Hasanah Nur Nabilah, Mohamad Azman Ezzat, Rozzamri Ashari, Zainal Abedin Nur Hanani, Ismail-Fitry Mohammad Rashedi
Department of Food Technology, Faculty of Food Science and Technology, Universiti Putra Malaysia, UPM Serdang 43400, Selangor, Malaysia.
Halal Products Research Institute, Universiti Putra Malaysia (UPM), Putra Infoport, UPM Serdang 43400, Selangor, Malaysia.
Polymers (Basel). 2023 May 31;15(11):2541. doi: 10.3390/polym15112541.
The butterfly pea flower ( L.) (BPF) has a high anthocyanin content, which can be incorporated into polymer-based films to produce intelligent packaging for real-time food freshness indicators. The objective of this work was to systematically review the polymer characteristics used as BPF extract carriers and their application on various food products as intelligent packaging systems. This systematic review was developed based on scientific reports accessible on the databases provided by PSAS, UPM, and Google Scholar between 2010 and 2023. It covers the morphology, anthocyanin extraction, and applications of anthocyanin-rich colourants from butterfly pea flower (BPF) and as pH indicators in intelligent packaging systems. Probe ultrasonication extraction was successfully employed to extract a higher yield, which showed a 246.48% better extraction of anthocyanins from BPFs for food applications. In comparison to anthocyanins from other natural sources, BPFs have a major benefit in food packaging due to their unique colour spectrum throughout a wide range of pH values. Several studies reported that the immobilisation of BPF in different polymeric film matrixes could affect their physicochemical properties, but they could still effectively monitor the quality of perishable food in real-time. In conclusion, the development of intelligent films employing BPF's anthocyanins is a potential strategy for the future of food packaging systems.
蝶豆花(L.)(BPF)含有高含量的花青素,可将其掺入聚合物基薄膜中,以生产用于实时食品新鲜度指标的智能包装。这项工作的目的是系统地综述用作BPF提取物载体的聚合物特性及其在各种食品中作为智能包装系统的应用。本系统综述是基于2010年至2023年期间在PSAS、马来西亚博特拉大学(UPM)和谷歌学术提供的数据库中可获取的科学报告编写的。它涵盖了蝶豆花(BPF)富含花青素的色素的形态、花青素提取以及在智能包装系统中作为pH指示剂的应用。成功采用探头超声提取法获得了更高的产量,在食品应用中,该方法从BPF中提取花青素的效果比其他方法好246.48%。与其他天然来源的花青素相比,BPF在食品包装中具有显著优势,因为其在广泛的pH值范围内具有独特的色谱。几项研究报告称,将BPF固定在不同的聚合物薄膜基质中可能会影响其物理化学性质,但它们仍能有效地实时监测易腐食品的质量。总之,开发使用BPF花青素的智能薄膜是食品包装系统未来的一种潜在策略。