Effect of high γ-irradiation dosage on physico-chemical, functional and emulsion properties of almond gum powder

乳状液 生物高聚物 吸水率 辐照 化学 植物化学 溶解度 奶油 化学工程 材料科学 核化学 有机化学 复合材料 聚合物 核物理学 工程类 物理 生物化学
作者
Vijay Kumar,Arun Kumar Gupta,Bindu Naik,Hilal A. Makroo
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:235: 123898-123898 被引量:21
标识
DOI:10.1016/j.ijbiomac.2023.123898
摘要

Almond gum is a natural biopolymer produced by Almond tree that is non-toxic, biodegradable, and biocompatible. These features make it suitable for applications in the food, cosmetic, biomedical, and packaging industries. To ensure its wide application in these fields, green modification process is necessary. Gamma irradiation is often used as a sterilisation and modification technique, due to its high penetration power. Thus, evaluating its effects on the physicochemical and functional properties of gum after exposure is important. To date, limited studies have reported the use of high dose of γ-irradiation on the biopolymer. Therefore, the present study demonstrated the effect of a high dose of γ-irradiation (0, 24, 48, and 72 kGy) on the functional and phytochemical properties of almond gum powder. The irradiated powder was studied for its color, packing, functional, and bioactive properties. The results revealed a significant increase in water absorption capacity, oil absorption capacity, and solubility index. However, a decreasing trend was observed in the foaming index, L value, pH, and emulsion stability with the radiation dose. Besides, sizable effects were observed in the IR spectra of irradiated gum. Phytochemical properties were significantly improved with an increase in dose. The emulsion was prepared from irradiated gum powder, where the highest creaming index was observed at 72 kGy and a decreasing trend in zeta potential. These results suggested that γ-irradiation treatment is a successful method to generate desirable cavity, pore sizes, functional properties, and bioactive compounds. This emerging approach could modify the natural additive with distinct internal structure for specific uses in wide range of food, pharmaceutical and other industrial applications.
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