3D-Printed Biosensor Arrays for Medical Diagnostics
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[1] F. Marken,et al. All‐Polystyrene 3D‐Printed Electrochemical Device with Embedded Carbon Nanofiber‐Graphite‐Polystyrene Composite Conductor , 2016 .
[2] Cheng-Kuan Su,et al. Enzyme-Immobilized 3D-Printed Reactors for Online Monitoring of Rat Brain Extracellular Glucose and Lactate. , 2016, Analytical chemistry.
[3] C K Tang,et al. Automated 3D-printed unibody immunoarray for chemiluminescence detection of cancer biomarker proteins. , 2017, Lab on a chip.
[4] Robert Kirchner,et al. Benchmarking surface selective vacuum ultraviolet and thermal postprocessing of thermoplastics for ultrasmooth 3-D-printed micro-optics , 2018 .
[5] R. Osellame,et al. Integrated three-dimensional filter separates nanoscale from microscale elements in a microfluidic chip. , 2012, Lab on a chip.
[6] Martin Wegener,et al. Micro-Structured Two-Component 3D Metamaterials with Negative Thermal-Expansion Coefficient from Positive Constituents , 2017, Scientific reports.
[7] Barbara Mazzolai,et al. Two-Photon Lithography of 3D Nanocomposite Piezoelectric Scaffolds for Cell Stimulation. , 2015, ACS applied materials & interfaces.
[8] Sidra Waheed,et al. 3D printed microfluidic devices: enablers and barriers. , 2016, Lab on a chip.
[9] Chee Kai Chua,et al. Porous polycaprolactone scaffold for cardiac tissue engineering fabricated by selective laser sintering. , 2010, Acta biomaterialia.
[10] Season Wong,et al. Rapid, Affordable and Portable Medium-Throughput Molecular Device for Zika Virus , 2016, Scientific Reports.
[11] P. Dubruel,et al. The 3D printing of gelatin methacrylamide cell-laden tissue-engineered constructs with high cell viability. , 2014, Biomaterials.
[12] J. Lewis,et al. 3D‐Printing of Lightweight Cellular Composites , 2014, Advanced materials.
[13] Adrian J. T. Teo,et al. A portable, hand-powered microfluidic device for sorting of biological particles , 2017 .
[14] Saulius Juodkazis,et al. Ultrafast laser processing of materials: from science to industry , 2016, Light: Science & Applications.
[15] L. Fambri,et al. Fused deposition modelling with ABS–graphene nanocomposites , 2016 .
[16] Manfred Hofmann,et al. 3D Printing Gets a Boost and Opportunities with Polymer Materials. , 2014, ACS macro letters.
[17] M. Pumera,et al. 3D Printed Electrodes for Detection of Nitroaromatic Explosives and Nerve Agents. , 2017, Analytical chemistry.
[18] Majid Ebrahimi Warkiani,et al. Multiplexing slanted spiral microchannels for ultra-fast blood plasma separation. , 2016, Lab on a chip.
[19] Sungyoung Choi,et al. 3D-printed capillary circuits for rapid, low-cost, portable analysis of blood viscosity , 2018 .
[20] Qing Gao,et al. Research on the printability of hydrogels in 3D bioprinting , 2016, Scientific Reports.
[21] Colleen L Flanagan,et al. Bone tissue engineering using polycaprolactone scaffolds fabricated via selective laser sintering. , 2005, Biomaterials.
[22] Manuel Schaffner,et al. 3D printing of bacteria into functional complex materials , 2017, Science Advances.
[23] Martin Pumera,et al. 3D-Printed Graphene/Polylactic Acid Electrodes Promise High Sensitivity in Electroanalysis. , 2018, Analytical chemistry.
[24] James F Rusling,et al. 3D-printed supercapacitor-powered electrochemiluminescent protein immunoarray. , 2016, Biosensors & bioelectronics.
[25] Danila Moscone,et al. A reagent-free paper-based sensor embedded in a 3D printing device for cholinesterase activity measurement in serum , 2018 .
[26] Andrew J Capel,et al. Biocompatible 3D printed polymers via fused deposition modelling direct C2C12 cellular phenotype in vitro. , 2017, Lab on a chip.
