TY - JOUR
T1 - Facile controlling internal structure of β-carotene-loaded protein nanoparticles by Flash Nanoprecipitation
AU - Ahmed Bhutto, Rizwan
AU - Fu, Zhinan
AU - Wang, Mingwei
AU - Yu, Jie
AU - Zhao, Fang
AU - Khanal, Santosh
AU - Halepoto, Adeel
AU - Wang, Junyou
AU - Cohen Stuart, Martien A.
AU - Guo, Xuhong
N1 - Publisher Copyright:
© 2021 Elsevier B.V.
PY - 2021/12/1
Y1 - 2021/12/1
N2 - As one of the most significant carotenoids, β-carotene is applied widely in human nutrition and reducing incidence of chronic diseases, due to its highest provitamin A activity. The nano-carrier technology has been used to prepare β-carotene-loaded nanoparticle to improve bioavailability in functional food and beverage, as β-carotene is high hydrophobic. However, the control of the internal structure of β-carotene-loaded nanoparticle is not investigated and the relationship between internal structure and release have not been well understood. Here, we report a kinetic-controlled method, Flash Nanoprecipitation, which allows to control the internal structure of β-carotene-loaded nanoparticle, from compact core-shell structure with high packing density to loose structure with low packing density. The different structures show obviously different release behavior: loose structure associates with high release of β-carotene, while compact structure associates with slight release. TEM and dynamic-static light scattering are employed to characterize the morphology and internal structure, respectively. The developed strategy could be helpful for practical application of β-carotene nanoparticles with tunable properties.
AB - As one of the most significant carotenoids, β-carotene is applied widely in human nutrition and reducing incidence of chronic diseases, due to its highest provitamin A activity. The nano-carrier technology has been used to prepare β-carotene-loaded nanoparticle to improve bioavailability in functional food and beverage, as β-carotene is high hydrophobic. However, the control of the internal structure of β-carotene-loaded nanoparticle is not investigated and the relationship between internal structure and release have not been well understood. Here, we report a kinetic-controlled method, Flash Nanoprecipitation, which allows to control the internal structure of β-carotene-loaded nanoparticle, from compact core-shell structure with high packing density to loose structure with low packing density. The different structures show obviously different release behavior: loose structure associates with high release of β-carotene, while compact structure associates with slight release. TEM and dynamic-static light scattering are employed to characterize the morphology and internal structure, respectively. The developed strategy could be helpful for practical application of β-carotene nanoparticles with tunable properties.
KW - Flash Nanoprecipitation
KW - Macrostructure
KW - Nanoparticle
UR - https://www.scopus.com/pages/publications/85111581017
U2 - 10.1016/j.matlet.2021.130523
DO - 10.1016/j.matlet.2021.130523
M3 - 文章
AN - SCOPUS:85111581017
SN - 0167-577X
VL - 304
JO - Materials Letters
JF - Materials Letters
M1 - 130523
ER -