Adhesion based detection, sorting and enrichment of cells in microfluidic Lab-on-Chip devices.
暂无分享,去创建一个
[1] Mark Schena,et al. DNA microarrays : a practical approach , 1999 .
[2] Yu-Hwa Lo,et al. Human mammalian cell sorting using a highly integrated micro-fabricated fluorescence-activated cell sorter (microFACS). , 2010, Lab on a chip.
[3] Stefan Johansson,et al. On-chip fluorescence-activated cell sorting by an integrated miniaturized ultrasonic transducer. , 2009, Analytical chemistry.
[4] W. Lang,et al. Silicon microstructuring technology , 1996 .
[5] Radha Gupta,et al. Molecular imprinting in sol-gel matrix. , 2008, Biotechnology advances.
[6] Wei-Hua Huang,et al. A micropillar‐integrated smart microfluidic device for specific capture and sorting of cells , 2007, Electrophoresis.
[7] Stephen J. Haswell,et al. Attachment and detachment of living cells on modified microchannel surfaces in a microfluidic-based lab-on-a-chip system , 2008 .
[8] N. Strachan,et al. Multiple sample flow through immunomagnetic separator for concentrating pathogenic bacteria , 2005, Physics in medicine and biology.
[9] Chen Wang,et al. Two methods for glass surface modification and their application in protein immobilization. , 2007, Colloids and surfaces. B, Biointerfaces.
[10] Kahp Yang Suh,et al. Cell research with physically modified microfluidic channels: a review. , 2008, Lab on a chip.
[11] Chun-Ping Jen,et al. Mechanism of hydrodynamic separation of biological objects in microchannel devices. , 2002, Lab on a chip.
[12] Chengcheng Liu,et al. Microfluidic chip-based aptasensor for amplified electrochemical detection of human thrombin , 2010 .
[13] L. Wysocki,et al. "Panning" for lymphocytes: a method for cell selection. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[14] R. Tompkins,et al. Equilibrium separation and filtration of particles using differential inertial focusing. , 2008, Analytical chemistry.
[15] L. Gold,et al. Systematic evolution of ligands by exponential enrichment: RNA ligands to bacteriophage T4 DNA polymerase. , 1990, Science.
[16] Divya D Nalayanda,et al. Micropatterned surfaces for controlling cell adhesion and rolling under flow , 2005, Biomedical microdevices.
[17] R. Bizios,et al. Surfaces modified with covalently-immobilized adhesive peptides affect fibroblast population motility. , 1996, Biomaterials.
[18] Andreas Radbruch,et al. High gradient magnetic cell separation with MACS. , 1990, Cytometry.
[19] Min-Hsien Wu. Simple poly(dimethylsiloxane) surface modification to control cell adhesion , 2009 .
[20] Qiao Lin,et al. An Aptameric Microfluidic System for Specific Purification, Enrichment, and Mass Spectrometric Detection of Biomolecules , 2009, Journal of Microelectromechanical Systems.
[21] M. Yamada,et al. Hydrodynamic filtration for on-chip particle concentration and classification utilizing microfluidics. , 2005, Lab on a chip.
[22] D. Beebe,et al. Microenvironment design considerations for cellular scale studies. , 2004, Lab on a chip.
[23] G. Whitesides,et al. Soft lithography in biology and biochemistry. , 2001, Annual review of biomedical engineering.
[24] M. Yamada,et al. Continuous particle separation in a microchannel having asymmetrically arranged multiple branches. , 2005, Lab on a chip.
[25] Michael J. McShane,et al. Integrated micro-/nanofabrication of cell culture scaffolds with selective cell adhesion and fluorescent indicators , 2003, SPIE MOEMS-MEMS.
[26] Toshihiko Baba,et al. Japanese Journal of Applied Physics, Part 1: Regular Papers & Short Notes & Review Papers , 1995 .
[27] Jane Bayani,et al. Stem cell enrichment approaches. , 2007, Seminars in cancer biology.
[28] Mehmet Toner,et al. Enhancing the performance of a point-of-care CD4+ T-cell counting microchip through monocyte depletion for HIV/AIDS diagnostics. , 2009, Lab on a chip.
[29] Kelong Wang,et al. Cellular separations: a review of new challenges in analytical chemistry. , 2007, Analytica chimica acta.
[30] Nicholas A Peppas,et al. Molecular imprinting within hydrogels. , 2002, Advanced drug delivery reviews.
