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Waldemar Adam, Michael Lazarus, Alexandra Schmerder, Hans-Ulrich Humpf, Chantu R. Saha-Möller, and Peter Schreier.
Synthesis of optically active α-hydroxy acids by kinetic resolution through lipase-catalyzed enantioselective acetylation.
European Journal of Organic Chemistry, 2013-2018 (1998)
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Maciej Adamczyk, John C. Gebler, and Jonathan Grote.The Utility of Enzymes in Generating Molecular Diversity. Lipase Mediated Amidation of Polybenzyl Esters.Bioorganic & Medicinal Chemistry Letters, 7, 1027-1030 (1997). |
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Makoto Ashiuchi, Kazuya Shimanouchi, Hisaaki
Nakamura, Tohru Kamei, Kenji Soda, Chung Park, Moon-Hee Sung, and Haruo
Misono.
Enzymatic synthesis of high-molecular-mass poly-γ-glutamate and regulation
of its stereochemistry.
Applied and Environmental Microbiology 70, 4249-4255 (2004)
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Per Berglund, Mats Holmquist, and Karl Hult.
Reversed enantiopreferences of Candida rugosa lipase supports different modes of binding enantiomers of a chiral acyl donor.
Journal of Molecular Catalysis B: Enzymatic 5, 283-287 (1998).
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Kirpal A. Bisht, Yuri Y. Svirkin, Lori A. Henderson, Richard Gross, David L. Kaplan, and Graham Swift.
Lipase-Catalysed Ring-opening Polymerization of Trimethylene Carbonate.
Macromolecules 30, 7735-7742 (1997).
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Cecilia Branneby, Peter Carlqvist, Anders Magnusson, Karl Hult, Tore Brinck, and Per Berglund.
Carbon-Carbon Bonds by Hydrolytic Enzymes.
Journal of the American Chemical Society 125, 874-875 (2003)
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Rosario Brieva, Francisca Rebolledo, and Vicente Gotor.
Enzymatic Synthesis of Amides with Two Chiral Centres.
Journal of the Chemical Society, Chemical Communications, 1386-1387 (1990)
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Ying Cai, Shi-Ping Yao, Qi Wu, Xian-Fu Lin.
Michael addition of imidazole with acrylates catalyzed by alkaline protease from Bacillus subtilis in organic media.
Biotechnology Letters 26, 525-528 (2004).
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Nuray Celebi, Nuray Yildiz, Ayhan Demir, and Ayla Calimli.
Enzymatic synthesis of benzoin in supercritical carbon dioxide.
Journal of Supercritical Fluids 41, 386-390 (2007).
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Morten Christensen, Lotte Anderson, Tommy Husum, and Ole Kirk.
Industrial lipase immobilization.
European Journal of Lipid Science and Technology 105, 318-321 (2003)
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Armando Córdova, Tommy Iversen, Karl Hult, and Mats Martinelle
Lipase-catalyzed formation of macrocylces by ring-opening polymerization of -caprolactone
Polymer 39(25), 6519-6524 (1998)
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Hong-Xia Dai, Shi-Ping Yao, and Jian Wang.
Michael addition of pyrimidine with disaccharide acrylates catalysed in organic medium with lipase M from Mucor javanicus.
Biotechnology Letters 28, 1503-1507 (2006).
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Christina Exl, Helmut Hönig, Gerald Renner, Renate Rogl-Kohlenprath, Veronika Seebauer, and Peter Seufer-Wasserthal.
How large are the active sites of the lipases from Candida rugosa and Pseudomonas cepacia?
Tetrahedron: Asymmetry 3(11), 1392-1394 (1992).
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Yakai Feng, Doris Klee, Helmut Keul, and Hartwig
Höcker.
Lipase-catalyzed ring-opening polymerization of morpholine-2,5-dione derivatives: A novel route to the synthesis of poly(ester amide)s.
