Related Experiment Video
Updated: Sep 11, 2025

Comparative Study on the Polysaccharide Contents and Antioxidant Activities of Hippophae rhamnoides subsp. sinensis and Hippophae gyantsensis
Published on: August 15, 2025
Acetylation Modification of Lavandula angustifolia Polysaccharides: Physicochemical Property, Antioxidant and
Bin Wu1, Yuyang Chai1, Junlong Wang1
1School of Chemistry and Chemical Engineering, Xinjiang Key Laboratory of Lavender Conservation and Utilization and Xinjiang Key Laboratory of Natural Products Chemistry and Application in Universities and Colleges, Yili Normal University, Yining, People's Republic of China.
Abstract:
Chemical modifications can impart distinct physicochemical properties and biological activities to polysaccharides. In this study, Lavandula angustifolia polysaccharide (LAP) was purified through a series of processes including decolorization, deproteinization, freeze-drying, and column chromatography using DEAE-750 cellulose and Sephadex G-200, yielding a major homogeneous polysaccharide designated as LAP. The LAP was subsequently modified via acetylation method, producing a series of acetylated derivatives with varying degrees of substitution, referred to as LAP-1, LAP-2 and LAP-3, respectively. The characterization of these polysaccharides was conducted using various methodologies, including viscosity, solubility, molecular weight (Mw), ultraviolet (UV), infrared (IR), x-ray diffraction (XRD), Congo red, thermogravimetric (TG), differential thermogravimetry (DTG), and scanning electron microscopy (SEM). The LAP and its derivatives were identified as heteropolysaccharides composed of varying molar ratios of fucose, rhamnose, mannose and galactose, with Mws of 27.32, 19.74, 17.52, and 21.43 kDa, respectively. The acetylation modifications were found to influence the viscosity, solubility, surface morphology and thermal properties of LAP and its derivatives, and notably, these effects were observed to be beneficial. Furthermore, antioxidant and hypoglycemic activity assays demonstrated that acetylation significantly enhanced the biological activities of the polysaccharides, exhibiting a positive correlation with the degree of substitution. These findings suggest that distinct functional and bioactive polysaccharides can be developed through acetylation modification.

