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从[具体生物]的蜕壳中获取壳聚糖并进行表征。 (你提供的原文中“and.”部分信息不完整,以上是根据现有内容尽量准确翻译的结果 )

Obtention and Characterization of Chitosan from Exuviae of and .

作者信息

Marín-Morales M Selene, Ibarra-Herrera Celeste C, Rivas-Arreola María J

机构信息

School of Engineering and Sciences, Tecnologico de Monterrey, Av. Atlixcáyotl 5718, Reserva Territorial Atlixcáyotl, Puebla 72453, Mexico.

Science and Engineering Department, Universidad Iberoamericana Puebla, Blvrd del Niño Poblano 2901, Reserva Territorial Atlixcáyotl, San Andrés Cholula 72810, Puebla, Mexico.

出版信息

ACS Omega. 2025 Apr 21;10(16):17015-17023. doi: 10.1021/acsomega.5c01987. eCollection 2025 Apr 29.

Abstract

Chitosan is a versatile biopolymer with applications in various industries due to its biocompatibility and biodegradability. While crustacean shells are the primary source of chitosan, the extraction process can be environmentally taxing. This study focuses on evaluating chitosan from and , two insect species that offer a more sustainable alternative and require fewer resources for cultivation and produce large amounts of chitin-rich biomass. The acid-alkali method was applied using three experimental conditions (M1, M2, and M3) that involved modification in the demineralization, deproteinization, and deacetylation steps. The chitosan samples were characterized by determining the degree of deacetylation, solubility, molecular weight, antimicrobial activity, and swelling capacity and furthermore by measuring deproteinization and impurity content. Also, Fourier-transform infrared spectroscopy (FTIR) analysis was also performed on the chitosan samples. Samples M3 from the exuvia of (DD 55.62% ± 0.79 and solubility 24.13% ± 2.07) and M1 from (DD 61.86% ± 4.98 and solubility 27.31% ± 1.87) presented the best performance. The molecular weight was calculated between 75 kDa and 118 kDa. On the other hand, data obtained for swelling tests suggested that the film obtained from sample M1 (, 5.07% ± 0.11) proved to be more resistant to degradation in an aqueous environment, suggesting that this chitosan could be used for designing a film with high resistance. By exploring these insect sources, this research aims to contribute to the development of chitosan production practices, with potential applications in water treatment, biomedicine, and food packaging, thereby expanding the availability and uses of this valuable biopolymer.

摘要

壳聚糖是一种多功能生物聚合物,因其生物相容性和生物降解性而在各个行业得到应用。虽然甲壳类动物的外壳是壳聚糖的主要来源,但提取过程可能对环境造成负担。本研究重点评估从两种昆虫物种([具体昆虫物种1]和[具体昆虫物种2])中提取的壳聚糖,这两种昆虫提供了一种更具可持续性的替代方案,养殖所需资源较少,并能产生大量富含几丁质的生物质。采用酸碱法,设置了三个实验条件(M1、M2和M3),涉及脱矿质、脱蛋白和脱乙酰步骤的改进。通过测定脱乙酰度、溶解度、分子量、抗菌活性和溶胀能力,以及测量脱蛋白和杂质含量来表征壳聚糖样品。此外,还对壳聚糖样品进行了傅里叶变换红外光谱(FTIR)分析。来自[具体昆虫物种1]蜕皮的样品M3(脱乙酰度55.62%±0.79,溶解度24.13%±2.07)和来自[具体昆虫物种2]的样品M1(脱乙酰度61.86%±4.98,溶解度27.31%±1.87)表现出最佳性能。分子量计算在75 kDa至118 kDa之间。另一方面,溶胀试验获得的数据表明,从样品M1([具体昆虫物种2],5.07%±0.11)获得的薄膜在水环境中被证明更耐降解,这表明这种壳聚糖可用于设计具有高抗性的薄膜。通过探索这些昆虫来源,本研究旨在为壳聚糖生产实践的发展做出贡献,在水处理、生物医学和食品包装方面具有潜在应用,从而扩大这种有价值生物聚合物的可用性和用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ef3/12044503/0000b1c140a6/ao5c01987_0001.jpg

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