Macromolecular Chemistry and Physics 201, 2670-2675 (2000)
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Jun Feng, Renxi Zhuo, Feng He, Xuli Wang.
Synthesis of Functional Polycarbonates by Lipase-Catalyzed Ring-Opening Polymerization.
Macromolecular Symposia. 195, 237-240 (2003)
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Yakai Feng, Doris Klee, and Hartwig Höcker
Lipase catalyzed copolymerization of 3(S)-isopropylmorpholine-2, 5-dione
and D, L- lactide.
Molecular Bioscience 4, 587-590 (2004)
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Yakai Feng, Doris Klee, and Hocker Hartwig.
Lipase-Catalyzed Ring-Opening Polymerization of 6(S)-Methyl-morpholine-2,5-dione.
Journal of Polymer Science Part A: Polymer Chemistry 43, 3030-3039 (2005).
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Maria Laura Foresti, and Maria Lujan Ferreira.
Synthesis of Polycaprolactone Using Free/Supported Enzymatic and Non-Enzymatic Catalysis.
Macromolecular Rapid Communication 25, 2025-2028 (2004).
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Andrey Galkin, Ljudmila Kulakova, Hiroaki Yamamoto, Katsuyuki Tanizawa, Hidehiko Tanaka, Nobuyoshi Esaki, and Kenji Soda.
Conversion of α-Keto acids to D-Amino acids by coupling four enzymatic reactions.
Journal of Fermentation and Bioengineering 83(3), 299-300 (1997)
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N. N. Gandhi and K. D. Mukherjee
Papaya (Carica papaya) lipase with some distinct acyl and alkyl specificities as compared with microbial lipases.
Biochemical Society Transactions 28, 977-978 (2000)
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María Jesús García, Francisca Rebolledo and Vicente Gotor.
Chemoenzymatic aminolysis and ammonolysis of β-ketoesters.
Tetrahedron Letters 34, 6141-6142 (1993).
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Vicente Gotor, Rosario Brieva and Francisca Rebolledo.
A simple procedure for the preparation of chiral amides.
Tetrahedron Letters 29, 6973-6974 (1988).
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Richard A. Gross and Bahnu Kalra.
Biodegradable polymers for the environment.
Science 297, 803-806 (2002).
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M.A.P.J. Hacking, M.A. Wegman, J. Rops, F. van Rantwijk, and R.A. Sheldon.
Enantioselective synthesis of amino acid amides via enzymatic ammoniolysis of amino acid esters.
Journal of Molecular Catalysis B: Enzymatic 5, 155-157 (1998).
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Osamu Ihata, Yoshihito Kayaki, and Takao Ikariya.
Synthesis of thermoresponsive polyurethane from 2-methylaziridine and supercritical carbon dioxide.
Angewandte Chemie International Edition 43, 717-719 (2004). |
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S. Iwata, K. Toshima, and S. Matsumura
Enzyme-catalyzed preparation of aliphatic polyesters containing thioester linkages.
Macromolecular Rapid Communications 24, 467-471 (2003)
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Volker Jörres, Helmut Keul, and Hartwig Höcker.
Aminolysis of α-hydroxy acid esters with α-amino acid salts; first step in the synthesis of optically active 2,5-morpholinediones.
Macromolecular Chemistry and Physics 199, 825-833 (1998).
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Jun-ichi Kadokawa, Yasuhiro Iwasaki, and Hideyuki Tagaya.
Ring-opening polymerization of ethylene carbonate catalyzed with ionic liquids: Imidazolium chloroaluminate and chlorostannate melts.
Macromolecular Rapid Communications 23, 757-760 (2002).
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H. Kaga, K. Hirosawa, T. Takahashi, and K. Goto
Lipase catalyzed transesterification of 2-substituted 3-hydroxy esters.
Chirality 10, 693-698 (1998)
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P. Kalaritis, R. W. Regenye, J. J. Partridge and D. L. Coffen.
Kinetic resolution of 2-substituted esters catalyzed by a lipase ex. Pseudomonas fluorescens.
