et al. A mediator embedded micro-immunosensing unit for electrochemical detection on viruses within physiological saline media , 2011 .
[113] Xiao Li,et al. A Microfluidic Paper‐Based Origami Nanobiosensor for Label‐Free, Ultrasensitive Immunoassays , 2016, Advanced healthcare materials.