Synthesis, characterization and in vitro digestion of folate conjugated chitosan-loaded proanthocyanidins nanoparticles
[Display omitted] •• Folic acid-chitosan conjugate was synthesized by amidation.•• Characterization of PC-CS/FA-NPs were performed by DLS, FTIR, TGA and SEM.•• The inhibitory effect of PC-CS/FA-NPs on hemolysis of red blood cells was studied.•• The in vitro digestibility of PC-CS/FA-NPs were investi...
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Veröffentlicht in: | Food research international 2023-01, Vol.163, p.112141, Article 112141 |
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Sprache: | eng |
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•• Folic acid-chitosan conjugate was synthesized by amidation.•• Characterization of PC-CS/FA-NPs were performed by DLS, FTIR, TGA and SEM.•• The inhibitory effect of PC-CS/FA-NPs on hemolysis of red blood cells was studied.•• The in vitro digestibility of PC-CS/FA-NPs were investigated.
Proanthocyanidins have significant biological activity and pharmacological effects and are widely used in food, medicine, and cosmetics. Chitosan nanoparticles loaded with proanthocyanidins have been proven to improve their biological activity. Given some deficiencies of chitosan (CS), the modification of chitosan by folic acid (FA) can obtain new variants with different functions. For this objective, the folic acid conjugated chitosan was designed, and in vitro properties of proanthocyanidins loaded nanoparticles were studied systemically. Firstly, folic acid-chitosan conjugate (FA-CS) was synthesized and characterized. Folate-coupled chitosan-loaded proanthocyanidin nanoparticles (PC-CS/FA-NPs) were prepared by ionic gelation technique using FA-CS as a carrier. The successful nanoparticle synthesis was characterized by dynamic light scattering (DLS) techniques and Fourier transform infrared (FT-IR) spectroscopy. The synthesized nanoparticles exhibited a spherical shape and smooth and uniform distribution features with a size range of less than 300 nm, as observed by a scanning electron microscope (SEM). Meanwhile, PC-CS/FA-NPs had good thermal and gastrointestinal digestive stability and had a protective effect on AAPH-induced erythrocyte oxidative hemolysis. In conclusion, folic acid decorated chitosan nanoparticles improved the stability and bioavailability of proanthocyanidins in gastrointestinal digestion. |
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ISSN: | 0963-9969 1873-7145 |
DOI: | 10.1016/j.foodres.2022.112141 |