Lab-on-a-Chip Magneto-Immunoassays: How to Ensure Contact between Superparamagnetic Beads and the Sensor Surface
暂无分享,去创建一个
Daniel Kappe | Andreas Hütten | Judith Meyer | Alexander Weddemann | A. Hütten | Bernhard Eickenberg | Judith Meyer | L. Helmich | D. Kappe | A. Auge | A. Weddemann | F. Wittbracht | Bernhard Eickenberg | Lars Helmich | Alexander Auge | Frank Wittbracht | J. Meyer
[1] N. Yoshihara. [ELISA for diagnosis of infections by viruses]. , 1995, Nihon rinsho. Japanese journal of clinical medicine.
[2] A. Pühler,et al. Comparison of a prototype magnetoresistive biosensor to standard fluorescent DNA detection. , 2004, Biosensors & bioelectronics.
[3] M. Schäfers,et al. Giant magnetoresistance effects in gel-like matrices , 2013 .
[4] L. Kricka. Selected strategies for improving sensitivity and reliability of immunoassays. , 1994, Clinical chemistry.
[5] Camelia Albon,et al. Tunneling magnetoresistance sensors for high resolutive particle detection , 2009 .
[6] J. Kosel,et al. Magnetic biosensor system to detect biological targets , 2012, 2012 International Conference on Electromagnetics in Advanced Applications.
[7] M. Goldberg,et al. Methods for measurement of antibody/antigen affinity based on ELISA and RIA. , 1993, Current opinion in immunology.
[8] Anne McKie,et al. Novel methods for the detection of microbial antibodies in oral fluid. , 2002, The Lancet. Infectious diseases.
[9] Yalow Rs. Practices and pitfalls in immunologic methodology. , 1986 .
[10] Mwj Menno Prins,et al. Rapid DNA multi-analyte immunoassay on a magneto-resistance biosensor. , 2009, Biosensors & bioelectronics.
[11] Stefan Radel,et al. Acoustofluidics 21: ultrasound-enhanced immunoassays and particle sensors. , 2013, Lab on a chip.
[12] R. Colton,et al. The BARC biosensor applied to the detection of biological warfare agents. , 2000, Biosensors & bioelectronics.
[13] Hugo Ferreira,et al. Single magnetic microsphere placement and detection on-chip using current line designs with integrated spin valve sensors: Biotechnological applications , 2002 .
[14] S Arana,et al. GMR sensors: magnetoresistive behaviour optimization for biological detection by means of superparamagnetic nanoparticles. , 2011, Biosensors & bioelectronics.
[15] Adrian Neild,et al. Manipulation of micrometer sized particles within a micromachined fluidic device to form two-dimensional patterns using ultrasound. , 2007, The Journal of the Acoustical Society of America.
[16] Ashok Sinha,et al. Magnetic separation from superparamagnetic particle suspensions , 2009 .
[17] Hakho Lee,et al. Microelectromagnets for the control of magnetic nanoparticles , 2001 .
[18] Knobel,et al. Magnetic properties and giant magnetoresistance of melt-spun granular Cu100-x-Cox alloys. , 1995, Physical review. B, Condensed matter.
[19] S Arana,et al. Magnetoresistive immunosensor for the detection of Escherichia coli O157:H7 including a microfluidic network. , 2009, Biosensors & bioelectronics.
[20] Etienne,et al. Giant magnetoresistance of (001)Fe/(001)Cr magnetic superlattices. , 1988, Physical review letters.
[21] Martin A M Gijs,et al. Microfluidic applications of magnetic particles for biological analysis and catalysis. , 2010, Chemical reviews.
[22] Martin A. M. Gijs,et al. Magnetic bead handling on-chip: new opportunities for analytical applications , 2004 .
[23] S. Paek,et al. Immunosensors for Point-of-Care Testing , 2004 .
[24] Jiang,et al. Giant magnetoresistance in nonmultilayer magnetic systems. , 1992, Physical review letters.
[25] Alfred Puehler,et al. Magnetoresistive sensors and magnetic nanoparticles for biotechnology , 2005 .
[26] Daniel L Graham,et al. Magnetoresistive-based biosensors and biochips. , 2004, Trends in biotechnology.
[27] R. J. Boltryk,et al. Robust acoustic particle manipulation: A thin-reflector design for moving particles to a surface. , 2009, The Journal of the Acoustical Society of America.
