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红茶菌细菌纤维素生物复合膜的制备及其表征与壳聚糖涂层

Production and Characterization of Biocomposite Films of Bacterial Cellulose from Kombucha and Coated with Chitosan.

作者信息

Márquez-Reyes Julia M, Rodríguez-Quiroz Rubí E, Hernández-Rodríguez Juan P, Rodríguez-Romero Beatriz A, Flores-Breceda Héctor, Napoles-Armenta Juan, Romero-Soto Itzel C, Galindo-Rodríguez Sergio A, Báez-González Juan G, Treviño-Garza Mayra Z

机构信息

Facultad de Agronomía, Universidad Autónoma de Nuevo León (UANL), Francisco I. Madero S/N, Ex Hacienda el Cañada, Escobedo 66050, Mexico.

Centro Universitario del Norte, Universidad de Guadalajara, Km. 191, México 45D No. 23, Colotlán 46200, Mexico.

出版信息

Polymers (Basel). 2022 Sep 2;14(17):3632. doi: 10.3390/polym14173632.

Abstract

The purpose of this research is to produce and characterize bacterial cellulose (BC) films coated with chitosan (BC-CH). BC films were produced in a fermentation medium based on tea and dextrose (12 days at 25 °C) and subsequently treated with coating-forming solutions (CFSs) based on chitosan (BC-CH 0.5%, BC-CH 1.0%, and BC-CH 1.5%). As a result, the FTIR spectra of BC and BC-CH 1.5% showed the main characteristic bands of cellulose and chitosan. In the physicochemical characterization of the films, it was found that the incorporation of the chitosan coatings did not affect the thickness; however, it decreased the luminosity (L*) and increased redness (a*), yellowness (b*), and opacity (75.24%). Additionally, the light absorption properties in the UV-Vis range were improved. Furthermore, the application of the CFSs increased: the solubility (64.91%), the antimicrobial activity against (6.55 mm) and (8.25 mm), as well as the antioxidant activity (57.71% and 24.57% free radical scavenging activity), and the content of total phenols (2.45 mg GAE/g). Finally, our results suggest that the BC-CH films developed in the present study show a potential application as active packaging material for food.

摘要

本研究的目的是制备并表征壳聚糖包覆的细菌纤维素(BC)薄膜(BC-CH)。在基于茶和葡萄糖的发酵培养基中制备BC薄膜(25℃下培养12天),随后用基于壳聚糖的成膜溶液(CFSs)进行处理(BC-CH 0.5%、BC-CH 1.0%和BC-CH 1.5%)。结果,BC和1.5% BC-CH的FTIR光谱显示了纤维素和壳聚糖的主要特征峰。在薄膜的物理化学表征中发现,壳聚糖涂层的加入不影响薄膜厚度;然而,它降低了亮度(L*),增加了红度(a*)、黄度(b*)和不透明度(75.24%)。此外,紫外-可见范围内的光吸收性能得到改善。此外,CFSs的应用提高了:溶解度(64.91%)、对[具体菌种1]的抗菌活性(抑菌圈直径6.55 mm)和对[具体菌种2]的抗菌活性(抑菌圈直径8.25 mm),以及抗氧化活性(自由基清除活性分别为57.71%和24.57%)和总酚含量(2.45 mg GAE/g)。最后,我们的结果表明,本研究中开发的BC-CH薄膜显示出作为食品活性包装材料的潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1860/9460144/12d66778c3c9/polymers-14-03632-g001.jpg

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