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Original Articles

Synthesis of Novel Heterobranched β-Cyclodextrins from 42-O-β-D-Galactosyl- Maltose and β-Cyclodextrin by the Reverse Action of Pullulanase, and Isolation and Characterization of the Products

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Pages 1223-1229 | Received 16 Dec 1999, Accepted 04 Feb 2000, Published online: 22 May 2014

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Yuki NISHI & Toshiko TANIMOTO. (2009) Preparation and Characterization of Branched β-Cyclodextrins Having α-L-Fucopyranose and a Study of Their Functions. Bioscience, Biotechnology, and Biochemistry 73:3, pages 562-569.
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Akiko Ikuta, Toshiko Tanimoto & Kyoko Koizumi. (2003) Efficient Chemical Syntheses of Branched Cyclomalto‐Oligosaccharides Using the Trichloroacetimidate Method. Journal of Carbohydrate Chemistry 22:5, pages 297-308.
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Articles from other publishers (9)

Kandai Ishikura, Kazunori Yanagihara & Hiroki Takagi. (2021) Synthesis of branched cyclodextrins using activated carbon as a catalyst. Journal of Inclusion Phenomena and Macrocyclic Chemistry 101:1-2, pages 91-99.
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Wei Xia, Kang Zhang, Lingqia Su & Jing Wu. (2021) Microbial starch debranching enzymes: Developments and applications. Biotechnology Advances 50, pages 107786.
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Ana Chen, Yang Sun, Wei Zhang, Feng Peng, Chunjun Zhan, Meng Liu, Yankun Yang & Zhonghu Bai. (2016) Downsizing a pullulanase to a small molecule with improved soluble expression and secretion efficiency in Escherichia coli. Microbial Cell Factories 15:1.
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Madoka Kimura, Yuki Masui, Yuko Shirai, Chie Honda, Kenta Moriwaki, Taku Imai, Uichiro Takagi, Takaaki Kiryu, Taro Kiso, Hiromi Murakami, Hirofumi Nakano, Sumio Kitahata, Eiji Miyoshi & Toshiko Tanimoto. (2013) Preparation of branched cyclomaltoheptaose with 3-O-α-l-fucopyranosyl-α-d-mannopyranose and changes in fucosylation of HCT116 cells treated with the fucose-modified cyclomaltoheptaose. Carbohydrate Research 374, pages 49-58.
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Takatoshi Nakagawa, Yuki Nishi, Akihiro Kondo, Yuko Shirai, Chie Honda, Michio Asahi & Toshiko Tanimoto. (2011) Preparation, characterization, and biological evaluation of 6I,6IV-di-O-[α-l-fucopyranosyl-(1→6)-2-acetamido-2-deoxy-β-d-glucopyranosyl]-cyclomaltoheptaose and 6-O-[α-l-fucopyranosyl-(1→6)-2-acetamido-2-deoxy-β-d-glucopyranosyl]-cyclomaltoheptaose. Carbohydrate Research 346:13, pages 1792-1800.
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Hee-Kwon Kang, Hyunju Cha, Tae-Joo Yang, Jong-Tae Park, Seungjae Lee, Young-Wan Kim, Joong-Hyuck Auh, Yasuyo Okada, Jung-Wan Kim, Jaeho Cha, Chung Ho Kim & Kwan-Hwa Park. (2008) Enzymatic synthesis of dimaltosyl-β-cyclodextrin via a transglycosylation reaction using TreX, a Sulfolobus solfataricus P2 debranching enzyme. Biochemical and Biophysical Research Communications 366:1, pages 98-103.
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Yuki Nishi, Naoe Yamane & Toshiko Tanimoto. (2007) Preparation and characterization of 6I,6n-di-O-(l-fucopyranosyl)-β-cyclodextrin (n=II–IV) and investigation of their functions. Carbohydrate Research 342:15, pages 2173-2181.
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Reynaldo Villalonga, Roberto Cao & Alex Fragoso. (2007) Supramolecular Chemistry of Cyclodextrins in Enzyme Technology. Chemical Reviews 107:7, pages 3088-3116.
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Kyoko Koizumi. 2002. Carbohydrate Analysis by Modern Chromatography and Electrophoresis. Carbohydrate Analysis by Modern Chromatography and Electrophoresis 103 119 .

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