贮存时间对黄原胶和蓖麻油bigels力学和微观结构性能的影响

IF 1.9 4区 农林科学 Q3 CHEMISTRY, APPLIED Journal of the American Oil Chemists Society Pub Date : 2023-05-25 DOI:10.1002/aocs.12713
J. L. Pérez-Salas, M. R. Moreno-Jiménez, N. E. Rocha-Guzmán, W. Rosas-Flores, R. F. González-Laredo, L. Medina-Torres, J. A. Gallegos-Infante
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引用次数: 1

摘要

作为双相体系,bigel是由水凝胶和有机凝胶形成的。鉴于它们的特性,它们已被研究用于食品、制药和化妆品中的生物活性物质递送。单个结构化系统的流变特性和使用量影响最终性能;因此,本工作的目的是评估蓖麻油有机凝胶的比例、有机凝胶剂的浓度和储存时间对bigeles力学和微观结构性能的影响。Bigels由具有浓度为6%(MOG)和6.5%(HOG)wt/wt的单酰基甘油酯的结构化蓖麻油有机凝胶和具有2%wt/wt黄原胶(HG)的水凝胶制备,三种有机凝胶/水凝胶比例分别为15∶85、30∶70和45∶55。Bigels通过偏光滤光片的光学显微镜、离心稳定性、质地和流变学进行了表征 天。有机凝胶比例的增加有利于bigels的机械响应(k、G0和硬度)。蓖麻油的高粘度减缓了有机凝胶液滴的结构,显示出其机械性能在15 准备的天数。在流变试验中,有机凝胶比例分别为30%和45%的bigels中,有机胶凝剂浓度的增加是显著的。通过在bigels的形成中使用HOG,与由MOG形成的bigels相比,获得了更高的G0和k值,以及更高的离心稳定性。bigels的流变学和微观结构行为可以根据其应用通过改变有机凝胶/水凝胶的比例和有机凝胶剂的浓度来改变。
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Effect of storage time on the mechanical and microstructural properties of bigels based on xanthan gum and castor oil

As biphasic systems bigels are formed by hydrogels and organogels. Given their characteristics, they have been studied in food, pharmaceutical and cosmetic applications for bioactives delivery. The rheological characteristics and amount used of the individual structured systems influence the final properties; thus, the objective of this work was to evaluate the effect of the proportion of castor oil organogel, the concentration of organogelator, and the storage time in the mechanical and microstructural properties of bigeles. Bigels were prepared from structured castor oil organogels with monoacylglycerides at concentrations of 6% (MOG) and 6.5% (HOG) wt/wt, and hydrogels with 2% wt/wt xanthan gum (HG) at three organogel/hydrogel ratios 15 of 85, 30 of 70, and 45 of 55. Bigels were characterized by optical microscopy with polarized light filter, centrifugal stability, texture, and rheology for 60 days. The increase in the proportion of organogel favors the mechanical response (k, G0, and firmness) of bigels. The high viscosity of castor oil slows down the structuring of organogel droplets, showing an improvement in its mechanical properties after 15 days of its preparation. The increase in the organogelator concentration is significant in the bigels with 30% and 45% proportions of organogel in the rheological tests. By using HOG in the formation of bigels, higher values for G0 and k were obtained, as well as higher centrifugal stability compared with bigels formed from MOG. The rheological and microstructural behavior of bigels can be modified according to their application by varying the proportions of organogel/hydrogel and the concentration of the organogelator.

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来源期刊
CiteScore
4.10
自引率
5.00%
发文量
95
审稿时长
2.4 months
期刊介绍: The Journal of the American Oil Chemists’ Society (JAOCS) is an international peer-reviewed journal that publishes significant original scientific research and technological advances on fats, oils, oilseed proteins, and related materials through original research articles, invited reviews, short communications, and letters to the editor. We seek to publish reports that will significantly advance scientific understanding through hypothesis driven research, innovations, and important new information pertaining to analysis, properties, processing, products, and applications of these food and industrial resources. Breakthroughs in food science and technology, biotechnology (including genomics, biomechanisms, biocatalysis and bioprocessing), and industrial products and applications are particularly appropriate. JAOCS also considers reports on the lipid composition of new, unique, and traditional sources of lipids that definitively address a research hypothesis and advances scientific understanding. However, the genus and species of the source must be verified by appropriate means of classification. In addition, the GPS location of the harvested materials and seed or vegetative samples should be deposited in an accredited germplasm repository. Compositional data suitable for Original Research Articles must embody replicated estimate of tissue constituents, such as oil, protein, carbohydrate, fatty acid, phospholipid, tocopherol, sterol, and carotenoid compositions. Other components unique to the specific plant or animal source may be reported. Furthermore, lipid composition papers should incorporate elements of year­to­year, environmental, and/ or cultivar variations through use of appropriate statistical analyses.
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