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Published on: February 9, 2019
Baicalin-loaded peony seed polypeptide nanoparticles via a pH-driven method: Characterization, release kinetics, and
Nan Chen1, Hui Sun2, Mu-Xuan Wang3
1College of Food Science and Engineering, Ocean University of China, Qingdao 266404, PR China; Key Laboratory of Novel Food Resources Processing, Ministry of Agriculture and Rural Affairs/Institute of Food & Nutrition Science and Technology, Shandong Academy of Agricultural Sciences, 250100 Jinan, PR China.
Abstract:
Baicalin (BA), a flavonoid with diverse bioactivities, faces clinical application challenges due to its poor solubility, low bioavailability, and limited stability. This study reports on the development of BA-loaded peony seed polypeptide nanoparticles (BA-PSP NPs) using a pH-driven method to overcome these limitations. These nanoparticles (NPs) were spherical, 88.20 ± 2.19 nm in size, with a zeta potential of -35 mV, demonstrating excellent stability under thermal, pH, salt ion, and storage conditions. Physicochemical assays confirmed that BA was encapsulated in an amorphous state within the peony seed peptide matrix, with an encapsulation efficiency of 81.37 ± 0.57 %. The nanosystem effectively protected BA from degradation in simulated gastrointestinal environments. In vitro assays revealed that BA-PSP NPs exerted a superior anti-inflammatory effect compared to free BA mediated via inhibiting pro-inflammatory factor secretion (IL-1β, IL-6, and TNF-α) and promoting anti-inflammatory factor production (IL-10) in LPS-induced RAW264.7 cells, as well as validated via qPCR for corresponding mRNA regulation. This study develops pH-driven self-assembled peony seed peptide nanoparticles as green and safe colon-targeted carriers, effectively encapsulating polyphenols with enhanced stability and bioavailability, thereby providing technical support for functional food development and precision nutraceutical delivery systems.