[27] Aleksandr Ovsianikov,et al. Laser photofabrication of cell-containing hydrogel constructs. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[28] Chengpeng Chen,et al. 3D-printed fluidic devices enable quantitative evaluation of blood components in modified storage solutions for use in transfusion medicine. , 2014, The Analyst.
[29] Jason A Burdick,et al. Review: photopolymerizable and degradable biomaterials for tissue engineering applications. , 2007, Tissue engineering.
[30] Mangirdas Malinauskas,et al. Preclinical study of SZ2080 material 3D microstructured scaffolds for cartilage tissue engineering made by femtosecond direct laser writing lithography , 2015, Biofabrication.
[31] James F Rusling,et al. 3D-Printed Fluidic Devices for Nanoparticle Preparation and Flow-Injection Amperometry Using Integrated Prussian Blue Nanoparticle-Modified Electrodes. , 2015, Analytical chemistry.
[32] Geoffrey Mulberry,et al. 3D Printed Real-Time PCR Machine for Infectious Disease Diagnostics , 2017 .
[33] Chee Kai Chua,et al. Fundamentals and applications of 3D printing for novel materials , 2017 .
[34] Geoffrey Mulberry,et al. 3D printing and milling a real-time PCR device for infectious disease diagnostics , 2017, PloS one.
[35] James F Rusling,et al. Developing Microfluidic Sensing Devices Using 3D Printing. , 2018, ACS sensors.
[36] Aleksandr Ovsianikov,et al. Photo-sensitive hydrogels for three-dimensional laser microfabrication in the presence of whole organisms , 2012, Journal of biomedical optics.
[37] Quankang Wang,et al. A multifunctional skin-like sensor based on a 3D printed thermo-responsive hydrogel , 2017 .
[38] Bethany C Gross,et al. Evaluation of 3D printing and its potential impact on biotechnology and the chemical sciences. , 2014, Analytical chemistry.
[39] M. Leu,et al. Effect of material, process parameters, and simulated body fluids on mechanical properties of 13-93 bioactive glass porous constructs made by selective laser sintering. , 2012, Journal of the mechanical behavior of biomedical materials.
[40] Albert Folch,et al. Mail-order microfluidics: evaluation of stereolithography for the production of microfluidic devices. , 2014, Lab on a chip.
[41] Addison Mayberry,et al. Imaging systems and algorithms to analyze biological samples in real-time using mobile phone microscopy , 2018, PloS one.
[42] Malcolm Xing,et al. 3D bioprinting for biomedical devices and tissue engineering: A review of recent trends and advances , 2018, Bioactive materials.
[43] R. Kodzius,et al. Embedded Disposable Functionalized Electrochemical Biosensor with a 3D-Printed Flow Cell for Detection of Hepatic Oval Cells (HOCs) , 2018, Genes.
[44] Harald Giessen,et al. 3D-printed eagle eye: Compound microlens system for foveated imaging , 2017, Science Advances.
[45] Philip J. Kitson,et al. Integrated 3D-printed reactionware for chemical synthesis and analysis. , 2012, Nature chemistry.
[46] Kimberly Plevniak,et al. 3D printed auto-mixing chip enables rapid smartphone diagnosis of anemia. , 2016, Biomicrofluidics.
[47] B. Coulomb,et al. 3D-printed lab-on-valve for fluorescent determination of cadmium and lead in water. , 2018, Talanta.
[48] Vojtech Adam,et al. 3D‐printed chip for detection of methicillin‐resistant Staphylococcus aureus labeled with gold nanoparticles , 2015, Electrophoresis.
[49] E. Bernardo,et al. SiOC ceramics with ordered porosity by 3D-printing of a preceramic polymer , 2013 .
[50] B. Wiley,et al. Multigram Synthesis of Cu‐Ag Core–Shell Nanowires Enables the Production of a Highly Conductive Polymer Filament for 3D Printing Electronics , 2018 .
[51] A. Rai,et al. Smartphone dongle for simultaneous measurement of hemoglobin concentration and detection of HIV antibodies. , 2015, Lab on a chip.
