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  1. 1.   Investigation of Griffithsin's Interactions with Human Cells Confirms Its Outstanding Safety and Efficacy Profile as a Microbicide Candidate
  2. Kouokam, J. C.; Huskens, D.; Schols, D.; Johannemann, A.; Riedell, S. K.; Walter, W.; Walker, J. M.; Matoba, N.; O'Keefe, B. R.; Palmer, K. E.
  3. Plos One. 2011, Aug; 6(8):
  1. 2.   Design and Synthesis of Isonucleosides Constructed on a 2-Oxa-6-thiabicyclo[3.2.0]heptane Scaffold
  2. Yoshimura, Y.; Asami, K.; Imamichi, T.; Okuda, T.; Shiraki, K.; Takahata, H.
  3. Journal of Organic Chemistry. 2010, Jun; 75(12): 4161-4171.
  1. 3.   Nucleosides with self-complementary hydrogen-bonding motifs: Synthesis and base-pairing studies of two nucleosides containing the imidazo 4,5-d pyridazine ring system
  2. Ujjinamatada, R. K.; Paulman, R. L.; Ptak, R. G.; Hosmane, R. S.
  3. Bioorganic & Medicinal Chemistry. 2006, Sep; 14(18): 6359-6367.
  1. 4.   Recombinant production of anti-HIV protein, griffithsin, by auto-induction in a fermentor culture
  2. Giomarelli, B.; Schumacher, K. M.; Taylor, T. E.; Sowder, R. C.; Hartley, J. L.; McMahon, J. B.; Mori, T.
  3. Protein Expression and Purification. 2006, MAY; 47(1): 194-202.
  1. 5.   Antisense treatments for biothreat agents
  2. Warfield, K. L.; Panchal, R. G.; Aman, M. J.; Bavari, S.
  3. Current Opinion in Molecular Therapeutics. 2006, Apr; 8(2): 93-103.
  1. 6.   Isolation and characterization of novel cyclotides from Viola hederaceae - Solution structure and anti-HIV activity of vhl-1, a leaf-specific expressed cyclotide
  2. Chen, B.; Colgrave, M. L.; Daly, N. L.; Rosengren, K. J.; Gustafson, K. R.; Craik, D. J.
  3. Journal of Biological Chemistry. 2005, JUN 10; 280(23): 22395-22405.
  1. 7.   Discovery of small-molecule human immunodeficiency virus type 1 entry inhibitors that target the gp120-binding domain of CD4
  2. Yang, Q. E.; Stephen, A. G.; Adelsberger, J. W.; Roberts, P. E.; Zhu, W. M.; Currens, M. J.; Feng, Y. X.; Crise, B. J.; Gorelick, R. J.; Rein, A. R.; Fisher, R. J.; Shoemaker, R. H.; Sei, S.
  3. Journal of Virology. 2005, MAY; 79(10): 6122-6133.
  1. 8.   Structure of circulin B and implications for antimicrobial activity of the cyclotides
  2. Koltay, A.; Daly, N. L.; Gustafson, K. R.; Craik, D. J.
  3. International Journal of Peptide Research and Therapeutics. 2005, MAR; 11(1): 99-106.
  1. 9.   The role of the cyclic peptide backbone in the anti-HIV activity of the cyclotide kalata B1
  2. Daly, N. L.; Gustafson, K. R.; Craik, D. J.
  3. Febs Letters. 2004, SEP 10; 574(1-3): 69-72.
  1. 10.   Isolation and characterization of anti-HIV peptides from Dorstenia contrajerva and Treculia obovoidea
  2. Bokesch, H. R.; Charan, R. D.; Meragelman, K. M.; Beutler, J. A.; Gardella, R.; O'Keefe, B. R.; McKee, T. C.; McMahon, J. B.
  3. Febs Letters. 2004 567(2-3): 287-290.
  1. 11.   Shikonin, a component of Chinese herbal medicine, inhibits chemokine receptor function and suppresses human immunodeficiency virus type 1
  2. Chen, X.; Yang, L.; Zhang, N.; Turpin, J. A.; Buckheit, R. W.; Osterling, C.; Oppenheim, J. J.; Howard, O. M. Z.
  3. Antimicrobial Agents and Chemotherapy. 2003 47(9): 2810-2816.
  1. 12.   Cyanovirin-N: a sugar-binding antiviral protein with a new twist
  2. Botos, I.; Wlodawer, A.
  3. Cellular and Molecular Life Sciences. 2003 60(2): 277-287.
  1. 13.   Solution structure by NMR of circulin A: A macrocyclic knotted peptide having anti-HIV activity
  2. Daly, N. L.; Koltay, A.; Gustafson, K. R.; Boyd, M. R.; Casas-Finet, J. R.; Craik, D. J.
  3. Journal of Molecular Biology. 1999 285(1): 333-345.
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