“Conversion of Glycosyl Fluorides into C-Glycosides Using Organoaluminum Regeants. Sterospecific Alkylation at C-6 of a Pyranose Sugar,” Gary H. Posner, et al., Tetrahedron Letters, vol. 26, No. 15 (1985), pp. 1823-1826. |
“A Convenient, One-Step, High Yield Replacement of an Anomeric Hydroxyl Group by a Fluorine Atom Using DAST. Preparation of Glycosyl Fluorides,” Gary H. Posner, et. al. Tetrahedron Letters, vol. 26, No. 1 (1985), pp. 5-8. |
“Synthesis and Antimalarial Activity of Heteroatom-Containing Bicyclic Endoperoxides,” Gary H. Posner, et al., Tetrahedron, vol. 53, No. 1 (1997), pp. 37-50. |
“Synthesis and Antimalarial Activities of 12β-Allyldexoartemisinin and Its Derivatives,” Yu Ming Pu, et. al. J. Med. Chem., vol. 38 (1995), pp. 613-616. |
“Synthesis and Cytotoxicity of Novel Artemisinin Analogs,” Mankil Jung, Bioorganic and Medicinal Chemistry Letters, vol. 7, No. 8 (1997), pp. 1091-1094. |
Trioxane Dimers Have Potent Antimalarial, Antiproliferative and Antitumor Activities in Vitro, Gary H. Posner, et. al. Bioorganic & Medicinal Chemistry, vol. 5, No. 7, (1997), pp. 1257-1265. |
“A Concise and Steroselective Synthesis of (+)-12-n-Butyldeoxoartemisinin,” Mankil Jung. et. al., Synlett, (1990), pp. 743-744. |
Phosphonate Analogs of Carbocyclic Nucleotides, ′Robert D. Elliott, et. al., J. Med. Chem., vol. 37, (1994), pp. 739-744. |
“Carbocyclic Arabinofuranosyladenine (Cyclaradine): Efficacy Against Genital Herpes in Guinea Pigs,” Robert Vince, et. al., Science, vol. 221 (1983), pp. 1405-1406. |
“An Unusual Acid-Catalyzed Rearrangement of 1,2,4-Trioxanes,” Yu-Ming Pu et. al., Heterocycles, vol. 36, No. 9, (1993), pp. 2099-2107. |
“Efficient Preparation of Novel Qinghaosu (Artemisinin) Derivatives: Conversation of Qinghaosu (Artemisinin) Acid into Deoxoqinghaosu Derivatives and 5-Carba-4-deoxoartesunic Acid,” Richard K. Haynes, et. al., Synlett, (1992), pp. 481-483. |
“Artemisinin and the Antimalarial Endoperoxides: from Herbal Remedy to Targeted Chemotherapy,” S.R. Meshnick, et. al., Microbiological Reviews, vol. 60, No. 2, (1996), pp. 301-315. |
“Some Aspects of the Chemistry and Biological Activity of Artemisinin and Related Antimalarials,” Syed S. Zaman, et. al., Heterocycles, vol. 32, No. 8, (1991), pp. 1593-1638. |
Artemisinin, Transactions of the Royal Society of Tropical Medicine and Hygiene, vol. 88:1, (Jun. 1994), pp. S1/1-S1/65. |
“Extraordinarily Potent Antimalarial Compounds: New, Structurally, Simple, Easily Synthesized, Tricyclic, 1,2,4-Trioxanes,” Gary H. Posner, et. al., J. Med. Chem., vol. 35, No. 13, (1992), pp. 2459-2467. |
“Artemisinin (Qinghaosu): A New Type of Antimalarial Drug,” Anthony r. Butler, et. al., (1992), pp. 85-90. |
“Cytotoxicity of Artemisinin-Related Endoperoxides to Ehrlich Ascites Tumor Cells,” Herman J. Woerdenbag, et. al., Journey of Natural Products, vol. 56, No. 6, (1993), pp. 849-856. |
“Qinghaosu (Artemisinin): An Antimalarial Drug from China,” Daniel L. Klayman. |
“Synthesis of a Novel Ring Contracted Artemisinin Derivative,” B. Venugopalan, et. al., Bioorganic & Medicinal Chemistry Letters, vol. 4, No. 5 (1994), pp. 751-752. |
“A Concise Synthesis of Novel Aromatic Analogs of Artemisinin,” Jung, et. al., Heterocycles, vol. 45, No. 6, pp. 1055-1058 (Jun. 1997). |