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  1. 1.   Noninfectious papilloma virus-like particles inhibit HIV-1 replication: implications for immune control of HIV-1 infection by IL-27
  2. Fakruddin, J. M.; Lempicki, R. A.; Gorelick, R. J.; Yang, J.; Adelsberger, J. W.; Garcia-Pineres, A. J.; Pinto, L. A.; Lanes, H. C.; Imamichi, T.
  3. Blood. 2007, Mar; 109(5): 1841-1849.
  1. 2.   Increased efficacy of HIV-1 neutralization by antibodies at low CCR5 surface concentration
  2. Choudhry, V.; Zhang, M. Y.; Harris, I.; Sidorov, I. A.; Vu, B.; Dimitrov, A. S.; Fouts, T.; Dimitrov, D. S.
  3. Biochemical and Biophysical Research Communications. 2006, Sep; 348(3): 1107-1115.
  1. 3.   HIV-1 gp120 induces NFAT nuclear translocation in resting CD4+T-cells
  2. Cicala, C.; Arthos, J.; Censoplano, N.; Cruz, C.; Chung, E.; Martinelli, E.; Lempicki, R. A.; Natarajan, V.; VanRyk, D.; Daucher, M.; Fauci, A. S.
  3. Virology. 2006, FEB 5; 345(1): 105-114.
  1. 4.   The effect of RANTES chemokine genetic variants on early HIV-1 plasma RNA among African American injection drug users
  2. Duggal, P.; Winkler, C. A.; An, P.; Yu, X. F.; Farzadegan, H.; O'Brien, S. J.; Beaty, T. H.; Vlahov, D.
  3. Jaids-Journal of Acquired Immune Deficiency Syndromes. 2005 38(5): 584-589.
  1. 5.   Human CD8(+) T cells store RANTES in a unique secretory compartment and release it rapidly after TcR stimulation
  2. Catalfamo, M.; Karpova, T.; McNally, J.; Costes, S. V.; Lockett, S. J.; Bos, E.; Peters, P. J.; Henkart, P. A.
  3. Immunity. 2004 20(2): 219-230.
  1. 6.   HIV envelope induces a cascade of cell signals in non- proliferating target cells that favor virus replication
  2. Cicala, C.; Arthos, J.; Selig, S. M.; Dennis, G.; Hosack, D. A.; Van Ryk, D.; Spangler, M. L.; Steenbeke, T. D.; Khazanie, P.; Gupta, N.; Yang, J.; Daucher, M.; Lempicki, R. A.; Fauci, A. S.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2002 99(14): 9380-9385.
  1. 7.   Pathogenic simian/human immunodeficiency virus SHIVKU inoculated into immunized macaques caused infection, but virus burdens progressively declined with time
  2. Silverstein, P. S.; Mackay, G. A.; Mukherjee, S.; Li, Z.; Piatak, M.; Lifson, J. D.; Narayan, O.; Kumar, A.
  3. Journal of Virology. 2000 74(22): 10489-10497.
  1. 8.   LEC induces chemotaxis and adhesion by interacting with CCR1 and CCR8
  2. Howard, O. M. Z.; Dong, H. F.; Shirakawa, A. K.; Oppenheim, J. J.
  3. Blood. 2000 96(3): 840-845.
  1. 9.   International union of pharmacology. XXII. Nomenclature for chemokine receptors
  2. Murphy, P. M.; Baggiolini, M.; Charo, I. F.; Hebert, C. A.; Horuk, R.; Matsushima, K.; Miller, L. H.; Oppenheim, J. J.; Power, C. A.
  3. Pharmacological Reviews. 2000 52(1): 145-176.
  1. 10.   Cloning and Characterization of a New Type of Mouse Chemokine
  2. Rossi, D. L.; Hardiman, G.; Copeland, N. G.; Gilbert, D. J.; Jenkins, N.; Zlotnik, A.; Bazan, J. F.
  3. Genomics. 1998 47(2): 163-170.
  1. 11.   Identification of Ccr8 - a Human Monocyte and Thymus Receptor For the Cc Chemokine I-309
  2. Tiffany, H. L.; Lautens, L. L.; Gao, J. L.; Pease, J.; Locati, M.; Combadiere, C.; Modi, W.; Bonner, T. I.; Murphy, P. M.
  3. Journal of Experimental Medicine. 1997 186(1): 165-170.
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