壳聚糖-胰蛋白酶抑制剂复合可食性膜的制备及抗黄曲霉活性

为探索新型生物膜材料的制备方法及抗黄曲霉活性,以壳聚糖和大豆胰蛋白酶抑制剂(TI)提取物为原料,甘油为增塑剂,利用溶液共混流延法制备壳聚糖-TI-甘油复合可食性膜,测试其厚度、表观结构、力学性质、透光率、水蒸气透过率及抗黄曲霉侵染活性。结果表明,当壳聚糖浓度为18mg/mL、TI浓度2mg/mL、甘油浓度12mg/mL和干燥温度45℃时,制备复合膜具有优良抗黄曲霉活性,且综合理化性能最佳。制备壳聚糖-TI-甘油复合膜液涂膜于花生上,接种黄曲霉培养后发现,复合膜对于黄曲霉侵染具有较强的抵抗和抑制作用。...

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Published in农业工程学报 Vol. 28; no. 4; pp. 287 - 292
Main Author 张宾 汪东风 邓尚贵 林慧敏 唐艳
Format Journal Article
LanguageChinese
Published 浙江海洋学院食品与药学学院,舟山,316000%中国海洋大学食品科学与工程学院,青岛,266000 2012
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ISSN1002-6819
DOI10.3969/j.issn.1002-6819.2012.04.048

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Abstract 为探索新型生物膜材料的制备方法及抗黄曲霉活性,以壳聚糖和大豆胰蛋白酶抑制剂(TI)提取物为原料,甘油为增塑剂,利用溶液共混流延法制备壳聚糖-TI-甘油复合可食性膜,测试其厚度、表观结构、力学性质、透光率、水蒸气透过率及抗黄曲霉侵染活性。结果表明,当壳聚糖浓度为18mg/mL、TI浓度2mg/mL、甘油浓度12mg/mL和干燥温度45℃时,制备复合膜具有优良抗黄曲霉活性,且综合理化性能最佳。制备壳聚糖-TI-甘油复合膜液涂膜于花生上,接种黄曲霉培养后发现,复合膜对于黄曲霉侵染具有较强的抵抗和抑制作用。
AbstractList 为探索新型生物膜材料的制备方法及抗黄曲霉活性,以壳聚糖和大豆胰蛋白酶抑制剂(TI)提取物为原料,甘油为增塑剂,利用溶液共混流延法制备壳聚糖-TI-甘油复合可食性膜,测试其厚度、表观结构、力学性质、透光率、水蒸气透过率及抗黄曲霉侵染活性。结果表明,当壳聚糖浓度为18mg/mL、TI浓度2mg/mL、甘油浓度12mg/mL和干燥温度45℃时,制备复合膜具有优良抗黄曲霉活性,且综合理化性能最佳。制备壳聚糖-TI-甘油复合膜液涂膜于花生上,接种黄曲霉培养后发现,复合膜对于黄曲霉侵染具有较强的抵抗和抑制作用。
TS206.4%TS205.9; 为探索新型生物膜材料的制备方法及抗黄曲霉活性,以壳聚糖和大豆胰蛋白酶抑制剂(TI)提取物为原料,甘油为增埋剂,利用溶液共混流延法制备壳聚糖-TI-甘油复合可食性膜,测试其厚度、表观结构、力学性质、透光率、水蒸气透过率及抗黄曲霉侵染活性.结果表明,当壳聚糖浓度为18 mg/mL、TI浓度2 mg/mL、甘油浓度12 mg/mL和干燥温度45℃时,制备复合膜具有优良抗黄曲霉活性,且综合理化性能最佳.制备壳聚糖-TI-甘油复合膜液涂膜于花生上,接种黄曲霉培养后发现,复合膜对于黄曲霍侵染具有较强的抵抗和抑制作用.
Author 张宾 汪东风 邓尚贵 林慧敏 唐艳
AuthorAffiliation 浙江海洋学院食品与药学学院,舟山316000 中国海洋大学食品科学与工程学院,青岛266000
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Author_FL Wang Dongfeng
Lin Huimin
Tang Yan
Deng Shanggui
Zhang Bin
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DocumentTitleAlternate Preparation and anti-Aspergillus flavus activity of chitosan-trypsin inhibitor blend edible film
DocumentTitle_FL Preparation and anti-Aspergillus flavus activity of chitosan-trypsin inhibitor blend edible film
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Issue 4
Keywords 黄曲霉毒素
壳聚糖
生物膜
复合膜
透光率
胰蛋白酶抑制剂
甘油
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Notes 11-2047/S
In order to explore the preparation method of biological film and its activity of anti-Aspergillus flavus, the chitosan-based blend film was prepared from chitosan, soybean trypsin inhibitor extract (TI) and glycerol solution, and the properties of which were also investigated, including thickness, mechanical property, water vapor transmission, optical transmittance, solubility apparent structure and anti-A. flavus activity. The results showed that the chitosan, TI and glycerol concentration got 18 mg/mL, 2 mg/mL and 12 mg/mL respectively, the blend films exhibited good physical and chemical properties, and the germination and growth of A. flavus were strongly inhibited by blend films on peanuts.
biofilms; glycerol; light transmittance; aflatoxins; chitosan; trypsin inhibitor; blend film
Zhang Bin, Wang Dongfeng, Deng Shanggui, Lin Huimin, Tang Yan(1. Department of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316000, China;2. Department of Food Science, Ocean University of China, Qingdao 2660
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PublicationTitle 农业工程学报
PublicationTitleAlternate Transactions of the Chinese Society of Agricultural Engineering
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PublicationYear 2012
Publisher 浙江海洋学院食品与药学学院,舟山,316000%中国海洋大学食品科学与工程学院,青岛,266000
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TS206.4%TS205.9; 为探索新型生物膜材料的制备方法及抗黄曲霉活性,以壳聚糖和大豆胰蛋白酶抑制剂(TI)提取物为原料,甘油为增埋剂,利用溶液共混流延法制备壳聚糖-TI-甘油复合可食性膜,测试其厚度、表观结构、力学性质、透光率、水蒸气透过率及抗黄曲霉侵染活性.结果表明,当壳聚糖浓度为18...
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StartPage 287
SubjectTerms 壳聚糖
复合膜
甘油
生物膜
胰蛋白酶抑制剂
透光率
黄曲霉毒素
Title 壳聚糖-胰蛋白酶抑制剂复合可食性膜的制备及抗黄曲霉活性
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