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首页> 外文期刊>Journal of the Science of Food and Agriculture >Preparation of antibacterial chito-oligosaccharide by altering the degree of deacetylation of beta-chitosan in a Trichoderma harzianum chitinase-hydrolysing process
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Preparation of antibacterial chito-oligosaccharide by altering the degree of deacetylation of beta-chitosan in a Trichoderma harzianum chitinase-hydrolysing process

机译:通过改变哈茨木霉几丁质几丁质酶水解过程中β-壳聚糖的脱乙酰度来制备抗菌性壳寡糖

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BACKGROUND: Chito-oligosaccharicle (COS) is generally known to possess many specific biological functions, especially antibacterial activity, depending on its size. To prepare a specific size range of COS, however, has proved difficult. The aim of this study was to establish a method for preparing a specific size range of antibacterially active COS by adjusting the degree of deacetylation (DD) of beta-chitosan in a Trichoderma harzianum chitinase-hydrolysing process.RESULTS: The molecular weight spectrum, elucidated by viscosity-average molecular weight, high-performance liquid chromatography and thin layer chromatography, of COS in chitosan hydrolysate was significantly related to the DD of its original chitosan. Compared with the original form, COS produced at 90% DO showed superior activity against most Gram-negative bacteria tested, with a minimum inhibition concentration (MIC) ranging from 55 +/- 27 to 200 +/- 122 mu g mL(-1). Conversely, most Gram-positive strains tested were less sensitive to COS (MIC > 880 +/- 438 mu g mL(-1)) than to its original form. Among the Gram-positive strains, Staphylococcus xylosus was the only exception in that it showed a high susceptibility to COS and had an MIC as low as 45 +/- 11 mu g mL(-1).CONCLUSION: The results indicate that the production of a specific size range of COS product is possible by altering the DD of chitosan in the chitinase-catalysed process. To produce various sizes of COS for versatile biological functions, as seen in this study to inhibit various types of bacteria, is made possible in this established process. (C) 2008 Society of Chemical Industry
机译:背景:壳寡糖(COS)通常已知具有许多特定的生物学功能,尤其是抗菌活性,具体取决于其大小。然而,事实证明,准备特定尺寸范围的COS是困难的。这项研究的目的是建立一种通过调节哈茨木霉几丁质酶水解过程中β-壳聚糖的脱乙酰度(DD)来制备特定大小范围的抗菌活性COS的方法。结果:阐明了分子量谱通过粘均分子量,高效液相色谱和薄层色谱分析,壳聚糖水解产物中的COS与原始壳聚糖的DD密切相关。与原始形式相比,以90%的溶解氧生产的COS对大多数经测试的革兰氏阴性细菌均表现出优异的活性,最低抑制浓度(MIC)为55 +/- 27至200 +/- 122μg mL(-1) )。相反,大多数测试的革兰氏阳性菌株对COS(MIC> 880 +/- 438μgmL(-1))的敏感性低于对原始形式的敏感性。在革兰氏阳性菌株中,木糖葡萄球菌是唯一的例外,因为它对COS表现出很高的敏感性,而MIC则低至45 +/- 11μgmL(-1)。通过在几丁质酶催化的过程中改变壳聚糖的DD,可以在特定大小范围内的COS产品中添加3D的氨基酸。在这项既定的过程中,有可能生产出各种尺寸的COS来发挥多种生物学功能,如本研究所示,它可以抑制各种类型的细菌。 (C)2008年化学工业学会

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