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Updated: May 10, 2025

Experimental Models to Study the Neuroprotection of Acidic Postconditioning Against Cerebral Ischemia
Published on: July 31, 2017
Structural elucidation, antioxidant and neuroprotective features of Physalis pubescens L. polysaccharide and its
Yuxin Tan1, Lang Qiu1, Danqi Li2,3
1College of Chemical Engineering, Shenyang University of Chemical Technology, Shenyang, PR China.
Abstract:
A novel polysaccharide, named as PPFP, was isolated from Physalis pubescens L. fruits with a molecular weight of 229.3 kDa. Further Structural characterisation revealed that PPFP comprised of rhamnose, arabinose, fucose, mannose and glucose, and the predominantly backbone is linked with 1 → 3- and 1 → 6-glycosidic bonds. Using the HNO3-Na2SeO3 method, the selenium-modified derivative (Se-PPFP) was successfully synthesised with higher bioavailability. FT-IR and NMR analyses confirmed selenium was attached to the Se-PPFP structure with the Se=O and O-Se-O forms. More specifically, selenium was bound to the C-6 bond on the D-pyranose of PPFP. Se-PPFP showed reduced molecular weight, looser microstructure and better thermal stability than PPFP. PPFP and Se-PPFP exhibited notable antioxidant and neuroprotective effects, with Se-PPFP being more significant. These findings suggest their potential as functional food antioxidants.
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