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Original Articles

Molecular recognition by modified cyclodextrins with flexibility

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Pages 305-308 | Received 30 Jul 1992, Published online: 23 Sep 2006

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M. Selkti, H. Parrot Lopez, J. Navaza, F. Villain & C. de Rango. (1995) Molecular recognition by cyclodextrins: the x-ray structure of 6A-boc-L-phenylalanylamino-6A-deoxy-β-cyclodextrin. Supramolecular Chemistry 5:4, pages 255-266.
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Articles from other publishers (9)

Golfo G. Kordopati, Theodore V. Tselios, Tahsin Kellici, Franci Merzel, Thomas Mavromoustakos, Simona Golic Grdadolnik & Gerasimos M. Tsivgoulis. (2015) A novel synthetic luteinizing hormone-releasing hormone (LHRH) analogue coupled with modified β-cyclodextrin: Insight into its intramolecular interactions. Biochimica et Biophysica Acta (BBA) - General Subjects 1850:1, pages 159-168.
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Keiko Takahashi, Hiroshi Narita, Megumi Oh-Hashi, Akihiro Yokoyama & Tsutomu Yokozawa. (2004) Diastereomeric Difference of the Self-Inclusion Complex of N(N?-Formyl-Phenylalanyl)-Deoxyamino-?-Cyclodextrin Caused by the Interaction between the Arm and the Rim of the Cavity. Journal of Inclusion Phenomena and Macrocyclic Chemistry 50:1-2, pages 121-127.
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Keiko Takahashi, Hiroshi Narita, Megumi Oh-Hashi, Akihiro Yokoyama & Tsutomu Yokozawa. (2004) Diastereomeric Difference of the Self-Inclusion Complex of N(N?-Formyl-Phenylalanyl)-Deoxyamino-?-Cyclodextrin Caused by the Interaction between the Arm and the Rim of the Cavity. Journal Of Inclusion Phenomena 50:1-2, pages 121-127.
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Keiko Takahashi, Koichi Imotani & Masahiko Kitsuta. (2001) Formation of Superstructure Composed of Modified Cyclodextrins as Molecular “Blocks” in Aqueous Solution with Host-Guest Complexation. Correlation of Chemical Structure of Modified Group with Complexation. Polymer Journal 33:3, pages 242-247.
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Giuseppe Impellizzeri, Giuseppe Pappalardo, Franca D'Alessandro, Enrico Rizzarelli, Michele Saviano, Rosa Iacovino, Ettore Benedetti & Carlo Pedone. (2000) Solid State and Solution Conformation of 6-[4-[N-tert-ButoxycarbonylN-(N′-ethyl)propanamide]imidazolyl]-6-deoxycyclomaltoheptaose: Evidence of Self-Inclusion of the Boc Group within the β-Cyclodextrin Cavity. European Journal of Organic Chemistry 2000:6, pages 1065-1076.
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N. Schaschke, H.-J. Musiol, I. Assfalg-Machleidt, W. Machleidt, S. Rudolph-Böhner & L. Moroder. (1996) Cyclodextrins as templates for the presentation of protease inhibitors. FEBS Letters 391:3, pages 297-301.
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Keiko Takahashi & Rikia Furushoh. (1996) Diastereomeric Differences of “Pendant Type” Monosubstituted Cyclodextrins, Mono-[6-deoxy-6N(N′-formyl L- and D-phenylglycylamino)]-β-cyclodextrin in Conformation and “Induced-fit” Behavior. Polymer Journal 28:5, pages 458-464.
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Patrick Berthault, Delphine Duchesne, Hervé Desvaux & Bernard Gilquin. (1995) A self-included cyclomaltoheptaose derivative studied by NMR spectroscopy and molecular modelling. Carbohydrate Research 276:2, pages 267-287.
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Keiko Takahashi & Kenjiro Hattori. (1994) Asymmetric reactions with cyclodextrins. Journal of Inclusion Phenomena and Molecular Recognition in Chemistry 17:1, pages 1-24.
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