首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >A new chitosan sub-micron and encapsulated Iturin A with enhanced antifungal activity against Ceratocystis fimbriata and Rhizopus strolonifer
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A new chitosan sub-micron and encapsulated Iturin A with enhanced antifungal activity against Ceratocystis fimbriata and Rhizopus strolonifer

机译:一种新的壳聚糖亚微米,并用增强的抗真菌活性对Ceratocystis Fimbriata和Rhizopus Strolonifer的增强的抗真菌活性

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摘要

Iturin A is a natural antifungal agent that is widely used in the agriculture and food industries. In the present study, a new modified chitosan sub-micron, succinaldehydic acid (SAC) -chitosan (CS) system was synthesised by microwave irradiation and then as a carrier for capsulation of Iturin A (SAC-CS-IA). The structures of SAC-CS and SAC-CS-IA were characterised by SEM, NMR and FTIR. The size distribution suggested that the average size of SAC-CS and SAC-CS-IA was from 1.5 to 2.5 mu m. An encapsulation efficiency of 92.02% under an adaptive pH (pH = 5) and time (5.5 h) was used. The study of release kinetics shows that about 80% of Iturin A was released in 25 days. An antifungal activity assay indicated that SAC-CS-IA exhibited higher antifungal activity against Ceratocystis fimbriata and Rhizopus strolonifer with 75.05 +/- 3.24% and 80.54 +/- 2.65%, respectively. The results indicate that the SAC-CS can improve the stability of IA on heat and pH with a wide range and tolerance most of enzymes. Actual tuber storage suggested that SAC-CS-IA can significantly inhibit pathogen fungal infection and reduce toxin product. Meanwhile, SAC-CS-IA could retain the water, starch, and soluble sugar contents. Low residue assay indicated that SAC-CS-IA could be used as an antifungal and anti-rotting agent in agriculture and food applications. (C) 2020 Elsevier B.V. All rights reserved.
机译:IturinA是一种天然抗真菌剂,广泛用于农业和食品工业。在本研究中,通过微波辐射合成了一种新的改性壳聚糖亚微米,浆骨氨酸(SAC) - 癸烷(CS)系统,然后作为Iturin A(SAC-CS-Ia)填充的载体。 SEC,NMR和FTIR的表征SAC-CS和SAC-CS-IA的结构。尺寸分布表明SAC-CS和SAC-CS-Ia的平均大小为1.5至2.5μm。使用在适应性pH(pH = 5)和时间(5.5小时)下92.02%的封装效率。释放动力学的研究表明,约80%的Iturin A在25天内释放。抗真菌活性测定表明,SAC-CS-IA分别表现出对Ceratocystis Fimbriata和Rhizopus Strolonifer的更高抗真菌活性,分别具有75.05 +/- 3.24%和80.54 +/- 2.65%。结果表明,SAC-CS可以通过大部分酶的宽范围和耐受性提高IA对热量和pH的稳定性。实际块茎存储表明SAC-CS-IA可以显着抑制病原体真菌感染和减少毒素产品。同时,SAC-CS-IA可以保留水,淀粉和可溶性糖含量。低残留率测定表明,SAC-CS-Ia可用于农业和食品应用中的抗真菌和抗腐烂剂。 (c)2020 Elsevier B.v.保留所有权利。

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