Beijing Research Center for Information Technology in Agriculture, Beijing Academy of Agricultural and Forestry Sciences, Beijing, China.
National Engineering Research Center for Information Technology in Agriculture, Beijing Academy of Agricultural and Forestry Sciences, Beijing, China.
J Sci Food Agric. 2021 Mar 30;101(5):1800-1811. doi: 10.1002/jsfa.10794. Epub 2020 Oct 9.
Fish spoilage leads to an increase in the pH value of the fish. A colorimetric pH indicator can be used to monitor fish spoilage and has been exploited in intelligent packaging because of its simplicity, practicality and low cost. The aim of this study was to develop two pH-indicator films comprising starch (S), tara gum (TG), polyvinyl alcohol (PVA) and anthocyanins extracted from blueberry peel and the films were then used to monitor the freshness of tilapia fillets during storage at 25 and 4 °C.
The ultraviolet-visible (UV-visible) spectra and color of anthocyanins changed within pH 2-10. Fourier-transform infrared spectroscopy, UV-visible spectrophotometry and scanning electron microscopy certified that blueberry peel extract (BPE) had been introduced into the S/PVA and TG/PVA matrices. Visual color changes in the films occurred at pH 2-8. A freshness application test was conducted in tilapia fillets stored at 4 and 25 °C, and visual color changes in the films were observed. The TG/PVA/BPE film had a greater color difference (ΔE) from pink and transparent to dark yellow at 25 °C and to dark purple at 4 °C than ΔE of S/PVA/BPE film, which sufficiently correlated with the change of total volatile base nitrogen (TVB-N) and total aerobic counts (TACs) of fillets.
It can be concluded that the color changes of TG/PVA/BPE films were corresponded with TVB-N and TAC values of tilapia fillets, which presented great potential as a visual package label to monitor fish freshness at ambient and chilled temperatures. © 2020 Society of Chemical Industry.
鱼类腐败会导致鱼类 pH 值升高。比色 pH 指示剂可用于监测鱼类腐败,因其简单、实用和低成本而在智能包装中得到了应用。本研究旨在开发两种 pH 指示剂薄膜,由淀粉 (S)、瓜尔胶 (TG)、聚乙烯醇 (PVA) 和蓝莓皮中提取的花青素组成,然后将这些薄膜用于监测罗非鱼片在 25 和 4°C 下贮藏过程中的新鲜度。
花青素的紫外-可见 (UV-可见) 光谱和颜色在 pH 2-10 范围内发生变化。傅里叶变换红外光谱、紫外-可见分光光度法和扫描电子显微镜证明,蓝莓皮提取物 (BPE) 已被引入 S/PVA 和 TG/PVA 基质中。薄膜的视觉颜色变化发生在 pH 2-8。在 4 和 25°C 下贮藏的罗非鱼片进行了新鲜度应用试验,观察到薄膜的视觉颜色变化。与 S/PVA/BPE 薄膜相比,TG/PVA/BPE 薄膜在 25°C 时从粉红色和透明变为深黄色,在 4°C 时变为深紫色,其色差 (ΔE) 更大,与鱼片总挥发性盐基氮 (TVB-N) 和总需氧菌数 (TAC) 的变化充分相关。
可以得出结论,TG/PVA/BPE 薄膜的颜色变化与罗非鱼片的 TVB-N 和 TAC 值相对应,这表明它作为一种用于监测环境和冷藏温度下鱼类新鲜度的视觉包装标签具有很大的潜力。