A novel synthesis method for cyclodextrins from maltose in water-organic solvent systems

被引:9
|
作者
Morita, T
Yoshida, N
Karube, I
机构
[1] UNIV TOKYO,ADV SCI & TECHNOL RES CTR,MEGURO KU,TOKYO 153,JAPAN
[2] AKEBONO BRAKE RES & DEV CTR LTD,HIGASHI HANYU,SAITAMA,JAPAN
关键词
cyclodextrin; enzymatic synthesis in organic media; maltose; cyclohexane; CGTase from Bacillus macerans;
D O I
10.1007/BF02786961
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A novel enzymatic synthesis method of cyclodextrin (CD) from low-mol-wt maltose using cyclomaltodextrin glucanotransferase (CGTase) from Bacillus macerans has been developed in various water-organic solvent systems. A beta-CD was synthesized in a two-phase system consisting of water and cyclohexane. However, no CDs could be synthesized in an aqueous buffer solution. A maximal yield of beta-CD has been obtained at a cyclohexane content volume of 44%. This synthesis has been obtained only at low temperatures, i.e., 7 degrees C, and did not take place at 50 degrees C. In addition, various organic solvents have been used for the enzymatic synthesis of CD from maltose. Consequently, beta-CD could be synthesized in various water-organic solvent systems, e.g., cyclohexane, benzene, xylene, and chloroform, but no enzymatic reaction occurred using aliphatic n-hydrocarbon solvents such as hexane, dodecane, and hexadecane. Furthermore, alpha- and beta-CD could be synthesized in water mixture solutions using organic solvents having an alcoholic group (e.g., ethanol, propanol, butanol, and pentanol) in a wide range of the reaction temperatures, typically 7-50 degrees C. In this temperature range, alpha- and beta-CD were also formed and the maximal yield from maltose to beta-CD of approx 13% was reached in 60 h.
引用
收藏
页码:311 / 324
页数:14
相关论文
共 50 条
  • [21] Fluorescence studies on luminol in water-organic solvent mixtures
    Guha, D
    Das, R
    Mitra, S
    Mukherjee, S
    INDIAN JOURNAL OF CHEMISTRY SECTION A-INORGANIC BIO-INORGANIC PHYSICAL THEORETICAL & ANALYTICAL CHEMISTRY, 1997, 36 (04): : 307 - 312
  • [22] POLAROGRAPHIC STUDY OF FLUORESCEIN IN WATER-ORGANIC SOLVENT MIXTURES
    SALEM, TM
    ISSA, RM
    HINDAWEY, AM
    ANNALI DI CHIMICA, 1974, 64 (11-1) : 735 - 746
  • [23] ENZYME CATALYZED-REACTIONS IN WATER-ORGANIC SOLVENT 2-PHASE SYSTEMS
    ANTONINI, E
    CARREA, G
    CREMONESI, P
    ENZYME AND MICROBIAL TECHNOLOGY, 1981, 3 (04) : 291 - 296
  • [24] Application of multiparameter equations to calculation of the mutual solubility in water-organic solvent binary systems
    Maikut, O. M.
    Makitra, R. G.
    Pal'chikova, E. Ya.
    RUSSIAN JOURNAL OF GENERAL CHEMISTRY, 2007, 77 (12) : 2198 - 2202
  • [26] Water-Organic Solvent Extraction of Phenolic Antioxidants from Brewers' Spent Grain
    Zuorro, Antonio
    Iannone, Annalaura
    Lavecchia, Roberto
    PROCESSES, 2019, 7 (03):
  • [27] A kinetic examination of penicillin acylase stability in water-organic solvent systems at different temperatures
    Arroyo, M
    Torres-Guzmán, R
    De la Mata, I
    Castillón, MP
    Acebal, C
    BIOCATALYSIS AND BIOTRANSFORMATION, 2002, 20 (01) : 53 - 56
  • [28] Application of multiparameter equations to calculation of the mutual solubility in water-organic solvent binary systems
    O. M. Maikut
    R. G. Makitra
    E. Ya. Pal’chikova
    Russian Journal of General Chemistry, 2007, 77 : 2198 - 2202
  • [29] STUDY OF THE KINETICS OF SOLVOLYSIS OF BIS-CHLOROMETHYLNITRAMINE IN BINARY WATER-ORGANIC SOLVENT SYSTEMS
    STAROSTIN, BS
    KRAUKLISH, IV
    SINEV, VV
    ORGANIC REACTIVITY, 1979, 16 (04): : 429 - 433
  • [30] STUDY OF REACTIONS IN 2-PHASE SYSTEMS HYDROLYSIS OF TRIPHENYLMETHYL CHLORIDE IN WATER-ORGANIC SOLVENT SYSTEMS
    SILHANEK, J
    KONRADOVA, L
    SIMECKOVA, O
    HORAK, J
    COLLECTION OF CZECHOSLOVAK CHEMICAL COMMUNICATIONS, 1982, 47 (11) : 2904 - 2911