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0001815264
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From Qinghao, marvelous herb of antiquity, to the antimalarial trioxane Qinghaosu- and some remarkable new chemistry
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Haynes, R.K.1
Vonwiller, S.C.2
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0001123285
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Antimalarial activity of artemisinin (Qinghaosu) and related trioxanes: Mechanism(s) of action
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Cumming, J.N.1
Ploypradith, P.2
Posner, G.H.3
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0033165891
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Recent developments on the chemistry and biological activity of artemisinin and related antimalarials - An update
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Heterocycles
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Bhattacharya, A.K.1
Sharma, R.P.2
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0036009409
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From mechanistic studies on artemisinin derivatives to new modular animalarial drugs
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Robert, A.1
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Meunier, B.3
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0035804312
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Synthesis, antimalarial acitivity, biomimetic iron(II) chemistry, and in vivo metabolism of novel, potent C-10-phenoxy derivatives of dihydroartemisinin
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(e) O'Neill, P. M.; Miller, A.; Bishop, P. D.; Hindley, S.; Maggs, J. L.; Ward, S. A.; Roberts, S. M.; Scheinmann, F.; Stachulski, A. V.; Posner, G. H.; Park, B. K. Synthesis, Antimalarial Acitivity, Biomimetic Iron(II) Chemistry, and in Vivo Metabolism of Novel, Potent C-10-Phenoxy Derivatives of Dihydroartemisinin. J. Med. Chem. 2001, 44, 58-68.
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Ward, S.A.6
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Scheinmann, F.8
Stachulski, A.V.9
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Park, B.K.11
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Acid-catalyzed Michel additions to artemisitene
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Ma, J.1
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0034692160
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Synthesis and antimalarial activity of artemisinin derivatives containing an amino group
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(g) Li, Y.; Zhu, Y.-M.; Jiang, H.-J.; Pan, J.-P.; Wu, G.-S.; Wu, J.-M.; Shi, Y.-L.; Yang, J.-D.; Wu, B.-A. Synthesis and Antimalarial Activity of Artemisinin Derivatives Containing an Amino Group. J. Med. Chem. 2000, 43, 1635-1640.
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Li, Y.1
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Antimalarial simplified 3-aryltrioxanes: Synthesis and preclinical efficacy/toxicity testing in rodents
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(h) Posner, G. H.; Jeon, H. B.; Parker, M. H.; Krasavin, M.; Paik, I.-H.; Shapiro, T. A. Antimalarial Simplified 3-Aryltrioxanes: Synthesis and Preclinical Efficacy/Toxicity Testing in Rodents. J. Med. Chem. 2001, 44, 3054-3058.
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(i) McCullough, K. J.; Nojima, M. Recent Advances in the Chemistry of Cyclic Peroxides. Curr. Org. Chem. 2001, 5, 601-636.
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McCullough, K.J.1
Nojima, M.2
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Mechanism-based design of parasite-targeted artemisinin derivatives: Synthesis and antimalarial activity of new diamine containing analogues
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(j) Hindley, S.; Ward, S. A.; Storr, R. C.; Searle, N. L.; Bray, P. G.; Park, J. D.; O'Neill, P. M. Mechanism-Based Design of Parasite-Targeted Artemisinin Derivatives: Synthesis and Antimalarial Activity of New Diamine Containing Analogues. J. Med. Chem. 2002, 45, 1052-1063.
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Park, J.D.6
O'Neill, P.M.7
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0037122747
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Structure-activity relationships of the antimalarial agent artemisinin. 6. The development of predictive in vitro potency models using CoMFA and HQSAR methodologies
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(k) Avery, M. A.; Alvim-Gaston, M.; Rodrigues, C. R.; Barreiro, E. J.; Cohen, F. E.; Sabnis, Y. A.; Woolfrey, J. R. Structure-Activity Relationships of the Antimalarial Agent Artemisinin. 6. The Development of Predictive in Vitro Potency Models Using CoMFA and HQSAR Methodologies. J. Med. Chem. 2002, 45, 292-303.
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(l) Korshin, E. E.; Hoos, R.; Szpilman, A. M.; Konstantinovski, L.; Posner, G. H.; Bachi, M. D. Tetrahedron 2002, 58, 2449-2469.
