2017International Journal of Food PropertiesRequires access

Effects of gelatin-polyphenol and gelatin–genipin cross-linking on the structure of gelatin hydrogels

Yuanyuan Zhao, Zhongtao Sun

Open publisher page 145 citations

Abstract

The effects of two cross-linking agents (genipin and polyphenol) on the physical properties of gelatin hydrogels were studied to determine the more effective natural cross-linking agent. The highest gel strength obtained with polyphenols was 136.9 N/mm2 at concentrations up to 360 μg polyphenols/g gelatin, whereas the highest strength of samples cross-linked with genipin was 98.4 N/mm2 with 300 mg genipin/g dry gelatin. Scanning electron microscopy showed that gelatin modified by polyphenols at 360 μg/g gelatin had the most compact surface. Cross-linked gelatin-polyphenol exhibited a markedly enhanced denaturation temperature and greater thermal stability than gelatin–genipin.

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What this paper is about

The effects of two cross-linking agents (genipin and polyphenol) on the physical properties of gelatin hydrogels were studied to determine the more effective natural cross-linking agent. The highest gel strength obtained with polyphenols was 136.9 N/mm2 at concentrations up to 360 μg polyphenols/g gelatin, whereas the highest strength of samples cross-linked with genipin was 98.4 N/mm2 with 300 mg genipin/g dry gelatin. Scanning electron microscopy showed that gelatin modified by polyphenols at 360 μg/g gelatin had the most compact surface. Cross-linked gelatin-polyphenol exhibited a markedly enhanced denaturation temperature and greater thermal stability than gelatin–genipin.

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Available abstract

The effects of two cross-linking agents (genipin and polyphenol) on the physical properties of gelatin hydrogels were studied to determine the more effective natural cross-linking agent. The highest gel strength obtained with polyphenols was 136.9 N/mm2 at concentrations up to 360 μg polyphenols/g gelatin, whereas the highest strength of samples cross-linked with genipin was 98.4 N/mm2 with 300 mg genipin/g dry gelatin. Scanning electron microscopy showed that gelatin modified by polyphenols at 360 μg/g gelatin had the most compact surface. Cross-linked gelatin-polyphenol exhibited a markedly enhanced denaturation temperature and greater thermal stability than gelatin–genipin.

Key concepts: Genipin, Gelatin, Polyphenol, Self-healing hydrogels, Chemistry, Glutaraldehyde, Denaturation (fissile materials), Chemical engineering

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