4.7 Article

Preparation and properties of biodegradable films made of cationic potato-peel starch and loaded with curcumin

期刊

FOOD HYDROCOLLOIDS
卷 130, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.foodhyd.2022.107690

关键词

Potato-peel waste; Cationic starch; Curcumin; Deep eutectic solvent; Antioxidant activity; Biodegradable film

资金

  1. Key Laboratory of Food Nutrition and Safety of the Ministry of Education [2018014]
  2. Project program of Key Laboratory of Food Nutrition and Safety, Min-istry of Education & Tianjin Key Laboratory of Food Nutrition and Safety, China [TJS202003]

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This study developed biodegradable films made of cationic potato starch-derivatives loaded with curcumin. The composite films showed improved mechanical properties, UV barrier performance, and antioxidant activity. They have the potential to be used as bioactive packaging materials for food and address the issue of agricultural waste disposal.
The purpose of this study was to develop biodegradable films made of cationic potato starch-derivatives and loaded with curcumin. Potato starch was recovered from potato peel waste (PW). Cationic starch (CS) was obtained by modifying potato starch, mixed with curcumin and used to prepare composite films. Curcumin at low concentration was compatible with CS and was uniformly distributed in the CS matrix of the composite films. Compared with the pure cationic starch film, the incorporation of 5% curcumin increased the elongation at break (18%) and hydrogen-bonding interactions and reduced the water-vapor permeability (WVP) (21%) of the CS films. In addition, the mechanical properties of CS films were slightly improved, whereas the thermal stability of the CS films was unchanged. The CS/curcumin films showed excellent ultraviolet (UV) barrier performance and the addition of 5% of curcumin improved the UV blocking effect by 53.33%, but reduced the transparency by 47.74%. The composite films also had good antioxidant activity and the highest scavenging activity of DPPH and ABTS was 86.77% and 98.09% in the composite film containing 5% curcumin, and curcumin was rapidly released. In conclusion, this study shows that CS/curcumin composite films are potential bioactive packaging material for foods and can alleviate the problem of agricultural waste disposal.

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