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Original Articles

ORGANIC PHOSPHORUS COMPOUNDS 761 SYNTHESIS AND PROPERTIES OF PHOSPHINOTHRICIN DERIVATIVES

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Pages 1-19 | Received 02 May 1983, Published online: 19 Dec 2006

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Poola Sreelakshmi, Sarva Santhisudha, Gajjala Raghavendra Reddy, Yakkate Subbarao, Kotha Peddanna, Chippada Apparao & Cirandur Suresh Reddy. (2018) Nano-Cuo–Au-catalyzed solvent-free synthesis of α-aminophosphonates and evaluation of their antioxidant and α-glucosidase enzyme inhibition activities. Synthetic Communications 48:10, pages 1148-1163.
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Babak Kaboudin & Abbas Rahmani. (2004) CONVENIENT SYNTHESIS OF 1-AMINOALKYLPHOSPHONATES UNDER SOLVENT-FREE CONDITIONS. Organic Preparations and Procedures International 36:1, pages 82-86.
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Henryk Krawczyk. (1996) A SIMPLE SYNTHESIS OF 1-SUBSTITUTED 2-AMINOETHYLPHENYLPHOSPHINIC ACIDS. Phosphorus, Sulfur, and Silicon and the Related Elements 118:1, pages 195-204.
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ValeryV. Ragulin, NadezhdaR. Kurdyumova & EugeneN. Tsvetkov. (1994) PHOSPHORUS CONTAINING AMINOCARBOXYLIC ACIDS. COMMUNICATION V.1 METHOD FOR SYNTHESIS OF PHOSPHINIC ACIDS. Phosphorus, Sulfur, and Silicon and the Related Elements 88:1-4, pages 271-274.
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Pawel Kafarski & Barbara Lejczak. (1991) BIOLOGICAL ACTIVITY OF AMINOPHOSPHONIC ACIDS. Phosphorus, Sulfur, and Silicon and the Related Elements 63:1-2, pages 193-215.
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Mark Nowakowski, Max Tishler & ArthurM. Doweyko. (1989) THE SYNTHESIS AND BIOLOGICAL ACTIVITY OF S-ALKYL PHOSPHOHOMOCYSTEINE SULFOXIMIDES. Phosphorus, Sulfur, and Silicon and the Related Elements 45:3-4, pages 183-188.
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PeterJ. Diel, JohnG. Dingwall & Ludwig Maier. (1988) ORGANISCHE PHOSPHORVERBINDUNGEN 86.1 HERSTELLUNG UND EIGENSCHAFTEN VON ω-PHOSPHINYL-α-AMINOALKYL-CARBONSÄUREN. Phosphorus and Sulfur and the Related Elements 39:3-4, pages 253-256.
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Y. Vo-quang, S. Pique, D. Carniato, L. Vo-quang & F. Le Goffic. (1988) A New and Convenient Synthesis of Alkyl 1-Amino-2 Chloroethylphosphinates. Synthetic Communications 18:10, pages 1091-1095.
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E. Elia Aboujaoude, N. Collignon, P. Savignac & J. Bensoam. (1987) SYNTHESE D'ACIDES ω-AMINO-ω-CARBOXY-ALKYLPHOSPHONIQUES. Phosphorus and Sulfur and the Related Elements 34:3-4, pages 93-104.
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PeterJ. Diel & Ludwig Maier. (1987) ORGANISCHE PHOSPHORVERBINDUNGEN 791 HERSTELLUNG UND EIGENSCHAFTEN VON α-AMINO-ω-CARBOXYALKYLPHOSPHON-UND-PHOSPHINSÄUREN. Phosphorus and Sulfur and the Related Elements 29:2-4, pages 201-209.
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Ludwig Maier & G. Rist. (1983) ORGANIC PHOSPHORUS COMPOUNDS 771 SYNTHESIS AND PROPERTIES OF PHOSPHINOTHRICIN HOMOLOGS AND ANALOGS. Phosphorus and Sulfur and the Related Elements 17:1, pages 21-28.
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Haisheng Zhou, Lijun Meng, Xinjian Yin, Yayun Liu, Jianping Wu, Gang Xu, Mianbin Wu & Lirong Yang. (2020) Biocatalytic asymmetric synthesis of l-phosphinothricin using a one-pot three enzyme system and a continuous substrate fed-batch strategy. Applied Catalysis A: General 589, pages 117239.
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Sherry Mowbray, Muthu Kathiravan, Abhishek Pandey & Luke Odell. (2014) Inhibition of Glutamine Synthetase: A Potential Drug Target in Mycobacterium tuberculosis. Molecules 19:9, pages 13161-13176.
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Rahimeh Hajinasiri, Zinatossadat Hossaini & Faramarz Rostami‐Charati. (2011) Efficient synthesis of α‐aminophosphonates via one‐pot reactions of aldehydes, amines, and phosphates in ionic liquid. Heteroatom Chemistry 22:5, pages 625-629.
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Sandeep M. Agawane & Jayashree M. Nagarkar. (2011) Nano ceria catalyzed synthesis of α-aminophosphonates under ultrasonication. Tetrahedron Letters 52:27, pages 3499-3504.
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Clemens Lamberth. (2010) Amino acid chemistry in crop protection. Tetrahedron 66:36, pages 7239-7256.
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Sara Sobhani & Zahra Tashrifi. (2010) Synthesis of α-functionalized phosphonates from α-hydroxyphosphonates. Tetrahedron 66:7, pages 1429-1439.