[31] Matsuhiko Nishizawa,et al. Selective capture of a specific cell type from mixed leucocytes in an electrode-integrated microfluidic device. , 2009, Biosensors & bioelectronics.
[32] R G Sweet,et al. Fluorescence activated cell sorting. , 1972, The Review of scientific instruments.
[33] Y. Rao,et al. Identification of a peptide sequence involved in homophilic binding in the neural cell adhesion molecule NCAM , 1992, The Journal of cell biology.
[34] Thomas Laurell,et al. Acoustic control of suspended particles in micro fluidic chips. , 2004, Lab on a chip.
[35] J N Turner,et al. Selective adhesion of astrocytes to surfaces modified with immobilized peptides. , 2002, Biomaterials.
[36] Vijay Namasivayam,et al. Cell affinity separations using magnetically stabilized fluidized beds: erythrocyte subpopulation fractionation utilizing a lectin-magnetite support. , 2003, Biotechnology and bioengineering.
[37] Dorian Liepmann,et al. Biomimetic technique for adhesion-based collection and separation of cells in a microfluidic channel. , 2005, Lab on a chip.
[38] Byungkyu Kim,et al. Label-free, microfluidic separation and enrichment of human breast cancer cells by adhesion difference. , 2007, Lab on a chip.
[39] Weihong Tan,et al. Identification of liver cancer-specific aptamers using whole live cells. , 2008, Analytical chemistry.
[40] Weihong Tan,et al. Aptamer-conjugated nanoparticles for selective collection and detection of cancer cells. , 2006, Analytical chemistry.
[41] M. W. Vaughn,et al. Microfluidic-based diagnostics for cervical cancer cells. , 2006, Biosensors & bioelectronics.
[42] George M. Whitesides,et al. Microfabrication by microcontact printing of self‐assembled monolayers , 1994 .
[43] Yu Sun,et al. High-throughput cell manipulation using ultrasound fields , 2004, The 26th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[44] Ashok Kumar,et al. Methods in cell separation for biomedical application: cryogels as a new tool , 2008, Biomedical materials.
[45] Hengyu Wang,et al. Adhesion Study of Escherichia coli Cells on Nano-/Microtextured Surfaces in a Microfluidic System , 2008, IEEE Transactions on Nanotechnology.
[46] Claire McCague,et al. Spatially controlled cell adhesion via micropatterned surface modification of poly(dimethylsiloxane). , 2007, Langmuir : the ACS journal of surfaces and colloids.
[47] Milica Radisic,et al. Micro- and nanotechnology in cell separation , 2006, International journal of nanomedicine.
[48] Henning Ulrich,et al. Recognition of biomarkers and cell-specific molecular signatures: aptamers as capture agents. , 2009, Journal of separation science.
[49] Ali Khademhosseini,et al. Microcirculation within grooved substrates regulates cell positioning and cell docking inside microfluidic channels. , 2008, Lab on a chip.
[50] 권건우. Label free, microfluidic separation of human breast carcinoma and epithelial cells by adhesion difference , 2007 .
[51] Yutaka Komai,et al. Mechanotransduction in leukocyte activation: a review. , 2007, Biorheology.
[52] Paul D. Gader,et al. System-level training of neural networks for counting white blood cells , 2002, IEEE Trans. Syst. Man Cybern. Part C.
[53] A. Rostami,et al. Magnetic cell sorting: A fast and effective method of concurrent isolation of high purity viable astrocytes and microglia from neonatal mouse brain tissue , 2008, Journal of Neuroscience Methods.
[54] Henning Ulrich,et al. In Vitro Selection of RNA Aptamers That Bind to Cell Adhesion Receptors of Trypanosoma cruzi and Inhibit Cell Invasion* , 2002, The Journal of Biological Chemistry.
[55] Tatiana Kniazeva,et al. Development of microfluidics as endothelial progenitor cell capture technology for cardiovascular tissue engineering and diagnostic medicine , 2009, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[56] Yi Xiao,et al. Detection of proteins in serum by micromagnetic aptamer PCR (MAP) technology. , 2010, Angewandte Chemie.
[57] Antonella Milella,et al. Increasing cell adhesion on plasma deposited fluorocarbon coatings by changing the surface topography. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[58] R. Skalak,et al. Design and construction of a linear shear stress flow chamber , 2006, Annals of Biomedical Engineering.
[59] Nicholas W Turner,et al. From 3D to 2D: A Review of the Molecular Imprinting of Proteins , 2006, Biotechnology progress.
