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  1. 1.   A Custom 148 Gene-Based Resequencing Chip and the SNP Explorer Software: New Tools to Study Antibody Deficiency
  2. Wang, H. Y.; Gopalan, V.; Aksentijevich, I.; Yeager, M.; Ma, C. A.; Mohamoud, Y. A.; Quinones, M.; Matthews, C.; Boland, J.; Niemela, J. E.; Torgerson, T. R.; Giliani, S.; Uzel, G.; Orange, J. S.; Shapiro, R.; Notarangelo, L.; Ochs, H. D.; Fleisher, T.; Kastner, D.; Chanock, S. J.; Jain, A.
  3. Human Mutation. 2010, Sep; 31(9): 1080-1088.
  1. 2.   Stimulation through CD40 on mouse and human renal cell carcinomas triggers cytokine production, leukocyte recruitment, and antitumor responses that can be independent of host CD40 expression
  2. Shorts, L.; Weiss, J. M.; Lee, J. K.; Welniak, L. A.; Subleski, J.; Back, T.; Murphy, W. J.; Wiltrout, R. H.
  3. Journal of Immunology. 2006, Jun; 176(11): 6543-6552.
  1. 3.   Failure of HIV-exposed CD4(+) T cells to activate dendritic cells is reversed by restoration of CD40/CD154 interactions
  2. Zhang, R.; Lifson, J. D.; Chougnet, C.
  3. Blood. 2006, Mar; 107(5): 1989-1995.
  1. 4.   Constitutive expression of functional CD40 on mouse renal cancer cells: Induction of Fas and Fas-mediated killing by CD40L
  2. Lee, J. K.; Seki, N.; Sayers, T. J.; Subleski, J.; Gruys, E. M.; Murphy, W. J.; Wiltrout, R. H.
  3. Cellular Immunology. 2005, JUN; 235(2): 145-152.
  1. 5.   CD40 ligand dysregulation in HIV infection: HIV glycoprotein 120 inhibits signaling cascades upstream of CD40 ligand transcription
  2. Zhang, R.; Fichtenbaum, C. J.; Hildeman, D. A.; Lifson, J. D.; Chougnet, C.
  3. Journal of Immunology. 2004 172(4): 2678-2686.
  1. 6.   Administration of either anti-CD40 or interleukin-12 following lethal total body irradiation induces acute lethal toxicity affecting the gut
  2. Hixon, J. A.; Anver, M. R.; Blazar, B. R.; Panoskaltsis-Mortari, A.; Wiltrout, R. H.; Murphy, W. J.
  3. Biology of Blood and Marrow Transplantation. 2002 8(6): 316-325.
  1. 7.   Human dendritic cells require multiple activation signals for the efficient generation of tumor antigen-specific T lymphocytes
  2. Lapointe, R.; Toso, J. F.; Butts, C.; Young, H. A.; Hwu, P.
  3. European Journal of Immunology. 2000 30(11): 3291-3298.
  1. 8.   Transient antiretroviral treatment during acute simian immunodeficiency virus infection facilitates long-term control of the virus
  2. Wodarz, D.; Arnaout, R. A.; Nowak, M. A.; Lifson, J. D.
  3. Philosophical Transactions of the Royal Society of London Series B-Biological Sciences. 2000 355(1400): 1021-1029.
  1. 9.   A new theory of cytotoxic T-lymphocyte memory: implications for HIV treatment
  2. Wodarz, D.; Page, K. M.; Arnaout, R. A.; Thomsen, A. R.; Lifson, J. D.; Nowak, M. A.
  3. Philosophical Transactions of the Royal Society of London - Series B: Biological Sciences. 2000 355(1395): 329-343.
  1. 10.   Containment of simian immunodeficiency virus infection: Cellular immune responses and protection from rechallenge following transient postinoculation antiretroviral treatment
  2. Lifson, J. D.; Rossio, J. L.; Arnaout, R.; Li, L.; Parks, T. L.; Schneider, D. K.; Kiser, R. F.; Coalter, V. J.; Walsh, G.; Imming, R. J.; Fisher, B.; Flynn, B. M.; Bischofberger, N.; Piatak, M.; Hirsch, V. M.; Nowak, M. A.; Wodarz, D.
  3. Journal of Virology. 2000 74(6): 2584-2593.
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