用振动光谱和化学计量学研究胶原蛋白结构的变化:化学和无硫化物皮革工艺的比较

IF 0.6 4区 工程技术 Q4 CHEMISTRY, APPLIED Journal of The American Leather Chemists Association Pub Date : 2021-11-01 DOI:10.34314/jalca.v116i11.4659
Megha K. Mehta, Yang Liu, Rafea Naffa, M. Waterland, Geoff Holmes
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引用次数: 3

摘要

当皮革被加工成皮革时,会发生化学和物理变化,影响材料的质量和强度。了解每个制革阶段的结构是本研究的基础,但也打算通过生化方法改进这一过程,使用一种蛋白水解酶来更清洁地加工皮革,同时减少对环境的影响。利用拉曼光谱和ATR-FTIR光谱结合化学计量学研究了从鲜牛皮到干皮革的各个制革阶段。本文采用920/1476、1345/1259和1605/1476 cm-1三种新型拉曼比率标记,采用标准化学和酶法测定皮革加工过程中蛋白质、脂质、核酸等生物分子的变化。利用高斯函数拟合曲线,对酰胺I带进行反卷积,研究胶原二级结构。主成分分析的结果与结构变化的比率标记相吻合。
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Changes to the Collagen Structure using Vibrational Spectroscopy and Chemometrics: A Comparison between Chemical and Sulfide-Free Leather Process
Chemical and physical changes take place when hides and skins are processed to leather that affect the quality and strength of the material. Understanding the structure at each leather-making stage is the basis of this study but also intend to improve the process through a biochemical approach, employing a proteolytic enzyme for processing leather more cleanly with reduced environmental impact. Raman and ATR-FTIR spectroscopy in conjunction with chemometrics was used to investigate each leather-making stage from fresh green cattle hide to dry crust leather. The changes in proteins, lipids, nucleic acids and other biomolecules with leather processing was measured and reported using three novel Raman ratiometric markers, 920/1476, 1345/1259 and 1605/1476 cm-1, to discriminate the structural changes in collagen of hide using standard chemical and enzymatic method. Amide I band was deconvoluted to investigate thecollagen secondary structures using curve fitting by Gaussians function. The results of Principal Component Analysis are well-corroborated with the ratiometric markers of structural changes.
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来源期刊
Journal of The American Leather Chemists Association
Journal of The American Leather Chemists Association 工程技术-材料科学:纺织
CiteScore
1.30
自引率
33.30%
发文量
29
审稿时长
3 months
期刊介绍: The Journal of the American Leather Chemists Association publishes manuscripts on all aspects of leather science, engineering, technology, and economics, and will consider related subjects that address concerns of the industry. Examples: hide/skin quality or utilization, leather production methods/equipment, tanning materials/leather chemicals, new and improved leathers, collagen studies, leather by-products, impacts of changes in leather products industries, process efficiency, sustainability, regulatory, safety, environmental, tannery waste management and industry economics.
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