Demonstration of multi-analyte patterning using piezoelectric inkjet printing of multiple layers.
Explore this paper's citation graph
Summary
A piezoelectric inkjet printing system that is capable of creating sub-millimeter patterns of aqueous and nonaqueous reagents with precise placement for biosensor applications with minimal nonspecific adsorption to the surrounding regions is demonstrated.
- Type
- article
- Published
- 2008-03-17
- Cited by
- 49
- References
- 84
- OpenAlex
- https://openalex.org/W18298971
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16662057
Keywords
Humanities, European union, Political science, Philosophy, Economics
References
- Functional protein microarrays.
- Printing proteins as microarrays for high-throughput function determination.
- Concentration gradient immunoassay. 1. An immunoassay based on interdiffusion and surface binding in a microchannel.
- Self-assembled organic monolayers: model systems for studying adsorption of proteins at surfaces
- Wavelength-tunable surface plasmon resonance microscope
- On-demand droplet spotter for preparing pico- to femtoliter droplets on surfaces.
- Surface Characterization of Mixed Self-Assembled Monolayers Designed for Streptavidin Immobilization
- Controlled deposition of picoliter amounts of fluid using an ultrasonically driven micropipette
- Electrospray deposition as a method for mass fabrication of mono- and multicomponent microarrays of biological and biologically active substances.
- Binding and Dissociation Kinetics of Wild-Type and Mutant Streptavidins on Mixed Biotin-Containing Alkylthiolate Monolayers
- Probing resistance to protein adsorption of oligo(ethylene glycol)-terminated self-assembled monolayers by scanning force microscopy
- Micro total analysis systems. Latest advancements and trends.
- Compact, high performance surface plasmon resonance imaging system.
- Label-free reading of microarray-based immunoassays with surface plasmon resonance imaging.
- Miniaturized electrospraying as a technique for the production of microarrays of reproducible micrometer-sized protein spots.
- MOLECULAR RECOGNITION AT SELF-ASSEMBLED MONOLAYERS - THE CONSTRUCTION OF MULTICOMPONENT MULTILAYERS
- Immunoassay with multicomponent protein microarrays fabricated by electrospray deposition.
- Protein and cell micropatterning and its integration with micro/nanoparticles assembly.
- Protein and antibody arrays and their medical applications.
- A Novel PDMS Microfluidic Spotter for Fabrication of Protein Chips and Microarrays
Cited by
- Modelling and optimisation of microfluidic devices for bioanalysis applications
- Printable Biosensors based on Organic Electrochemical Transistors with a Platinized Gate Electrode
- Bio-modification of non-biological surfaces with function-spacer-lipid constructs by methods including bioprinting
- Microfluidic Immunoassays Based on Self-Assembled Magnetic Bead Patterns and Time-Resolved Luminescence Detection
- Scaffolds for tissue engineering produced by inkjet printing
- Micropatterning Hydrophobic Liquid on a Porous Polymer Surface for Long‐Term Selective Cell‐Repellency
- Development of inkjet printed strain sensors
- Label-free capacitive biosensor for sensitive detection of multiple biomarkers using gold interdigitated capacitor arrays.
- Patterning of antibodies using flexographic printing.
- Determination of calprotectin in gingival crevicular fluid by immunoassay on a microchip.
- Imaging Analysis of Carbohydrate-Modified Surfaces Using ToF-SIMS and SPRi
- Multicomponent protein patterning of material surfaces
- Molecular switching fluorescence based high sensitive detection of label-free C-reactive protein on biochip.
- Patterned Immobilization of Antibodies within Roll-to-Roll Hot Embossed Polymeric Microfluidic Channels
- Inkjet Printing of Amphotericin B onto Biodegradable Microneedles Using Piezoelectric Inkjet Printing
- Quantitative Analysis of Serum Procollagen Type I C-Terminal Propeptide by Immunoassay on Microchip
- Piezoelectric inkjet printing of a cross‐hatch immunoassay on a disposable nylon membrane
- Tailoring controlled-release oral dosage forms by combining inkjet and flexographic printing techniques.
- Inkjet printed LED based pH chemical sensor for gas sensing.
- Advanced printing and deposition methodologies for the fabrication of biosensors and biodevices.
Related papers
No related papers recorded.