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  1. 1.   Requirement of CRAMP for mouse macrophages to eliminate phagocytosed E. coli through an autophagy pathway
  2. Chen,Keqiang; Yoshimura, Teizo; Gong,Wang; Tian, Cuimeng; Huang,Jiaqiang; Trinchieri, Giorgio; Wang,Jiming
  3. Journal of Cell Science. 2021, Mar 8; 134(5):
  1. 2.   The effect of Ingenol-B on the suppressive capacity of elite suppressor HIV-specific CD8+T cells
  2. Kwaa, Abena K.; Goldsborough, Kennedy; Walker-Sperling, Victoria; Pianowski, Luiz F.; Gama, Lucio; Blankson, Joel N.
  3. PLoS One. 2017, May 03; 12(5): e0174516.
  1. 3.   Ionic Liquids: Neoteric Solvents for Nucleoside Chemistry
  2. Kumar, V.; Parmar, V. S.; Malhotra, S. V.
  3. Current Organic Synthesis. 2011, Dec; 8(6): 777-786.
  1. 4.   Structural modifications of nucleosides in ionic liquids
  2. Kumar, V.; Parmar, V. S.; Malhotra, S. V.
  3. Biochimie. 2010, Sep; 92(9): 1260-1265.
  1. 5.   Synthesis of nucleoside-based antiviral drugs in ionic liquids
  2. Kumar, V.; Malhotra, S. V.
  3. Bioorganic & Medicinal Chemistry Letters. 2008 18(20): 5640-5642.
  1. 6.   Control of human immunodeficiency virus replication by cytotoxic T lymphocytes targeting subdominant epitopes
  2. Frahm, N.; Kiepiela, P.; Adams, S.; Linde, C. H.; Hewitt, H. S.; Sango, K.; Feeney, M. E.; Addo, M. M.; Lichterfeld, M.; Lahaie, M. P.; Pae, E.; Wurcel, A. G.; Roach, T.; St John, M. A.; Altfeld, M.; Marincola, F. M.; Moore, C.; Mallal, S.; Carrington, M.; Heckerman, D.; Allen, T. M.; Mullins, J. I.; Korber, B. T.; Goulder, P. J. R.; Walker, B. D.; Br, er
  3. Nature Immunology. 2006, FEB; 7(2): 173-178.
  1. 7.   Inactivation of retroviruses with preservation of structural integrity by targeting the hydrophobic domain of the viral envelope
  2. Raviv, Y.; Viard, M.; Bess, J. W.; Chertova, E.; Blumenthal, R.
  3. Journal of Virology. 2005, OCT; 79(19): 12394-12400.
  1. 8.   Limiting dilution analysis of interleukin-2 producing helper T-cell frequencies as a tool in allogeneic hematopoietic cell transplantation
  2. Petersen, S. L.; Sidorov, I. A.; Russell, C. A.; Dickmeiss, E.; Vindelov, L. L.
  3. Transplantation. 2005, SEP 15; 80(5): 573-581.
  1. 9.   Resistance of human immunodeficiency virus type 1 to the high-mannose binding agents cyanovirin N and concanavalin A
  2. Witvrouw, M.; Fikkert, V.; Hantson, A.; Pannecouque, C.; O'Keefe, B. R.; McMahon, J.; Stamatatos, L.; De Clercq, E.; Bolmstedt, A.
  3. Journal of Virology. 2005, JUN; 79(12): 7777-7784.
  1. 10.   In search of a novel anti-HIV drug: Multidisciplinary coordination in the discovery of 4-[[4-[[4-[(1E)-2-cyanoethenyl]-2,6dimethylphenyl] amino]-2-pyrimidinyl]amino]-benzonitrile (R278474, rilpivirine)
  2. Janssen, P. A. J.; Lewi, P. J.; Arnold, E.; Daeyaert, F.; de Jonge, M.; Heeres, J.; Koymans, L.; Vinkers, M.; Guillemont, J.; Pasquier, E.; Kukla, M.; Ludovici, D.; Andries, K.; de Bethune, M. P.; Pauwels, R.; Das, K.; Clark, A. D.; Frenkel, Y. V.; Hughes, S. H.; Medaer, B.; De Knaep, F.; Bohets, H.; De Clerck, F.; Lampo, A.; Williams, P.; Stoffels, P.
  3. Journal of Medicinal Chemistry. 2005, MAR 24; 48(6): 1901-1909.
  1. 11.   Synthesis of nonracemic 3-deoxyschweinfurthin B
  2. Neighbors, J. D.; Beutler, J. A.; Wiemer, D. F.
  3. Journal of Organic Chemistry. 2005, FEB 4; 70(3): 925-931.
  1. 12.   Elimination of retroviral infectivity by N-ethylmaleimide with preservation of functional envelope glycoproteins
  2. Morcock, D. R.; Thomas, J. A.; Gagliardi, T. D.; Gorelick, R. J.; Roser, J. D.; Chertova, E. N.; Bess, J. W.; Ott, D. E.; Sattentau, Q. J.; Frank, I.; Pope, M.; Lifson, J. D.; Henderson, L. E.; Crise, B. J.
  3. Journal of Virology. 2005, FEB; 79(3): 1533-1542.
  1. 13.   Coordination mode and oxidation susceptibility of nickel(II) complexes with 2 '-deoxyguanosine 5 '-monophosphate and L-histidine
  2. Jezowska-Bojczuk, M.; Kaczmarek, P.; Bal, W.; Kasprzak, K. S.
  3. Journal of Inorganic Biochemistry. 2004, NOV; 98(11): 1770-1777.
  1. 15.   Completely automated, highly error-tolerant macromolecular structure determination from multidimensional nuclear overhauser enhancement spectra and chemical shift assignments
  2. Kuszewski, J.; Schwieters, C. D.; Garrett, D. S.; Byrd, R. A.; Tjandra, N.; Clore, G. M.
  3. Journal of the American Chemical Society. 2004 126(20): 6258-6273.
  1. 17.   Analysis of a Ty1-less variant of Saccharomyces paradoxus: the gain and loss of Ty1 elements
  2. Moore, S. P.; Liti, G.; Stefanisko, K. M.; Nyswaner, K. M.; Chang, C.; Louis, E. J.; Garfinkel, D.
  3. Yeast. 2004 21(8): 649-660.
  1. 19.   Does the interconversion of polysulfur compounds proceed via hypervalent intermediates? - An ab initio MO study
  2. Steudel, R.; Steudel, Y.; Miaskiewicz, K.
  3. Chemistry-a European Journal. 2001 7(15): 3281-3290.
  1. 20.   Cell sensitivity to transplacental mutagenesis by N-ethyl-N-nitrosourea is greatest during early gestation in the Syrian hamster
  2. Donovan, P. J.; Smith, G. T.
  3. Mutation Research - Fundamental & Molecular Mechanisms of Mutagenesis. 1999 427(1): 47-58.
  1. 22.   Retrovirus-Mediated Transfer of the Herpes Simplex Type I Thymidine Kinase Gene in Alloreactive T Lymphocytes
  2. Contassot, E.; Ferr, C.; Certoux, J. M.; Reynolds, C. W.; Jacob, W.; Chiang, Y. W.; Cahn, J. Y.; Herve, P.; Tiberghien, P.
  3. Human Gene Therapy. 1998 9(1): 73-80.
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