An InSb-based magnetoresistive biosensor using Fe3O4 nanoparticles
暂无分享,去创建一个
[1] Raffaele Velotta,et al. Effective antibodies immobilization and functionalized nanoparticles in a quartz-crystal microbalance-based immunosensor for the detection of parathion , 2017, PloS one.
[2] Yong Zhou,et al. Giant magneto-resistance based immunoassay for the tumor marker carcinoembryonic antigen , 2016, Microchimica Acta.
[3] Jinling Yang,et al. Cantilever array sensor for multiple liver cancer biomarkers detection , 2014, IEEE SENSORS 2014 Proceedings.
[4] Tao Wang,et al. Development of an ingenious method for determination of Dynabeads protein A based on a giant magnetoimpedance sensor , 2013 .
[5] Suk Hee Han,et al. Magnetic-field-controlled reconfigurable semiconductor logic , 2013, Nature.
[6] Minghui Yang,et al. Sensitive electrochemical immunosensor for cancer biomarker with signal enhancement based on nitrodopamine-functionalized iron oxide nanoparticles. , 2011, Biosensors & bioelectronics.
[7] C. Mathers,et al. Estimates of worldwide burden of cancer in 2008: GLOBOCAN 2008 , 2010, International journal of cancer.
[8] Shun Mao,et al. Specific Protein Detection Using Thermally Reduced Graphene Oxide Sheet Decorated with Gold Nanoparticle‐Antibody Conjugates , 2010, Advanced materials.
[9] Hakho Lee,et al. Magnetic nanoparticle biosensors. , 2010, Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology.
[10] Ali Ghaffarinejad,et al. A simple and cost-effective method, as an appropriate alternative for visible spectrophotometry: development of a dopamine biosensor. , 2009, The Analyst.
[11] Shan X. Wang,et al. Advances in Giant Magnetoresistance Biosensors With Magnetic Nanoparticle Tags: Review and Outlook , 2008, IEEE Transactions on Magnetics.
[12] G. Klintmalm,et al. Alpha fetoprotein, ultrasound, computerized tomography and magnetic resonance imaging for detection of hepatocellular carcinoma in patients with advanced cirrhosis , 2007, Alimentary pharmacology & therapeutics.
[13] Jing Sun,et al. Synthesis and characterization of biocompatible Fe3O4 nanoparticles. , 2007, Journal of biomedical materials research. Part A.
[14] Ruo Yuan,et al. Magnetic core-shell Fe3O4@Ag nanoparticles coated carbon paste interface for studies of carcinoembryonic antigen in clinical immunoassay. , 2006, The journal of physical chemistry. B.
[15] Shouheng Sun,et al. Recent Advances in Chemical Synthesis, Self‐Assembly, and Applications of FePt Nanoparticles , 2006 .
[16] Hiroyuki Honda,et al. Medical application of functionalized magnetic nanoparticles. , 2005, Journal of bioscience and bioengineering.
[17] H. Hofmann,et al. Superparamagnetic nanoparticles for biomedical applications: Possibilities and limitations of a new drug delivery system , 2005 .
[18] F. X. Bosch,et al. Epidemiology of hepatocellular carcinoma. , 2005, Clinics in liver disease.
[19] Shouheng Sun,et al. Dumbbell-like bifunctional Au-Fe3O4 nanoparticles. , 2005, Nano letters.
[20] É. Duguet,et al. Magnetic nanoparticle design for medical diagnosis and therapy , 2004 .
[21] M. Janssen-Heijnen,et al. Hepatocellular carcinoma in the Netherlands incidence, treatment and survival patterns. , 2004, European journal of cancer.
[22] Paul E. Sheehan,et al. Design and Performance of GMR Sensors for the Detection of Magnetic Microbeads in Biosensors , 2003 .
[23] Adam D. McFarland,et al. Single Silver Nanoparticles as Real-Time Optical Sensors with Zeptomole Sensitivity , 2003 .
[24] Q. Pankhurst,et al. TOPICAL REVIEW: Applications of magnetic nanoparticles in biomedicine , 2003 .
[25] C. Bárcena,et al. APPLICATIONS OF MAGNETIC NANOPARTICLES IN BIOMEDICINE , 2003 .
[26] Ding‐Shinn Chen,et al. Decreasing serum alpha-fetoprotein levels in predicting poor prognosis of acute hepatic failure in patients with chronic hepatitis B , 2002, Journal of Gastroenterology.
[27] S. Nie,et al. Self-assembled nanoparticle probes for recognition and detection of biomolecules. , 2002, Journal of the American Chemical Society.
[28] Thomas Laurell,et al. Microfluidic enzyme immunoassay using silicon microchip with immobilized antibodies and chemiluminescence detection. , 2002, Analytical chemistry.
[29] Younan Xia,et al. Modifying the Surface Properties of Superparamagnetic Iron Oxide Nanoparticles through A Sol−Gel Approach , 2002 .
[30] P. Jallet,et al. Nonpolymeric Coatings of Iron Oxide Colloids for Biological Use as Magnetic Resonance Imaging Contrast Agents. , 2001, Journal of colloid and interface science.
[31] S. Babacan,et al. Evaluation of antibody immobilization methods for piezoelectric biosensor application. , 2000, Biosensors & bioelectronics.
[32] Sun,et al. Monodisperse FePt nanoparticles and ferromagnetic FePt nanocrystal superlattices , 2000, Science.
[33] P. Wax,et al. Biomarkers of liver regeneration allow early prediction of hepatic recovery after acute necrosis. , 1999, American journal of clinical pathology.
[34] Babeş,et al. Synthesis of Iron Oxide Nanoparticles Used as MRI Contrast Agents: A Parametric Study. , 1999, Journal of colloid and interface science.
[35] Gil U. Lee,et al. A biosensor based on magnetoresistance technology. , 1998, Biosensors & bioelectronics.
[36] J. Bruix,et al. Treatment of hepatocellular carcinoma , 1997, Critical reviews in oncology/hematology.
[37] A. Watanabe,et al. Serum α-fetoprotein in fulminant hepatitis and hepatic regeneration following partial hepatectomy , 1984 .
[38] G. L. Pearson,et al. The Magnetoresistance Effect in InSb , 1953 .
[39] M. Ismail,et al. Synthesis and Some Physical Properties of Magnetite (Fe 3O4) Nanoparticles , 2012 .
[40] Mamoun Muhammed,et al. Characterization and MRI study of surfactant-coated superparamagnetic nanoparticles administered into the rat brain , 2001 .
[41] A. Pippard. Magnetoresistance in metals , 1989 .
[42] S. Avrameas,et al. Coupling of enzymes to proteins with glutaraldehyde. Use of the conjugates for the detection of antigens and antibodies. , 1969, Immunochemistry.
[43] E. Kane,et al. Band structure of indium antimonide , 1957 .