A fluorescence based immunoassay for galectin-4 using gold nanoclusters and a composite consisting of glucose oxidase and a metal-organic framework
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Xiaolong Liu | Jingfeng Liu | Yongyi Zeng | A. Huang | Xiaolong Zhang | Aixian Zheng | Jinhua Zeng | Zhixiong Cai
[1] V. Biju,et al. Sensing of ozone based on its quenching effect on the photoluminescence of CdSe-based core-shell quantum dots , 2016, Microchimica Acta.
[2] Juan Tang,et al. Novel glucometer-based immunosensing strategy suitable for complex systems with signal amplification using surfactant-responsive cargo release from glucose-encapsulated liposome nanocarriers. , 2016, Biosensors & bioelectronics.
[3] Shuming Nie,et al. Integrated Nanozymes with Nanoscale Proximity for in Vivo Neurochemical Monitoring in Living Brains. , 2016, Analytical chemistry.
[4] J. Ge,et al. Polydopamine tethered enzyme/metal-organic framework composites with high stability and reusability. , 2015, Nanoscale.
[5] S. M. F. Vilela,et al. Multifunctional metal-organic frameworks: from academia to industrial applications. , 2015, Chemical Society reviews.
[6] J. Ge,et al. Facile synthesis of multiple enzyme-containing metal-organic frameworks in a biomolecule-friendly environment. , 2015, Chemical communications.
[7] Christian J. Doonan,et al. Biomimetic mineralization of metal-organic frameworks as protective coatings for biomacromolecules , 2015, Nature Communications.
[8] Sunil Bhand,et al. Zinc oxide nanoparticle-enhanced ultrasensitive chemiluminescence immunoassay for the carcinoma embryonic antigen , 2015, Microchimica Acta.
[9] Minghui Yang,et al. Electrochemical immunoassay for the protein biomarker mucin 1 and for MCF-7 cancer cells based on signal enhancement by silver nanoclusters , 2015, Microchimica Acta.
[10] Chia-Wei Wang,et al. Fluorescent gold nanoclusters: recent advances in sensing and imaging. , 2015, Analytical chemistry.
[11] R. Zare,et al. One-pot synthesis of protein-embedded metal-organic frameworks with enhanced biological activities. , 2014, Nano letters.
[12] Wenbin Lin,et al. Metal-organic frameworks for artificial photosynthesis and photocatalysis. , 2014, Chemical Society reviews.
[13] Dingbin Liu,et al. Glucose Oxidase-Catalyzed Growth of Gold Nanoparticles Enables Quantitative Detection of Attomolar Cancer Biomarkers , 2014, Analytical chemistry.
[14] N. Khashab,et al. "Light-on" sensing of antioxidants using gold nanoclusters. , 2014, Analytical chemistry.
[15] Huanghao Yang,et al. Magnetic bead-based enzyme-chromogenic substrate system for ultrasensitive colorimetric immunoassay accompanying cascade reaction for enzymatic formation of squaric acid-iron(III) chelate. , 2014, Analytical chemistry.
[16] Guonan Chen,et al. Turn-on fluorescence sensor for intracellular imaging of glutathione using g-C₃N₄ nanosheet-MnO₂ sandwich nanocomposite. , 2014, Analytical chemistry.
[17] Chunhai Fan,et al. Graphene-based nanoprobes and a prototype optical biosensing platform. , 2013, Biosensors & bioelectronics.
[18] Michael O’Keeffe,et al. The Chemistry and Applications of Metal-Organic Frameworks , 2013, Science.
[19] Yi Lu,et al. A dual-emission fluorescent nanocomplex of gold-cluster-decorated silica particles for live cell imaging of highly reactive oxygen species. , 2013, Journal of the American Chemical Society.
[20] Xiaodong Xia,et al. Glucose oxidase-functionalized fluorescent gold nanoclusters as probes for glucose. , 2013, Analytica chimica acta.
[21] T. Kim,et al. Abrogation of galectin-4 expression promotes tumorigenesis in colorectal cancer , 2013, Cellular Oncology.
[22] Guonan Chen,et al. Simple colorimetric bacterial detection and high-throughput drug screening based on a graphene-enzyme complex. , 2013, Nanoscale.
[23] Xiaomei Pei,et al. Sandwich-type immunosensors and immunoassays exploiting nanostructure labels: A review. , 2013, Analytica chimica acta.
[24] Jianping Xie,et al. From aggregation-induced emission of Au(I)-thiolate complexes to ultrabright Au(0)@Au(I)-thiolate core-shell nanoclusters. , 2012, Journal of the American Chemical Society.
[25] C. Chen,et al. Serum Galectin-2, -4, and -8 Are Greatly Increased in Colon and Breast Cancer Patients and Promote Cancer Cell Adhesion to Blood Vascular Endothelium , 2011, Clinical Cancer Research.
[26] Sung Min Kang,et al. Mussel-inspired encapsulation and functionalization of individual yeast cells. , 2011, Journal of the American Chemical Society.
[27] Shaojun Guo,et al. Biomolecule-stabilized Au nanoclusters as a fluorescence probe for sensitive detection of glucose. , 2011, Biosensors & bioelectronics.
[28] Yukari Sato,et al. One-step detection of galectins on hybrid monolayer surface with protruding lactoside. , 2010, Analytical chemistry.
[29] Joseph Wang,et al. Ultrasensitive electrical biosensing of proteins and DNA: carbon-nanotube derived amplification of the recognition and transduction events. , 2004, Journal of the American Chemical Society.
[30] M. Huflejt,et al. Galectin-4 in normal tissues and cancer , 2003, Glycoconjugate Journal.
[31] A. Barth,et al. What vibrations tell about proteins , 2002, Quarterly Reviews of Biophysics.
[32] Gabriel A. Rabinovich,et al. Galectins as modulators of tumour progression , 2005, Nature Reviews Cancer.