Journal of Organic Chemistry 55, 812-815 (1990)
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A. Kamal, M. Sandbhor, K. Ahmed, S. F. Adil, and A. A. Shaik
Chemoenzymatic synthesis of enantiomerically pure terminal 1,2-diols.
Tetrahedron: Asymmetry 14, 3861-3866 (2003)
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A. Kamal and G. Chouhan
Chemoenzymatic synthesis of enantiomerically pure 1,2-diols employing immobilized lipase in the ionic liquid [bmim]PF6.
Tetrahedron Letters 45, 8801-8805 (2004)
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K. R. Kiran and S. Divakar
Lipase-catalysed polymerization of lactic acid and its film forming properties.
World Journal of Microbiology and Biotechnology 19, 859-865 (2003)
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Tomoya Kitazume, Takanobu Ikeya, and Kouichi Murata.
Synthesis of Optically Active Trifluorinated Compounds: Asymmetric Michael Addition with Hydrolytic Enzymes.
Journal of the Chemical Society, Chemical Communication, 1331-1333 (1986).
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Ajay Kumar and Richard A. Gross.
Candida antarctica lipase B-catalyzed transesterification: New synthetic routes to copolyesters.
Journal of the American Chemical Society 122, 11767-11770 (2000). |
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Ajay Kumar, Ankur S. Kulshrestha, Wei Gao, and Richard A. Gross.
Versatile route to polyol polyesters by lipase catalysis.
Macromolecules 36, 8219-8221 (2003).
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Rajesh Kumar, Rahul Tyagi, Virinder S. Parmar, Lynne A. Samuelson,, Jayant Kumar, and Arthur C. Watterson.
Enzymatic synthesis of multi-component copolymers and their structural characterization.
Molecular Diversity 6, 287-295 (2003).
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I. Lavandera, S. Fernández, M. Ferrero, and V. Gotor
First regioselective enzymatic alkoxycarbonylation of primary amines. Synthesis of novel 5'- and 3'-carbamates of pyrimidine 3',5'-diaminonucleoside derivatives including BVDU analogues.
Journal of Organic Chemistry 69, 1748-1751 (2004)
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Jong-Chan Lee and Morton H. Litt.
Ring-Opening Polymerization of Ethylene Carbonate and Depolymerization of Poly(ethylene oxide-co-ethylene carbonate).
Macromolecules 33, 1618-1627 (2000).
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Yu-Yen Linko, Merja Lämsä, Xiaoyan Wu, Esa Uosukainen, Jukka Seppälä, and Pekka Linko.
Biodegradable products by lipase biocatalysis.
Journal of Biotechnology 66, 41-50 (1998).
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Anders Magnusson, Karl Hult, and Mats Holmquist.
Creation of an enantioselective hydrolase by engineered substrate-assisted catalysis.
Journal of the American Chemical Society 123, 4354-4355 (2001). |
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A. O. Magnusson, J. C. Rotticci-Mulder, A. Santagostino, and K. Hult
Creating space for large secondary alcohols by rational redesign of Candida antarctica lipase B.
ChemBioChem 6, 1051-1056 (2005)
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A. Mahapatro, B. Kalra, A. Kumar, and R. A. Gross
Lipase-catalyzed polycondensations: Effect of substrates and solvent on chain formation, dispersity, and end-group structure.
Biomacromolecules 4, 544-551 (2003)
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A. Mahapatro, A. Kumar, B. Kalra, and R. A. Gross
Solvent-free adipic acid/1,8-octanediol condensation polymerizations catalyzed by Candida antarctica lipase B.
Macromolecules 37, 35-40 (2004)
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R. W. McCabe and A. Taylor
Synthesis of novel polyurethane polyesters using the enzyme Candida antarctica lipase B.
Green Chemistry 6, 151-155 (2004)
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U. Meyer, A. R. A. Palmans, T. Loontjens, and A. Heise
Enzymatic ring-opening polymerization and atom transfer radical polymerization from a bifunctional initiator.