[60] A. Groisman,et al. Microfluidic devices for studies of shear-dependent platelet adhesion. , 2008, Lab on a chip.
[61] Milica Radisic,et al. Controlled capture and release of cardiac fibroblasts using peptide-functionalized alginate gels in microfluidic channels. , 2009, Lab on a chip.
[62] T. Laurell,et al. Review of cell and particle trapping in microfluidic systems. , 2009, Analytica chimica acta.
[63] R. Bizios,et al. Micropatterned surfaces modified with select peptides promote exclusive interactions with osteoblasts. , 2002, Biomaterials.
[64] L E Erickson,et al. A review of the effects of shear and interfacial phenomena on cell viability. , 1993, Critical reviews in biotechnology.
[65] J. Liesveld,et al. Investigating the Feasibility of Stem Cell Enrichment Mediated by Immobilized Selectins , 2007, Biotechnology progress.
[66] Matthew Tirrell,et al. Cell adhesion and growth to Peptide-patterned supported lipid membranes. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[67] Weihong Tan,et al. Aptamer-based microfluidic device for enrichment, sorting, and detection of multiple cancer cells. , 2009, Analytical chemistry.
[68] Yuejun Kang,et al. Electrokinetic motion of particles and cells in microchannels , 2009 .
[69] Wei Du,et al. Microfluidic chips for cell sorting. , 2008, Frontiers in bioscience : a journal and virtual library.
[70] Cheng Dong,et al. Development of a side-view chamber for studying cell-surface adhesion under flow conditions , 1997, Annals of Biomedical Engineering.
[71] James V. Green,et al. Microfluidic enrichment of a target cell type from a heterogenous suspension by adhesion-based negative selection. , 2009, Lab on a chip.
[72] Matsuhiko Nishizawa,et al. On-demand patterning of protein matrixes inside a microfluidic device. , 2006, Analytical chemistry.
[73] D. Hammer,et al. Cell separation mediated by differential rolling adhesion. , 2001, Biotechnology and bioengineering.
[74] J. Szostak,et al. In vitro selection of RNA molecules that bind specific ligands , 1990, Nature.
[75] Z. L. Zhang,et al. In situ bio-functionalization and cell adhesion in microfluidic devices , 2005 .
[76] M. Yousaf,et al. Electrochemical and chemical microfluidic gold etching to generate patterned and gradient substrates for cell adhesion and cell migration. , 2009, Analytical chemistry.
[77] Michela Matteoli,et al. Controlled deposition of cells in sealed microfluidics using flow velocity boundaries. , 2009, Lab on a chip.
[78] Tatiana Kniazeva,et al. Effect of channel geometry on cell adhesion in microfluidic devices. , 2009, Lab on a chip.
[79] Douglas A Lauffenburger,et al. Microfluidic shear devices for quantitative analysis of cell adhesion. , 2004, Analytical chemistry.
[80] Karan Sharma,et al. Receptor-independent, direct membrane binding leads to cell-surface lipid sorting and Syk kinase activation in dendritic cells. , 2008, Immunity.
[81] Mehmet Toner,et al. Enrichment using antibody-coated microfluidic chambers in shear flow: model mixtures of human lymphocytes. , 2005, Biotechnology and bioengineering.
[82] Alan P. Morrison,et al. Development of a microfluidic device for fluorescence activated cell sorting , 2002 .
[83] George M. Whitesides,et al. Extending Microcontact Printing as a Microlithographic Technique , 1997 .
[84] R. Tompkins,et al. Effect of flow and surface conditions on human lymphocyte isolation using microfluidic chambers. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[85] R G Sweet,et al. Fluorescence Activated Cell Sorting , 2020, Definitions.
[86] William Shain,et al. Preferential glial cell attachment to microcontact printed surfaces , 1997, Journal of Neuroscience Methods.
[87] Adnan Kaya,et al. Clinical outcome of magnetic activated cell sorting of non-apoptotic spermatozoa before density gradient centrifugation for assisted reproduction , 2008, Journal of Assisted Reproduction and Genetics.
[88] Woojin Han,et al. Nanoparticle coatings for enhanced capture of flowing cells in microtubes. , 2010, ACS nano.
[89] Chang Mo Hwang,et al. Simultaneous generation of chemical concentration and mechanical shear stress gradients using microfluidic osmotic flow comparable to interstitial flow. , 2009, Lab on a chip.
