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  1. 1.   Polyethyleneimine/polyethylene glycol-conjugated gold nanoparticles as nanoscale positive/negative controls in nanotoxicology: testing in frog embryo teratogenesis assay-Xenopus and mammalian tissue culture system
  2. Hwang,Rich Yooseok; So,Daeho; Lee,Moonsup; Yoon,Jaeho; Reipa, Vytas; Tona, Alessandro; Yi, Feng; Nelson, Bryant C; LaVan, David A; Hackley, Vincent A; Daar,Ira; Cho, Tae Joon
  3. Nanotoxicology. 2023, Mar 15; 1-22.
  1. 3.   Anti-microbial Peptide Facilitated Cytosolic Delivery of Metallic Gold Nanomaterials
  2. Kapur, Anshika; Wang, Wentao; Hernandez, Juan Diaz; Medina, Scott; Schneider, Joel; Mattoussi, Hedi
  3. COLLOIDAL NANOPARTICLES FOR BIOMEDICAL APPLICATIONS XIII. 2018, 10507 105070R.
  1. 4.   Macrophage scavenger receptor A mediates the uptake of gold colloids by macrophages in vitro
  2. Franca, A.; Aggarwal, P.; Barsov, E. V.; Kozlov, S. V.; Dobrovolskaia, M. A.; Gonzalez-Fern, ez
  3. Nanomedicine. 2011, Sep; 6(7): 1175-1188.
  1. 5.   Newkome-Type Dendron-Stabilized Gold Nanoparticles: Synthesis, Reactivity, and Stability
  2. Cho, T. J.; Zangmeister, R. A.; MacCuspie, R. I.; Patri, A. K.; Hackley, V. A.
  3. Chemistry of Materials. 2011, May; 23(10): 2665-2676.
  1. 6.   Light-sensitive lipid-based nanoparticles for drug delivery: design principles and future considerations for biological applications
  2. Yavlovich, A.; Smith, B.; Gupta, K.; Blumenthal, R.; Puri, A.
  3. Molecular Membrane Biology. 2010, Oct; 27(7): 364-381.
  1. 7.   Ambiguities in applying traditional Limulus Amebocyte Lysate tests to quantify endotoxin in nanoparticle formulations
  2. Dobrovolskaia, M. A.; Neun, B. W.; Clogston, J. D.; Ding, H.; Ljubimova, J.; McNeil, S. E.
  3. Nanomedicine. 2010, Jun; 5(4): 555-562.
  1. 8.   Radioactive gold nanoparticles in cancer therapy: therapeutic efficacy studies of GA-(AuNP)-Au-198 nanoconstruct in prostate tumor-bearing mice
  2. Chanda, N.; Kan, P.; Watkinson, L. D.; Shukla, R.; Zambre, A.; Carmack, T. L.; Engelbrecht, H.; Lever, J. R.; Katti, K.; Fent, G. M.; Casteel, S. W.; Smith, C. J.; Miller, W. H.; Jurisson, S.; Boote, E.; Robertson, J. D.; Cutler, C.; Dobrovolskaia, M.; Kannan, R.; Katti, K. V.
  3. Nanomedicine-Nanotechnology Biology and Medicine. 2010, Apr; 6(2): 201-209.
  1. 9.   Interaction of colloidal gold nanoparticles with human blood: effects on particle size and analysis of plasma protein binding profiles
  2. Dobrovolskaia, M. A.; Patri, A. K.; Zheng, J. W.; Clogston, J. D.; Ayub, N.; Aggarwal, P.; Neun, B. W.; Hall, J. B.; McNeil, S. E.
