Micromagnetic selection of aptamers in microfluidic channels.
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Nucleic Acid aptamers: new methods for selection, stabilization, and application in biomedical scienceProbing the limits of aptamer affinity with a microfluidic SELEX platformInfluence of target concentration and background binding on in vitro selection of affinity reagentsChallenges and opportunities for small molecule aptamer developmentAptamers and the RNA world, past and presentAcousto-microfluidics for screening of ssDNA aptamer.Single-Stranded DNA Aptamers against Pathogens and Toxins: Identification and Biosensing Applications.Aptamer in bioanalytical applications.Aptamers and their biological applicationsIdentification of malaria parasite-infected red blood cell surface aptamers by inertial microfluidic SELEX (I-SELEX).Quantitative Magnetic Separation of Particles and Cells Using Gradient Magnetic Ratcheting.Generation of highly specific aptamers via micromagnetic selectionIn vitro selection of structure-switching, self-reporting aptamers.Quantitative selection of DNA aptamers through microfluidic selection and high-throughput sequencing.Computational analysis of enhanced magnetic bioseparation in microfluidic systems with flow-invasive magnetic elements.Strategies for the discovery of therapeutic aptamers.Magnetic barcoded hydrogel microparticles for multiplexed detection.Recent developments in protein and cell-targeted aptamer selection and applicationsAcyclic identification of aptamers for human alpha-thrombin using over-represented libraries and deep sequencing.Isolation of DNA aptamers using micro free flow electrophoresisAn on-bead tailing/ligation approach for sequencing resin-bound RNA libraries.Microfluidic landscapes for evolution.Microfluidic approaches to rapid and efficient aptamer selection.Kinetic adsorption profile and conformation evolution at the DNA-gold nanoparticle interface probed by dynamic light scattering.Self-assembled magnetic filter for highly efficient immunomagnetic separation.Artificial specific binders directly recovered from chemically modified nucleic acid libraries.New Technologies Provide Quantum Changes in the Scale, Speed, and Success of SELEX Methods and Aptamer Characterization.Amplification and re-generation of LNA-modified libraries.Array-based discovery of aptamer pairsQuantitative selection and parallel characterization of aptamers.Aptamers: active targeting ligands for cancer diagnosis and therapyCell-surface sensors for real-time probing of cellular environments.Improving aptamer selection efficiency through volume dilution, magnetic concentration, and continuous washing in microfluidic channelsSelection of aptamers specific for glycated hemoglobin and total hemoglobin using on-chip SELEX.Hi-Fi SELEX: A High-Fidelity Digital-PCR Based Therapeutic Aptamer Discovery Platform.Development of a fraction collection approach in capillary electrophoresis SELEX for aptamer selection.Aptamers: new arrows to target dendritic cells.Microfluidic chip system for the selection and enrichment of cell binding aptamersAptamers: current challenges and future prospects.SELEX Modifications and Bioanalytical Techniques for Aptamer-Target Binding Characterization.
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P2860
Micromagnetic selection of aptamers in microfluidic channels.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 06 February 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Micromagnetic selection of aptamers in microfluidic channels.
@en
Micromagnetic selection of aptamers in microfluidic channels.
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type
label
Micromagnetic selection of aptamers in microfluidic channels.
@en
Micromagnetic selection of aptamers in microfluidic channels.
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prefLabel
Micromagnetic selection of aptamers in microfluidic channels.
@en
Micromagnetic selection of aptamers in microfluidic channels.
@nl
P2093
P2860
P50
P356
P1476
Micromagnetic selection of aptamers in microfluidic channels.
@en
P2093
Eric T Lagally
Jiangrong Qian
Lisan Viel
Theodore M Tarasow
Xinhui Lou
P2860
P304
P356
10.1073/PNAS.0813135106
P407
P577
2009-02-06T00:00:00Z