[90] S. Hilsenbeck,et al. A hypersensitive estrogen receptor-alpha mutation in premalignant breast lesions. , 2000, Cancer research.
[91] Pavel Zemánek,et al. Light at work: The use of optical forces for particle manipulation, sorting, and analysis , 2008, Electrophoresis.
[92] Chih-Ming Ho,et al. Cell Separation by Non-Inertial Force Fields in Microfluidic Systems. , 2009, Mechanics research communications.
[93] Qiao Lin,et al. An aptamer-based microfluidic device for thermally controlled affinity extraction , 2009 .
[94] S. Digumarthy,et al. Isolation of rare circulating tumour cells in cancer patients by microchip technology , 2007, Nature.
[95] Milica Radisic,et al. Peptide-mediated selective adhesion of smooth muscle and endothelial cells in microfluidic shear flow. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[96] Gerhard Ziemer,et al. A New Technique for the Isolation and Surface Immobilization of Mesenchymal Stem Cells from Whole Bone Marrow Using High‐Specific DNA Aptamers , 2006, Stem cells.
[97] Onnop Srivannavit,et al. Cytophobic Surface Modification of Microfluidic Arrays for In Situ Parallel Peptide Synthesis and Cell Adhesion Assays , 2007, Biotechnology progress.
[98] Weihong Tan,et al. Enrichment of cancer cells using aptamers immobilized on a microfluidic channel. , 2009, Analytical chemistry.
[99] Luke P. Lee,et al. Dynamic single cell culture array. , 2006, Lab on a chip.
[100] Weihong Tan,et al. Molecular Recognition of Small‐Cell Lung Cancer Cells Using Aptamers , 2008, ChemMedChem.
[101] Marc Herrmann,et al. Current State of Intellectual Property in Microfluidic Nucleic Acid Analysis , 2007 .
[102] Chen-Min Chang,et al. Micro Flow Cytometer Chip Integrated with Micro-Pumps/Micro-Valves for Multi-Wavelength Cell Counting and Sorting , 2007 .
[103] Elinore M Mercer,et al. Microfluidic sorting of mammalian cells by optical force switching , 2005, Nature Biotechnology.
[104] E. Delamarche,et al. Microfluidics for Processing Surfaces and Miniaturizing Biological Assays , 2005 .
[105] H Tom Soh,et al. Integrated acoustic and magnetic separation in microfluidic channels. , 2009, Applied physics letters.
[106] Nicole Borth,et al. Applications of cell sorting in biotechnology , 2006 .
[107] C. Simmons,et al. Matrix-dependent adhesion of vascular and valvular endothelial cells in microfluidic channels. , 2007, Lab on a chip.
[108] Horst Kessler,et al. Isothiocyanate-functionalized RGD peptides for tailoring cell-adhesive surface patterns. , 2008, Biomaterials.
[109] M. W. Vaughn,et al. Recognition and capture of breast cancer cells using an antibody-based platform in a microelectromechanical systems device , 2007, Biomedical microdevices.
[110] D L Simmons,et al. Cell adhesion: more than just glue (review). , 1998, Molecular membrane biology.
[111] Raj Mutharasan,et al. Optimization of antibody immobilization for sensing using piezoelectrically excited-millimeter-sized cantilever (PEMC) sensors , 2007 .
[112] Y. Zohar,et al. Flow Acceleration Effect on Cancer Cell Deformation and Detachment , 2009, 2009 IEEE 22nd International Conference on Micro Electro Mechanical Systems.
[113] Christopher B Umbricht,et al. Detection of breast cancer cells in ductal lavage fluid by methylation-specific PCR , 2001, The Lancet.
[114] Takehiko Kitamori,et al. Micro- and nanometer-scale patterned surface in a microchannel for cell culture in microfluidic devices , 2008, Analytical and bioanalytical chemistry.
[115] Jing Zhang,et al. Fluorescent quantum dot-labeled aptamer bioprobes specifically targeting mouse liver cancer cells. , 2010, Talanta.
[116] Glen Hybarger,et al. A microfluidic SELEX prototype , 2006, Analytical and bioanalytical chemistry.
[117] Theodore W Berger,et al. Receptor-ligand-based specific cell adhesion on solid surfaces: hippocampal neuronal cells on bilinker functionalized glass. , 2006, Nano letters.
[118] N L Luban,et al. Review of neonatal red cell transfusion practices. , 1994, Blood reviews.