  3. Nanomedicine-Nanotechnology Biology and Medicine. 2009 5(2): 106-117.
  1. 10.   Enhancement of 5-Aminolevulinic acid-induced oxidative stress on two cancer cell lines by gold nanoparticles
  2. Ito, S.; Miyoshi, N.; Degraff, W. G.; Nagashima, K.; Kirschenbaum, L. J.; Riesz, P.
  3. Free Radical Research. 2009 43(12): 1214-1224.
  1. 11.   SYNTHESIS AND BIOLOGICAL EVALUATION OF INHIBITORS OF BOTULINUM NEUROTOXIN METALLOPROTEASE
  2. Wang, C. B.; Widom, J.; Petronijevic, F.; Burnett, J. C.; Nuss, J. E.; Bavari, S.; Gussio, R.; Wipf, P.
  3. Heterocycles. 2009 79: 487-520.
  1. 12.   Urethane and N-nitrosodiethylamine are mutagenic for the Syrian hamster fetus
  2. Donovan, P. J.; Smith, G. T.
  3. Mutation Research-Genetic Toxicology and Environmental Mutagenesis. 2008 657(2): 160-163.
  1. 13.   Potent cross-reactive neutralization of SARS coronavirus isolates by human monoclonal antibodies
  2. Zhu, Z. Y.; Chakraborti, S.; He, Y.; Roberts, A.; Sheahan, T.; Xiao, X. D.; Hensley, L. E.; Prabakaran, P.; Rockx, B.; Sidorov, I. A.; Corti, D.; Vogel, L.; Feng, Y.; Kim, J. O.; Wang, L. F.; Baric, R.; Lanzavecchia, A.; Curtis, K. M.; Nabel, G. J.; Subbarao, K.; Jiang, S.; Dimitrov, D. S.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, Jul; 104(29): 12123-12128.
  1. 15.   H-1-N-15 correlation spectroscopy of nanocrystalline proteins
  2. Morcombe, C. R.; Paulson, E. K.; Gaponenko, V.; Byrd, R. A.; Zilm, K. W.
  3. Journal of Biomolecular Nmr. 2005, MAR; 31(3): 217-230.
  1. 16.   Synthesis of gold nanoparticles bearing the Thomsen-Friedenreich disaccharide: a new multivalent presentation of an important tumor antigen
  2. Svarovsky, S. A.; Szekely, Z.; Barchi, J. J.
  3. Tetrahedron-Asymmetry. 2005, JAN 24; 16(2): 587-598.
  1. 17.   Theory and methodology for utilizing genes as biomarkers to determine potential biological mixtures
  2. Shrestha, S.; Smith, M. W.; Beaty, T. H.; Strathdee, S. A.
  3. Annals of Epidemiology. 2005, JAN; 15(1): 29-38.
  1. 18.   Estrogen receptor genotypes and haplotypes associated with breast cancer risk
  2. Gold, B.; Kalush, F.; Bergeron, J.; Scott, K.; Mitra, N.; Wilson, K.; Ellis, N.; Huang, H.; Chen, M.; Lippert, R.; Halldorsson, B. V.; Woodworth, B.; White, T.; Clark, A. G.; Parl, F. F.; Broder, S.; Dean, M.; Offit, K.
  3. Cancer Research. 2004, DEC 15; 64(24): 8891-8900.
  1. 19.   Development of multivalient gold and semiconductor nanoparticles encapsulated with tumor associated glycoantigens as antimetastatic and early cancer detection agents
  2. Svarovsky, S.; Barchi, J. J.
  3. Abstracts of Papers of the American Chemical Society. 2004, MAR 28; 227(070-CARB, Part 1): U274-U274.
  1. 20.   Origin and utility of the reverse dot-blot
  2. Gold, B.
  3. Expert Review of Molecular Diagnostics. 2003 3(2): 143-152.
  1. 21.   Oriented, active Escherichia coli RNA polymerase: An atomic force microscope study
  2. Thomson, N. H.; Smith, B. L.; Almqvist, N.; Schmitt, L.; Kashlev, M.; Kool, E. T.; Hansma, P. K.
  3. Biophysical Journal. 1999 76(2): 1024-1033.
  1. 22.   PEG Quantitation Using Reversed-Phase High-Performance Liquid Chromatography and Charged Aerosol Detection
  2. Smith, Mackensie C; Clogston, Jeffrey
  3. Methods in molecular biology (Clifton, N.J.). 2018 1682: 49-55.
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