Systematic assessment of blood circulation time of functionalized upconversion nanoparticles in the chick embryo
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Annemarie Nadort | Andrei V. Zvyagin | Ewa M. Goldys | Liuen Liang | Ekaterina A. Grebenik | Anna Guller | Yiqing Lu | Yi Qian | A. Nadort | E. Goldys | E. Grebenik | A. Zvyagin | Yi Qian | Yiqing Lu | Anna E Guller | L. Liang
[1] H. Jennissen,et al. Chick ex ovo culture and ex ovo CAM assay: how it really works. , 2009, Journal of visualized experiments : JoVE.
[2] A. V. Nechaev,et al. Quantitative Imaging of Single Upconversion Nanoparticles in Biological Tissue , 2013, PloS one.
[3] Shan Jiang,et al. Multicolor Core/Shell‐Structured Upconversion Fluorescent Nanoparticles , 2008 .
[4] Samir Mitragotri,et al. Factors that control the circulation time of nanoparticles in blood: challenges, solutions and future prospects. , 2010, Current pharmaceutical design.
[5] Wenjun Yang,et al. Synthesis, Characterization, and Biological Application of Size-Controlled Nanocrystalline NaYF4:Yb,Er Infrared-to-Visible Up-Conversion Phosphors , 2004 .
[6] R. Sperling,et al. Surface modification, functionalization and bioconjugation of colloidal inorganic nanoparticles , 2010, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[7] H. Maeda,et al. Tumor vascular permeability and the EPR effect in macromolecular therapeutics: a review. , 2000, Journal of controlled release : official journal of the Controlled Release Society.
[8] Jun Ren,et al. CD44+/CD24− breast cancer cells isolated from MCF-7 cultures exhibit enhanced angiogenic properties , 2012, Clinical and Translational Oncology.
[9] J. Lewis,et al. Real-Time Visualization and Quantitation of Vascular Permeability In Vivo: Implications for Drug Delivery , 2012, PloS one.
[10] M. Drofenik,et al. Controlled surface functionalization of silica-coated magnetic nanoparticles with terminal amino and carboxyl groups , 2011 .
[11] Annemarie Nadort,et al. Background free imaging of upconversion nanoparticle distribution in human skin , 2012, Journal of biomedical optics.
[12] D. Kube,et al. The chick chorioallantoic membrane as an in vivo xenograft model for Burkitt lymphoma , 2014, BMC Cancer.
[13] Ralph Weissleder,et al. Near-infrared fluorescence: application to in vivo molecular imaging. , 2010, Current opinion in chemical biology.
[14] Jonathan T Butcher,et al. An ex-ovo chicken embryo culture system suitable for imaging and microsurgery applications. , 2010, Journal of visualized experiments : JoVE.
[15] James P. Quigley,et al. Chick embryo chorioallantoic membrane model systems to study and visualize human tumor cell metastasis , 2008, Histochemistry and Cell Biology.
[16] P H Burri,et al. Chorioallantoic membrane capillary bed: A useful target for studying angiogenesis and anti‐angiogenesis in vivo , 2001, The Anatomical record.
[17] M. Haase,et al. Highly Efficient Multicolour Upconversion Emission in Transparent Colloids of Lanthanide‐Doped NaYF4 Nanocrystals , 2004 .
[18] Andries Zijlstra,et al. Evaluation of Nanoparticle Uptake in Tumors in Real Time Using Intravital Imaging , 2011, Journal of visualized experiments : JoVE.
[19] A E Burgess,et al. The Rose model, revisited. , 1999, Journal of the Optical Society of America. A, Optics, image science, and vision.
[20] F. Auzel. Upconversion and anti-Stokes processes with f and d ions in solids. , 2004, Chemical reviews.
[21] Yanqing Hua,et al. Multifunctional nanoprobes for upconversion fluorescence, MR and CT trimodal imaging. , 2012, Biomaterials.
[22] Louis A. Cuccia,et al. Controlled Synthesis and Water Dispersibility of Hexagonal Phase NaGdF4:Ho3+/Yb3+ Nanoparticles , 2009 .
[23] O. Wolfbeis,et al. Upconverting luminescent nanoparticles for use in bioconjugation and bioimaging. , 2010, Current opinion in chemical biology.
[24] J. Lewis,et al. The inhibition of tumor cell intravasation and subsequent metastasis via regulation of in vivo tumor cell motility by the tetraspanin CD151. , 2008, Cancer cell.
[25] Annemarie Nadort,et al. Feasibility study of the optical imaging of a breast cancer lesion labeled with upconversion nanoparticle biocomplexes , 2013, Journal of biomedical optics.
[26] Annemarie Nadort,et al. Cytotoxicity and non-specific cellular uptake of bare and surface-modified upconversion nanoparticles in human skin cells , 2015, Nano Research.