Effects of different chemical modifications on the structure and biological activities of polysaccharides from <i>Orchis chusua</i> D. Don
Rehebati Nuerxiati, Paiheerding Mutailipu, Aytursun Abuduwaili, Jun Dou, Haji Akber Aisa, Abulimiti Yili
Journal of Food Science
Abstract
In this study, an enzyme-assisted extraction method was used to extract Orchis chusua D. Don (Salep) polysaccharide (SP), which was then modified by sulfation, acetylation, phosphorylation, and carboxymethylation to obtain modified polysaccharides. Furthermore, their degree of substitution, chemical composition, and molecular weight were evaluated. The primary structural features were characterized by UV spectra, FT-IR spectra, Congo-red test, and scanning electron microscope. The phosphorylated polysaccharide (SP-P) was demonstrated the highest scavenging ability on hydroxyl radical and growth-promoting activity on Lactobacillus Bulgaricus. The carboxymethylated polysaccharide (SP-C) was exhibited the strongest DPPH and ABTS radical scavenging effects. The acetylated polysaccharide (SP-A) displayed the best proliferation effects on Bifidobacterium adolescentis, whereas the sulfated polysaccharide (SP-S) maintained moderately stable antioxidant and probiotic ability. These findings indicate that the modified polysaccharides had their potential significance as new antioxidants and probiotics for the food industry. PRACTICAL APPLICATION: This article provides a new source for the development of polysaccharide derivatives as new antioxidants and probiotics for the food industry.
Extracted Claims
5 claims extracted from this paper into the knowledge graph
phosphorylated polysaccharide (SP-P) demonstrates highest scavenging ability on hydroxyl radical
“The phosphorylated polysaccharide (SP-P) was demonstrated the highest scavenging ability on hydroxyl radical”
phosphorylated polysaccharide (SP-P) promotes growth of Lactobacillus Bulgaricus
“The phosphorylated polysaccharide (SP-P) was demonstrated the highest scavenging ability on hydroxyl radical and growth-promoting activity on Lactobacillus Bulgaricus”
sulfated polysaccharide (SP-S) maintains moderately stable antioxidant and probiotic ability
“The sulfated polysaccharide (SP-S) maintained moderately stable antioxidant and probiotic ability”