[52] R. Ulber,et al. Bio-sensing of metal ions by a novel 3D-printable smartphone spectrometer , 2018 .
[53] Hon Fai Chan,et al. 3D Printing of Highly Stretchable and Tough Hydrogels into Complex, Cellularized Structures , 2015, Advanced materials.
[54] Jose L Garcia-Cordero,et al. An Affordable and Portable Thermocycler for Real-Time PCR Made of 3D-Printed Parts and Off-the-Shelf Electronics. , 2018, Analytical chemistry.
[55] Yu-Chung Chang,et al. High-Throughput Optical Sensing Immunoassays on Smartphone. , 2016, Analytical chemistry.
[56] Jean J. Zhao,et al. Bioprinting for cancer research. , 2015, Trends in biotechnology.
[57] M. Mehrali,et al. A review on powder-based additive manufacturing for tissue engineering: selective laser sintering and inkjet 3D printing , 2015, Science and technology of advanced materials.
[58] E. O. Olakanmi,et al. A review on selective laser sintering/melting (SLS/SLM) of aluminium alloy powders: Processing, microstructure, and properties , 2015 .
[59] Oh Seok Kwon,et al. Fast and sensitive near-infrared fluorescent probes for ALP detection and 3d printed calcium phosphate scaffold imaging in vivo. , 2018, Biosensors & bioelectronics.
[60] Sailing He,et al. Rapid Fabrication of Complex 3D Extracellular Microenvironments by Dynamic Optical Projection Stereolithography , 2012, Advanced materials.
[61] Mangirdas Malinauskas,et al. Photosensitive naturally derived resins toward optical 3-D printing , 2018 .
[62] M. Pumera,et al. 3D-printed Metal Electrodes for Heavy Metals Detection by Anodic Stripping Voltammetry , 2017 .
[63] Xin Wang,et al. 3D printing of polymer matrix composites: A review and prospective , 2017 .
[64] J. Lewis,et al. Device fabrication: Three-dimensional printed electronics , 2015, Nature.
[65] G. Jung,et al. 3D-Printed Microfluidic Device for the Detection of Pathogenic Bacteria Using Size-based Separation in Helical Channel with Trapezoid Cross-Section , 2015, Scientific Reports.
[66] A. Bandyopadhyay,et al. Bone tissue engineering using 3D printing , 2013 .
[67] Drew P. Kise,et al. Sandwich-format 3D printed microfluidic mixers: a flexible platform for multi-probe analysis , 2015, Journal of micromechanics and microengineering : structures, devices, and systems.
[68] Ali Khademhosseini,et al. Microfabrication of complex porous tissue engineering scaffolds using 3D projection stereolithography. , 2012, Biomaterials.
[69] Peihuo Peng,et al. Fully 3D-Printed Preconcentrator for Selective Extraction of Trace Elements in Seawater. , 2015, Analytical chemistry.
[70] Aldo Roda,et al. A simple and compact smartphone accessory for quantitative chemiluminescence-based lateral flow immunoassay for salivary cortisol detection. , 2015, Biosensors & bioelectronics.
[71] S. Tasoglu,et al. 3D-printed smartphone-based point of care tool for fluorescence- and magnetophoresis-based cytometry. , 2017, Lab on a chip.
[72] Peng Zhao,et al. 3D printed Lego®-like modular microfluidic devices based on capillary driving , 2018, Biofabrication.
[73] Sardar Malek,et al. Lightweight 3D cellular composites inspired by balsa , 2017, Bioinspiration & biomimetics.
[74] J. Burdick,et al. Shear-thinning and self-healing hydrogels as injectable therapeutics and for 3D-printing , 2017, Nature Protocols.
[75] C. Fotakis,et al. On the design and fabrication by two-photon polymerization of a readily assembled micro-valve , 2010 .
[76] M. Pumera,et al. 3D‐printed Electrodes for Sensing of Biologically Active Molecules , 2018 .
[77] James F Rusling,et al. Electrochemiluminescence at Bare and DNA-Coated Graphite Electrodes in 3D-Printed Fluidic Devices. , 2016, ACS sensors.
