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  1. 1.   Seneca Valley Virus Exploits TEM8, a Collagen Receptor Implicated in Tumor Growth
  2. Evans, David J.; Wasinger, Alexa M.; Brey, Robert N.; Dunleavey, James; St Croix, Brad; Bann, James G.
  3. Frontiers in oncology. 2018, Nov 6; 8
  1. 2.   Enterotoxigenic Escherichia coli-blood group A interactions intensify diarrheal severity
  2. Kumar, Pardeep; Kuhlmann, F. Matthew; Chakraborty, Subhra; Bourgeois, A. Louis; Foulke-Abel, Jennifer; Tumala, Brunda; Vickers, Tim J.; Sack, David A.; DeNearing, Barbara; Harro, Clayton D.; Wright, W. Shea; Gildersleeve, Jeffrey; Ciorba, Matthew A.; Santhanam, Srikanth; Porter, Chad K.; Gutierrez, Ramiro L.; Prouty, Michael G.; Riddle, Mark S.; Polino, Alexander; Sheikh, Alaullah; Donowitz, Mark; Fleckenstein, James M.
  3. JOURNAL OF CLINICAL INVESTIGATION. 2018, Aug 1; 128(8): 3298-3311.
  1. 3.   The cell surface structure of tumor endothelial marker 8 (TEM8) is regulated by the actin cytoskeleton
  2. Yang, M. Y.; Chaudhary, A.; Seaman, S.; Dunty, J.; Stevens, J.; Elzarrad, M. K.; Frankel, A. E.; Croix, B. S.
  3. Biochimica Et Biophysica Acta-Molecular Cell Research. 2011, Jan; 1813(1): 39-49.
  1. 4.   Sizing the Bacillus anthracis PA(63) channel with nonelectrolyte poly(ethylene glycols)
  2. Nablo, B. J.; Halverson, K. M.; Robertson, J.; Nguyen, T. L.; Panchal, R. G.; Gussio, R.; Bavari, S.; Krasilnikov, O. V.; Kasianowicz, J. J.
  3. Biophysical Journal. 2008 95(3): 1157-1164.
  1. 5.   Effect of CpG oligonucleotides on vaccine-induced B cell memory
  2. Tross, D.; Klinman, D. M.
  3. Journal of Immunology. 2008 181(8): 5785-5790.
  1. 6.   Low doses of antigen coupled to anti-CR2 mAbs induce rapid and enduring IgG immune responses in mice and in cynomolgus monkeys
  2. Whipple, E. C.; Ditto, A. H.; Shanahan, R. S.; Gatesman, J. J.; Little, S. F.; Taylor, R. P.; Lindorfer, M. A.
  3. Molecular Immunology. 2007, Jan; 44(4): 377-388.
  1. 7.   Anthrax vaccines: Pasteur to the present
  2. Scorpio, A.; Blank, T. E.; Day, W. A.; Chabot, D. J.
  3. Cellular and Molecular Life Sciences. 2006, Oct; 63(19-20): 2237-2248.
  1. 8.   Live vaccines for human metapneumovirus designed by reverse genetics
  2. Buchholz, U. J.; Nagashima, K.; Murphy, B. R.; Collins, P. L.
  3. Expert Review of Vaccines. 2006, Oct; 5(5): 695-706.
  1. 9.   Enhancing molecular flux through nanopores by means of attractive interactions
  2. Kasianowicz, J. J.; Nguyen, T. L.; Stanford, V. M.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2006, Aug; 103(31): 11431-11432.
  1. 10.   Passive immunotherapy of Bacillus anthracis pulmonary infection in mice with antisera produced by DNA immunization
  2. Herrmann, J. E.; Wang, S. X.; Zhang, C. Y.; Panchal, R. G.; Bavari, S.; Lyons, C. R.; Lovchik, J. A.; Golding, B.; Shiloach, J.; Lu, S.