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Lokman H. Choudhury, Tasneem Parvin & Abu T. Khan. (2009) Recent advances in the application of bromodimethylsulfonium bromide (BDMS) in organic synthesis. Tetrahedron 65:46, pages 9513-9526.
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Babak Kaboudin & Mina Sorbiun. (2007) β-Cyclodextrin as an efficient catalyst for the one-pot synthesis of 1-aminophosphonic esters in water. Tetrahedron Letters 48:51, pages 9015-9017.
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Bernd SchäferBernd Schäfer. 2006. Naturstoffe der chemischen Industrie. Naturstoffe der chemischen Industrie 467 541 .
Babak Kaboudin & Khavar Moradi. (2005) A simple and convenient procedure for the synthesis of 1-aminophosphonates from aromatic aldehydes. Tetrahedron Letters 46:17, pages 2989-2991.
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Sucheta Kudrimoti & Vittal Rao Bommena. (2005) (Bromodimethyl)sulfonium bromide: an inexpensive reagent for the solvent-free, one-pot synthesis of α-aminophosphonates. Tetrahedron Letters 46:7, pages 1209-1210.
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Hans‐Peter Fischer. 2003. Organic Synthesis Set. Organic Synthesis Set 261 276 .
Babak Kaboudin. (2003) A convenient synthesis of 1-aminophosphonates from 1-hydroxyphosphonates. Tetrahedron Letters 44:5, pages 1051-1053.
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Ayhan S. Demir, Cihangir Tanyeli, Özge Şeşenoǧlu, Şerafettin Demiç & Özden Özel Evin. (1996) A simple synthesis of 1-aminophosphonic acids from 1-hydroxyiminophosphonates with NaBH4 in the presence of transition metal compounds. Tetrahedron Letters 37:3, pages 407-410.
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Hans‐Peter Fischer. 1995. Organic Synthesis Highlights II. Organic Synthesis Highlights II 261 276 .
I. L. Odinets, O. I. Artyushin, E. A. Antonov, P. V. Petrovskii, B. I. Freger, T. A. Mastryukova & M. I. Kabachnik. (1994) Investigation of the phosphinyl analog of ?-ketoglutaric acid. Russian Chemical Bulletin 43:1, pages 121-124.
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Gerhard Hoerlein. 1994. Reviews of Environmental Contamination and Toxicology. Reviews of Environmental Contamination and Toxicology 73 145 .
Dorota Miliszkiewicz, Piotr Wieczorek, Barbara Lejczak, Ewa Kowalik & Pawel Kafarski. (1992) Herbicidal activity of phosphonic and phosphinic acid analogues of glutamic and aspartic acids. Pesticide Science 34:4, pages 349-354.
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Gerardo M. Ramos Tombo & Daniel Belluš. (2003) Chirality and Crop Protection. Angewandte Chemie International Edition in English 30:10, pages 1193-1215.
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Gerardo M. Ramos Tombo & Daniel Belluš. (1991) Chiralität und Pflanzenschutz. Angewandte Chemie 103:10, pages 1219-1241.
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Toshiyasu Sakakura, Xin-Yan Huang & Masato Tanaka. (1991) Hydroformylation–Amidocarbonylation of Methylvinylphosphinate. Application to Synthesis of Glufosinate. Bulletin of the Chemical Society of Japan 64:5, pages 1707-1709.
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Charles R. Johnson, Brian R. Boettcher, Richard E. Cherpeck & Mark G. Dolson. (1990) Design and synthesis of potent inhibitors of glutamine synthetase. Bioorganic Chemistry 18:2, pages 154-159.
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Antonio Togni & Stephen D. Pastor. (1989) Enantioselective synthesis of β-hydroxy-α-aminophosphonic acid precursors. Tetrahedron Letters 30:9, pages 1071-1072.
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Christine M. McGowan, Lothar Willms, S. W. Ayer, B. G. Isaac, D. M. Krupa, K. E. Crosby, L. J. Letendre, Richard J. Stonard, J. David Phillipson, Richard G. Powell, M. G. Nair & A. R. Putam. (1989) Extended summaries pesticides group symposium natural products as a source for new agricultural chemicals. Pesticide Science 27:2, pages 217-231.
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E.W Logusch. (1986) Facile synthesis of D,L-phosphinothricin from methyl 4-bromo-2-phthalimidobutyrate. Tetrahedron Letters 27:49, pages 5935-5938.
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L. MAIER & P. J. LEA. (2016) ChemInform Abstract: Organic Phosphorus Compounds. Part 76. Synthesis and Properties of Phosphinothricin Derivatives.. Chemischer Informationsdienst 16:45.
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Graham E. Fagg & Thomas H. Lanthorn. (1985) Cl−/Ca2+-dependent L-glutamate binding sites do not correspond to 2-amino-4-phosphonobutanoate-sensitive excitatory amino acid receptors. British Journal of Pharmacology 86:3, pages 743-751.
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