[78] A. Woolley,et al. 3D printed microfluidic devices with integrated valves. , 2015, Biomicrofluidics.
[79] Akash S Munshi,et al. Microchip-based electrochemical detection using a 3-D printed wall-jet electrode device. , 2016, The Analyst.
[80] Neri Oxman,et al. DNA Assembly in 3D Printed Fluidics , 2015, PloS one.
[81] Jie Xu,et al. The effects of 3D channel geometry on CTC passing pressure--towards deformability-based cancer cell separation. , 2014, Lab on a chip.
[82] Alshakim Nelson,et al. Chemical modification and printability of shear-thinning hydrogel inks for direct-write 3D printing , 2018, Polymer.
[83] Alexander P. Haring,et al. 3D printed conformal microfluidics for isolation and profiling of biomarkers from whole organs. , 2017, Lab on a chip.
[84] Derek Tseng,et al. Targeted DNA sequencing and in situ mutation analysis using mobile phone microscopy , 2017, Nature Communications.
[85] Jie Xu,et al. 3D printing: an emerging tool for novel microfluidics and lab-on-a-chip applications , 2016, Microfluidics and Nanofluidics.
[86] Aliaa I. Shallan,et al. Cost-effective three-dimensional printing of visibly transparent microchips within minutes. , 2014, Analytical chemistry.
[87] David A. Hutchins,et al. A Simple, Low-Cost Conductive Composite Material for 3D Printing of Electronic Sensors , 2012, PloS one.
[88] Lei Wang,et al. A simple and compact smartphone-based device for the quantitative readout of colloidal gold lateral flow immunoassay strips , 2018, Sensors and Actuators B: Chemical.
[89] Mark S Thompson,et al. Three-dimensional printed upper-limb prostheses lack randomised controlled trials: A systematic review , 2017, Prosthetics and orthotics international.
[90] Marianneza Chatzipetrou,et al. Direct Creation of Biopatterns via a Combination of Laser-Based Techniques and Click Chemistry. , 2017, Langmuir : the ACS journal of surfaces and colloids.
[91] Mangirdas Malinauskas,et al. CUSTOM ON DEMAND 3D PRINTING OF FUNCTIONAL MICROSTRUCTURES , 2015 .
[92] F. Bushman,et al. Fully 3D printed integrated reactor array for point-of-care molecular diagnostics. , 2018, Biosensors & bioelectronics.
[93] Xuan Zhou,et al. 3D Bioprinting a Cell-Laden Bone Matrix for Breast Cancer Metastasis Study. , 2016, ACS applied materials & interfaces.
[94] R Di Leonardo,et al. Focusing and imaging with increased numerical apertures through multimode fibers with micro-fabricated optics. , 2013, Optics letters.
[95] Petr Smejkal,et al. Comparing Microfluidic Performance of Three-Dimensional (3D) Printing Platforms. , 2017, Analytical chemistry.
[96] Yong Tang,et al. A smartphone colorimetric reader integrated with an ambient light sensor and a 3D printed attachment for on-site detection of zearalenone , 2017, Analytical and Bioanalytical Chemistry.
[97] Jos Malda,et al. Biofabrication of osteochondral tissue equivalents by printing topologically defined, cell-laden hydrogel scaffolds. , 2012, Tissue engineering. Part C, Methods.
[98] Mario Caironi,et al. High-resolution direct-writing of metallic electrodes on flexible substrates for high performance organic field effect transistors , 2013 .
[99] Daniel M. Vogt,et al. Embedded 3D Printing of Strain Sensors within Highly Stretchable Elastomers , 2014, Advanced materials.
[100] Birgit Glasmacher,et al. Laser printing of stem cells for biofabrication of scaffold-free autologous grafts. , 2011, Tissue engineering. Part C, Methods.
[101] Jinkee Lee,et al. 3D-printed microfluidic magnetic preconcentrator for the detection of bacterial pathogen using an ATP luminometer and antibody-conjugated magnetic nanoparticles. , 2017, Journal of microbiological methods.
[102] R. Osellame,et al. Particle focusing by 3D inertial microfluidics , 2017, Microsystems & Nanoengineering.