[28] Young,et al. Giant magnetoresistance in heterogeneous Cu-Co alloys. , 1992, Physical review letters.
[29] A. Hütten,et al. Magnetic ratchet for biotechnological applications , 2009 .
[30] G. A. Prinz,et al. Detection of a micron-sized magnetic sphere using a ring-shaped anisotropic magnetoresistance-based sensor: A model for a magnetoresistance-based biosensor , 2002 .
[31] Richard B. Dickinson,et al. Measurement of long-range forces on a single yeast cell using a gradient optical trap and evanescent wave light scattering , 2003 .
[32] Ronald W. Davis,et al. Detection of single micron-sized magnetic bead and magnetic nanoparticles using spin valve sensors for biological applications , 2003 .
[33] Daniil Karnaushenko,et al. Printable Giant Magnetoresistive Devices , 2012, Advanced materials.
[34] Gil U. Lee,et al. A biosensor based on magnetoresistance technology. , 1998, Biosensors & bioelectronics.
[35] Jeremy J Hawkes,et al. Ultrasonic deposition of cells on a surface. , 2004, Biosensors & bioelectronics.
[36] D. Daly,et al. ELISA microarray technology as a high-throughput system for cancer biomarker validation , 2006, Expert review of proteomics.
[37] Binasch,et al. Enhanced magnetoresistance in layered magnetic structures with antiferromagnetic interlayer exchange. , 1989, Physical review. B, Condensed matter.
[38] Bo Mattiasson,et al. Immunochemical binding assays for detection and quantification of trace impurities in biotechnological production. , 2010, Trends in biotechnology.
[39] Suresh V. Garimella,et al. Recent advances in microscale pumping technologies: a review and evaluation , 2008 .
[40] R. Lequin. Enzyme immunoassay (EIA)/enzyme-linked immunosorbent assay (ELISA). , 2005, Clinical chemistry.
[41] Andreas Hütten,et al. A hydrodynamic switch: Microfluidic separation system for magnetic beads , 2009 .
[42] R. Tompkins,et al. Continuous inertial focusing, ordering, and separation of particles in microchannels , 2007, Proceedings of the National Academy of Sciences.
[43] Bingcheng Lin,et al. Methods for pumping fluids on biomedical lab-on-a-chip. , 2009, Frontiers in bioscience.
[44] M. Zheng,et al. A Review of Rapid Methods for the Analysis of Mycotoxins , 2006, Mycopathologia.
[45] Hugo Ferreira,et al. On-chip manipulation and magnetization assessment of magnetic bead ensembles by integrated spin-valve sensors , 2002 .
[46] Liesbet Lagae,et al. Cell manipulation with magnetic particles toward microfluidic cytometry , 2009 .
[47] Positioning system for particles in microfluidic structures , 2009 .
[48] Reinhard Renneberg,et al. New trends in immunoassays. , 2008, Advances in biochemical engineering/biotechnology.
[49] V. Pott,et al. Detection of a single magnetic microbead using a miniaturized silicon Hall sensor , 2002 .
[50] Supaporn Kradtap Hartwell,et al. Flow based immuno/bioassay and trends in micro-immuno/biosensors , 2010 .
[51] Mala L. Radhakrishnan,et al. Manipulation of magnetic microbeads in suspension using micromagnetic systems fabricated with soft lithography , 2001 .
[52] Jochen Mattay,et al. Review and outlook: from single nanoparticles to self-assembled monolayers and granular GMR sensors , 2010, Beilstein journal of nanotechnology.
[53] Martyn Hill,et al. Flexible acoustic particle manipulation device with integrated optical waveguide for enhanced microbead assays. , 2009, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[54] M. Zourob,et al. Optical leaky waveguide sensor for detection of bacteria with ultrasound attractor force. , 2005, Analytical chemistry.
[55] A. Carrato,et al. A polymeric chip for micromanipulation and particle sorting by ultrasounds based on a multilayer configuration , 2010 .
[56] Nevill Mott,et al. Electrons in transition metals , 1964 .
[57] A Auge,et al. How to design magneto-based total analysis systems for biomedical applications. , 2010, Biosensors & bioelectronics.
[58] Zhe Mei,et al. Universally applicable three-dimensional hydrodynamic microfluidic flow focusing. , 2013, Lab on a chip.