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Original Articles

Synthesis and Biological Evaluation of Pyrimidine and Purine α-L-2′,3′-Dideoxy Nucleosides

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Pages 1679-1693 | Received 22 Nov 1993, Accepted 24 Jan 1994, Published online: 24 Sep 2006

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Read on this site (3)

Indrajit Giri, PascalJ. Bolon & ChungK. Chu. (1996) Synthesis of 2′-C-α-Methyl-2′,3′-dideoxynucleosides. Nucleosides and Nucleotides 15:1-3, pages 183-204.
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Tai-Shun Lin, Mei-Zhen Luo, Ju-Liang Zhu, Mao-Chin Liu, Yong-Lian Zhu, GingerE. Dutschman & Yung-Chi Cheng. (1995) Synthesis of a Series of Purine 2′,3′-Dideoxy-L-Nucleoside Analogues as Potential Antiviral Agents. Nucleosides and Nucleotides 14:8, pages 1759-1783.
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Articles from other publishers (17)

Wataru Muramatsu. (2016) Recent Advances in the Regioselective Functionalization of Carbohydrates Using Non-Enzymatic Catalysts. Trends in Glycoscience and Glycotechnology 28:159, pages J1-J11.
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Wataru Muramatsu. (2016) Recent Advances in the Regioselective Functionalization of Carbohydrates Using Non-Enzymatic Catalysts. Trends in Glycoscience and Glycotechnology 28:159, pages E1-E11.
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I‐Hon Chen, Kevin G. M. Kou, Diane N. Le, Colin M. Rathbun & Vy M. Dong. (2014) Recognition and Site‐Selective Transformation of Monosaccharides by Using Copper(II) Catalysis. Chemistry – A European Journal 20:17, pages 5013-5018.
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Wataru Muramatsu & Yuki Takemoto. (2013) Selectivity Switch in the Catalytic Functionalization of Nonprotected Carbohydrates: Selective Synthesis in the Presence of Anomeric and Structurally Similar Carbohydrates under Mild Conditions. The Journal of Organic Chemistry 78:6, pages 2336-2345.
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Miguel Ferrero, Susana Fernández & Vicente Gotor. 2013. Chemical Synthesis of Nucleoside Analogues. Chemical Synthesis of Nucleoside Analogues 1 48 .
Evelina Colacino, Antonella Converso, Angelo Liguori, Anna Napoli, Carlo Siciliano & Giovanni Sindona. (2001) Simple and efficient routes for the preparation of isoxazolidinyl nucleosides containing cytosine and 5-methyl-cytosine as new potential anti-HIV drugs. Tetrahedron 57:40, pages 8551-8557.
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Agnieszka Bzowska, Ewa Kulikowska & David Shugar. (2000) Purine nucleoside phosphorylases: properties, functions, and clinical aspects. Pharmacology & Therapeutics 88:3, pages 349-425.
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Georges Maury. (2016) The Enantioselectivity of Enzymes Involved in Current Antiviral Therapy Using Nucleoside Analogues: A New Strategy?. Antiviral Chemistry and Chemotherapy 11:3, pages 165-189.
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Miguel Ferrero & Vicente Goto. 2000. Biocatalysis. Biocatalysis 59 90 .
Whi-Gun Chae. (1999) Facile synthesis of 2′,5′-dideoxy-, 2′,3′-dideoxy- and 3′-deoxy-1,N 6-ethenoadenosine nucleosides. Biotechnology and Bioprocess Engineering 4:1, pages 17-20.
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Jean-Christophe G. Graciet & Raymond F. Schinazi. 1999. 1 68 .
Manijeh Shafiee, Jean-François Griffon, Gilles Gosselin, Alessandra Cambi, Silvia Vincenzetti, Alberto Vita, Staffan Eriksson, Jean-Louis Imbach & Georges Maury. (1998) A comparison of the enantioselectivities of human deoxycytidine kinase and human cytidine deaminase∗. Biochemical Pharmacology 56:9, pages 1237-1242.
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Whi-Gun Chae, Thomas C.K. Chan & Ching-jer Chang. (1998) Facile synthesis of 5′-deoxy- and 2′,5′-dideoxy-6-thiopurine nucleosides by nucleoside phosphorylases. Tetrahedron 54:30, pages 8661-8670.
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L. A. Agrofoglio & S. R. ChallandL. A. Agrofoglio & S. R. Challand. 1998. Acyclic, Carbocyclic and L-Nucleosides. Acyclic, Carbocyclic and L-Nucleosides 285 322 .
Nafizal Hossain, Jef Rozenski, Erik De Clercq & Piet Herdewijn. (1996) Synthesis and antiviral activity of acyclic analogues of 1,5-anhydrohexitol nucleosides using Mitsunobu reaction. Tetrahedron 52:43, pages 13655-13670.
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V NairT S Jahnke. (1995) Antiviral activities of isometric dideoxynucleosides of D- and L-related stereochemistry. Antimicrobial Agents and Chemotherapy 39:5, pages 1017-1029.
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N. A. VAN DRAANEN & G. W. KOSZALKA. (2010) ChemInform Abstract: Synthesis and Biological Evaluation of Pyrimidine and Purine α‐L‐ 2′,3′‐Dideoxy Nucleosides.. ChemInform 26:2.
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