[103] S. Lockwood,et al. A 3D printed fluidic device that enables integrated features. , 2013, Analytical chemistry.
[104] Quan Cheng,et al. Plasmonic Sensing with 3D Printed Optics. , 2017, Analytical chemistry.
[105] Dong-Woo Cho,et al. Biomaterials-based 3D cell printing for next-generation therapeutics and diagnostics. , 2018, Biomaterials.
[106] Ming Yang,et al. Application of 3D Printing Technology in Increasing the Diagnostic Performance of Enzyme-Linked Immunosorbent Assay (ELISA) for Infectious Diseases , 2015, Sensors.
[107] F. Bragheri,et al. Integrated microfluidic device for single-cell trapping and spectroscopy , 2013, Scientific Reports.
[108] Cheng-Kuan Su,et al. Three-dimensional printed sample load/inject valves enabling online monitoring of extracellular calcium and zinc ions in living rat brains. , 2014, Analytica chimica acta.
[109] Krist V Gernaey,et al. Multi-function microfluidic platform for sensor integration. , 2018, New biotechnology.
[110] Kai Li,et al. 3D printed stretchable capacitive sensors for highly sensitive tactile and electrochemical sensing , 2018, Nanotechnology.
[111] Hongying Zhu,et al. Optical imaging techniques for point-of-care diagnostics. , 2013, Lab on a chip.
[112] Omar Ahmed Mohamed,et al. Optimization of fused deposition modeling process parameters: a review of current research and future prospects , 2015, Advances in Manufacturing.
[113] Mangirdas Malinauskas,et al. Laser fabrication of various polymer microoptical components , 2012 .
[114] F. Milano,et al. Functionalization of gold screen printed electrodes with bacterial photosynthetic reaction centers by laser printing technology for mediatorless herbicide biosensing , 2016 .
[115] M. Bertotti,et al. 3D printing scanning electron microscopy sample holders: A quick and cost effective alternative for custom holder fabrication , 2017, PloS one.
[116] Sangmo Kang,et al. A Review on Mixing in Microfluidics , 2010, Micromachines.
[117] Heesung Park,et al. Thermal cycling characteristics of a 3D-printed serpentine microchannel for DNA amplification by polymerase chain reaction , 2017 .
[118] S. Magdassi,et al. Metal-based Inkjet Inks for Printed Electronics , 2011 .
[119] Albert Folch,et al. The upcoming 3D-printing revolution in microfluidics. , 2016, Lab on a chip.
[120] James F Rusling,et al. Automated 3-D Printed Arrays to Evaluate Genotoxic Chemistry: E-Cigarettes and Water Samples. , 2017, ACS sensors.
[121] Benjamin M Wu,et al. Recent advances in 3D printing of biomaterials , 2015, Journal of Biological Engineering.
[122] Derek H. Rosenzweig,et al. 3D-Printed ABS and PLA Scaffolds for Cartilage and Nucleus Pulposus Tissue Regeneration , 2015, International journal of molecular sciences.
[123] Dana M Spence,et al. Recent Advances in Analytical Chemistry by 3D Printing. , 2017, Analytical chemistry.
[124] Johan U. Lind,et al. Instrumented cardiac microphysiological devices via multimaterial three-dimensional printing , 2016 .
[125] M. F. Santangelo,et al. Integrating printed microfluidics with silicon photomultipliers for miniaturised and highly sensitive ATP bioluminescence detection. , 2018, Biosensors & bioelectronics.
[126] Rocky S Tuan,et al. Application of visible light-based projection stereolithography for live cell-scaffold fabrication with designed architecture. , 2013, Biomaterials.
[127] P. Iravani,et al. Anodic stripping voltammetric determination of zinc at a 3-D printed carbon nanofiber–graphite–polystyrene electrode using a carbon pseudo-reference electrode , 2018, Sensors and Actuators B: Chemical.
[128] Martin Pumera,et al. 3D-printed metal electrodes for electrochemical detection of phenols , 2017 .
[130] Vincent S. D. Voet,et al. Biobased Acrylate Photocurable Resin Formulation for Stereolithography 3D Printing , 2018, ACS omega.