Macromolecules 35, 2873-2875 (2002)
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Peter Monecke, Rudolf Friedemann, Stefan Naumann, and René Csuk
Molecular Modelling Studies on the Catalytic Mechanism of Candida rugosa Lipase.
Journal of Molecular Modelling 4, 395-404 (1998).
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Takehiko Ohtani, Hiroki Nakatsukasa, Makoto Kamezawa, Hojun Tachibana, and Toshinobu Naoshima.
Enantioselectivity of Candida antarctica lipase for some synthetic substrates including aliphatic secondary alcohols.
Journal of Molecular Catalysis B: Enzymatic 53-60, 1998.
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A. J. Ragauskas, C. K. Williams, B. H. Davison, G. Britovsek, J. Cairney, C. A. Eckert, W. J., Jr. Frederick, J. P. Hallett, D. J. Leak, C. L. Liotta, J. R. Mielenz, R. Murphy, R. Templer, and T. Tschaplinski
The path forward for biofuels and biomaterials.
Science 311, 484-489 (2006)
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A. J. Ragauskas, M. Nagy, D. H. Kim, C. A. Eckert, J. P. Hallett, and C. L. Liotta.
From wood to fuels. Integrating biofuels and pulp production.
Industrial Biotechnology 2, 55-65 (2006)
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Hans E. Schoemaker, Daniel Mink, Marcel G. Wubbolts.
Dispelling the Myths--Biocatalysis in Industrial Synthesis.
Science 299, 1694-1697 (2003)
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Yasuyuki Soeda, Kazunobu Toshima, and Shuichi Matsumura.
Enzymatic synthesis and chemical recycling of poly(carbonate-urethane).
Macromolecular Bioscience 4, 721-728 (2004)
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Y. Soeda, K. Toshima, and S. Matsamura
Synthesis and chemical recycling of novel poly(ester-urethane)s using an enzyme.
Macromolecular Bioscience 5, 277-288 (2005)
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Maria Svedendahl, Karl Hult and Per Berglund.
Fast Carbon-Carbon Bond Formation by a Promiscuous Lipase.
Journal of the American Chemical Society 127, 17988-17989 (2005).
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Y. Takahashi, S. Okajima, K. Toshima, and S. Matsumura
Lipase-catalyzed transformation of poly(lactic acid) into cyclic oligomers.
Macromolecular Bioscience 4, 346-353 (2004)
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Oliver Torre, Ignacio Alfonso and Vicente Gotor.
Lipase catalyzed Michael addition of secondary amines to acrylonitrile.
Chemical Communication, 1724-1725 (2004)
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Torres-Gavilán. A., E. Castillo, and A. López-Munguía.
The amidase activity of Candida antarctica lipase B is dependent on specific structural features of the substrate.
Journal of Molecular Catalysis B: Enzymatic 41, 136-140 (2006) |
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B. A. C. van As, B. A. C., P. Thomassen, B. Kalra, R. A. Gross, E. W. Meijer, A. R. A. Palmans, and A. Heise
One-pot chemoenzymatic cascade polymerization under kinetic resolution conditions.
Macromolecules 37, 8973-8977 (2004)
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Fred van Rantwijk, Rute Madeira Lau, and Roger A. Sheldon.
Biocatalytic transformations in ionic liquids.
Trends in Biotechnology 21, 131-138 (2003)
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N. C. Veitch
Horseradish peroxidase: a modern view of a classic enzyme.
Phytochemistry 65, 249-259 (2004)
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Xiao-Mei Wu, Jia-Ying Xin, Wei Sun, and Chun-Gu Xia.
Environmentally Friendly, Efficient Resolution of Racemic Secondary Alcohols by Lipase-Catalyzed EnantioselectiveTransesterification in Ionic Liquids in the Presence of Organic Bases.
Chemistry and Biodiversity 4, 183-188 (2007). |
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