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Mannose-modified Prunus persica kernel protein nanoparticles loading baicalin coated with Lycium barbarum
Chunxiao Tao1, Fazhen Luo1, Yaxin Wang1
1Research Center for Health and Nutrition, Shanghai University of Traditional Chinese Medicine, Shanghai, 201203, China.
Abstract:
Baicalin (Ba) is a promising anti-inflammatory agent for treating ulcerative colitis (UC), but its efficacy is constrained by poor solubility and colon-targeting efficiency. Lycium barbarum polysaccharide (LBP), an anionic polysaccharide, not only restores gut microbiota dysbiosis but also exhibits excellent upper gastrointestinal stability and biocompatibility, making it a candidate for developing colon-targeted carriers. In this paper, the polymeric nanoparticles (Ba@MP/LBP NPs) were constructed using LBP, mannose, and Prunus persica kernel protein (PKP) for targeted delivery of baicalin to enhance its efficacy in UC treatment. The obtained Ba@MP/LBP NPs possessed core-shell spherical morphology, narrow particle-size distribution (∼230 nm), negative surface charge (-33.89 mV), and excellent baicalin encapsulation (94.26 %). With the aid of the LBP coating, Ba@MP/LBP NPs can tolerate upper gastrointestinal disturbances and transport Ba@MP NPs into colon, thereby facilitating baicalin uptake by inflammatory macrophages via mannose receptor-mediated endocytosis. Furthermore, the LBP coating strengthened Ba@MP NPs' ability to regulate the intestinal flora; hence, Ba@MP/LBP NPs can restore gut microbiota balance while suppressing pro-inflammatory factor secretion and oxidative stress, ultimately alleviating UC. More importantly, Ba@MP/LBP NPs exhibited favorable biosafety. Overall, this work is the first attempt to employ LBP and PKP as colon-targeting carriers, providing a promising nanomedicine for UC therapy.
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