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基于纤维素和细菌源色素设计并制备一种生物基比色pH指示剂,用于智能食品包装的潜在应用。

Design and Preparation of a Biobased Colorimetric pH Indicator from Cellulose and Pigments of Bacterial Origin, for Potential Application as Smart Food Packaging.

作者信息

Amorim Lúcia F A, Gomes Ana P, Gouveia Isabel C

机构信息

FibEnTech Research Unit, Faculty of Engineering, University of Beira Interior, 6200-001 Covilhã, Portugal.

出版信息

Polymers (Basel). 2022 Sep 15;14(18):3869. doi: 10.3390/polym14183869.

DOI:10.3390/polym14183869
PMID:36146013
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9506293/
Abstract

Nowadays, worldwide challenges such as global warming, pollution, unsustainable consumption patterns, and scarcity of natural resources are key drivers toward future-oriented bioeconomy strategies, which rely on renewable biobased resources, such as bacterial pigments and bacterial cellulose (BC), for materials production. Therefore, the purpose of this study was to functionalize bacterial cellulose with violacein, flexirubin-type pigment, and prodigiosin and test their suitability as pH indicators, due to the pigments' sensitivity to pH alterations. The screening of the most suitable conditions to obtain the BC-pigment indicators was achieved using a full factorial design, for a more sustainable functionalization process. Then, the pH response of functionalized BC to buffer solutions was assessed, with color changes at acidic pH (BC-violacein indicator) and at alkaline pH (BC-violacein, BC-prodigiosin, and BC-flexirubin-type pigment indicators). Moreover, the indicators also revealed sensitivity to acid and base vapors. Furthermore, leaching evaluation of the produced indicators showed higher suitability for aqueous foods. Additionally, color stability of the functionalized BC indicators was carried out, after light exposure and storage at 4 °C, to evaluate the indicators' capacity to maintain color/sensitivity. Thus, BC membranes functionalized with bacterial pigments have the potential to be further developed and used as pH indicators.

摘要

如今,全球变暖、污染、不可持续的消费模式以及自然资源稀缺等全球性挑战是推动面向未来的生物经济战略的关键因素,这些战略依赖于可再生的生物基资源,如细菌色素和细菌纤维素(BC)来进行材料生产。因此,本研究的目的是用紫罗碱、弹性红素类色素和灵菌红素对细菌纤维素进行功能化,并测试它们作为pH指示剂的适用性,因为这些色素对pH变化敏感。为了实现更可持续的功能化过程,采用全因子设计筛选出获得BC-色素指示剂的最合适条件。然后,评估功能化BC对缓冲溶液的pH响应,在酸性pH(BC-紫罗碱指示剂)和碱性pH(BC-紫罗碱、BC-灵菌红素和BC-弹性红素类色素指示剂)下会发生颜色变化。此外,这些指示剂对酸和碱蒸汽也表现出敏感性。此外,对所制备指示剂的浸出评估表明其对水性食品具有更高的适用性。另外,在光照和4℃储存后对功能化BC指示剂的颜色稳定性进行了测试,以评估指示剂保持颜色/敏感性的能力。因此,用细菌色素功能化的BC膜有进一步开发并用作pH指示剂的潜力。

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本文引用的文献

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Materials (Basel). 2022 Mar 11;15(6):2069. doi: 10.3390/ma15062069.
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pH-responsive color indicator films based on methylcellulose/chitosan nanofiber and barberry anthocyanins for real-time monitoring of meat freshness.
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Preparation of a shikonin-based pH-sensitive color indicator for monitoring the freshness of fish and pork.基于紫草素的 pH 敏感型颜色指示剂的制备及其用于监测鱼肉和猪肉新鲜度的研究
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