  3. Vaccine. 2006, Jul; 24(31-32): 5872-5880.
  1. 11.   Brugia malayi asparaginyl-transfer RNA synthetase induces chemotaxis of human leukocytes and activates G-protein-coupled receptors CXCR1 and CXCR2
  2. Ramirez, B. L.; Howard, O. M. Z.; Dong, H. F.; Edamatsu, T.; Gao, P.; Hartlein, M.; Kron, M.
  3. Journal of Infectious Diseases. 2006, Apr; 193(8): 1164-1171.
  1. 12.   Anthrax biosensor, protective antigen ion channel asymmetric blockade
  2. Halverson, K. M.; Panchal, R. G.; Nguyen, T. L.; Gussio, R.; Little, S. F.; Misakian, M.; Bavari, S.; Kasianowicz, J. J.
  3. Journal of Biological Chemistry. 2005, OCT 7; 280(40): 34056-34062.
  1. 13.   Purified Bacillus anthracis lethal toxin complex formed in Vitro and during infection exhibits functional and biological activity
  2. Panchal, R. G.; Halverson, K. M.; Ribot, W.; Lane, D.; Kenny, T.; Abshire, T. G.; Ezzell, J. W.; Hoover, T. A.; Powell, B.; Little, S.; Kasianowicz, J. J.; Bavari, S.
  3. Journal of Biological Chemistry. 2005, MAR 18; 280(11): 10834-10839.
  1. 14.   Construction of a rhamnose mutation in Bacillus anthracis affects adherence to macrophages but not virulence in guinea pigs
  2. Bozue, J. A.; Parthasarathy, N.; Phillips, L. R.; Cote, C. K.; Fellows, P. F.; Mendelson, I.; Shafferman, A.; Friedl, er
  3. Microbial Pathogenesis. 2005, JAN; 38(1): 1-12.
  1. 15.   Involvement of domain II in toxicity of anthrax lethal factor
  2. Liang, X. D.; Young, J. J.; Boone, S. A.; Waugh, D. S.; Duesbery, N. S.
  3. Journal of Biological Chemistry. 2004, DEC 10; 279(50): 52473-52478.
  1. 16.   Three-dimensional model of the pore form of anthrax protective antigen. Structure and biological implications
  2. Nguyen, T. L.
  3. Journal of Biomolecular Structure & Dynamics. 2004, DEC; 22(3): 253-265.
  1. 17.   Identification of small molecule inhibitors of anthrax lethal factor
  2. Panchal, R. G.; Hermone, A. R.; Nguyen, T. L.; Wong, T. Y.; Schwarzenbacher, R.; Schmidt, J.; Lane, D.; McGrath, C.; Turk, B. E.; Burnett, J.; Aman, M. J.; Little, S.; Sausville, E. A.; Zaharevitz, D. W.; Cantley, L. C.; Liddington, R. C.; Gussio, R.; Bavari, S.
  3. Nature Structural & Molecular Biology. 2004 11(1): 67-72.
  1. 18.   Bacillus anthracis lethal toxin induces TNF-alpha-independent hypoxia-mediated toxicity in mice
  2. Moayeri, M.; Haines, D.; Young, H. A.; Leppla, S. H.
  3. Journal of Clinical Investigation. 2003 112(5): 670-682.
  1. 19.   Evaluation of the compatibility of a second generation recombinant anthrax vaccine with aluminum-containing adjuvants
  2. Jendrek, S.; Little, S. F.; Hem, S.; Mitra, G.; Giardina, S.
  3. Vaccine. 2003 21(21-22): 3011-3018.
  1. 20.   Proteolytic Inactivation of Map-Kinase-Kinase By Anthrax Lethal Factor
  2. Duesbery, N. S.; Webb, C. P.; Leppla, S. H.; Gordon, V. M.; Klimpel, K. R.; Copeland, T. D.; Ahn, N. G.; Oskarsson, M. K.; Fukasawa, K.; Paull, K. D.; Vande Woude, G. F.
  3. Science. 1998 280(5364): 734-737.
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