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Konstantinovski, L.4
Posner, G.H.5
Bachi, M.D.6
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0033591173
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Synthesis, crystal structure and anti-malarial activity of novel spiro-1,2,4,5-tetraoxacycloalkanes
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Tsuchiya, K.; Hamada, Y.; Masuyama, A.; Nojima, M.; McCullough, K. J.; Kim, H.-S.; Wataya, Y. Synthesis, Crystal Structure and Anti-Malarial Activity of Novel Spiro-1,2,4,5-Tetraoxacycloalkanes. Tetrahedron Lett. 1999, 40, 4077-4080.
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Tsuchiya, K.1
Hamada, Y.2
Masuyama, A.3
Nojima, M.4
McCullough, K.J.5
Kim, H.-S.6
Wataya, Y.7
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0035811454
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Synthesis and antimalarial activity of 1,2,4,5-tetraoxacycloalkanes
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Kim, H.-S.; Nagai, Y.; Ono, K.; Begum, K.; Wataya, Y.; Hamada, Y.; Tsuchiya, K.; Masuyama, A.; Nojima, M.; McCullough, K. J. Synthesis and Antimalarial Activity of 1,2,4,5-Tetraoxacycloalkanes. J. Med. Chem. 2001, 44, 2357-2361
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Tsuchiya, K.7
Masuyama, A.8
Nojima, M.9
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Synthesis, crystal structure and antimalarial activity of novel 1,2,5,6-tetraoxacycloalkanes from 2,3-dihydroperoxy-2-phenylnorbornane
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A part of this work was published in preliminary form. McCullough, K. J.; Nonami, Y.; Masuyama, A.; Nojima, M.; Kim, H.-S.; Wataya, Y. Synthesis, Crystal Structure and Antimalarial Activity of Novel 1,2,5,6-Tetraoxacycloalkanes from 2,3-Dihydroperoxy-2-phenylnorbornane. Tetrahedron Lett. 1999, 40, 9151-9155.
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Kim, H.-S.5
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The photo-oxygenation of olefins and the role of zwitterionic peroxides
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Synthetic methods for unsymmetrically-substituted 1,2,4,5-tetroxanes and of 1,2,4,5,7-pentoxocanes
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Kim, H.-S.; Tsuchuya, K.; Shibata, Y.; Wataya, Y.; Ushigoe, Y.; Masuyama, A.; Nojima, M.; McCullough, K. J. Synthetic Methods for Unsymmetrically-Substituted 1,2,4,5-Tetroxanes and of 1,2,4,5,7-Pentoxocanes. J. Chem. Soc., Perkin Trans. 1 1999, 1867.
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Masuyama, A.6
Nojima, M.7
McCullough, K.J.8
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Halonium ion-mediated reaction of unsaturated hydroperoxy acetals. Competition between the formation of cyclic peroxides and the migration of the methoxy (or hydroxy) group
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(a) Tokuyasu, T.; Masuyama, A.; Nojima, M.; McCullough, K. J. Halonium Ion-Mediated Reaction of Unsaturated Hydroperoxy Acetals. Competition between the Formation of Cyclic Peroxides and the Migration of the Methoxy (or Hydroxy) Group. J. Org. Chem. 2000, 65, 1069-1075.
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Synthesis, crystal structure and antimalarial activity of functionalized spiro-1,2,4,5-tetraoxacycloalkanes from unsaturated hydroperoxy acetals
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(b) Nonami, Y.; Tokuyasu, T.; Masuyama, A.; Nojima, M.; McCullough, K. J.; Kim, H.-S.; Wataya, Y. Synthesis, Crystal Structure and Antimalarial Activity of Functionalized Spiro-1,2,4,5-Tetraoxacycloalkanes from Unsaturated Hydroperoxy Acetals. Tetrahedron Lett. 1999, 40, 4681-4684.
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Kim, H.-S.6
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Oxygen effect in the iodo lactonization of unsaturated carboxylic acids leading to 7- to 12-membered ring lactones
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Cycloadditions between carbonyl oxides and dicarbonyl compounds: Isolation and characterization of novel polycyclic 1,2,4,6-tetroxepane derivatives
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McCullough, K. J.; Sugimoto, T.; Tanaka, T.; Kusabayashi, S.; Nojima, M. Cycloadditions between Carbonyl Oxides and Dicarbonyl Compounds: Isolation and Characterization of Novel Polycyclic 1,2,4,6-Tetroxepane Derivatives. J. Chem. Soc., Perkin Trans. 1 1994, 643-651.
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