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姜黄素固体分散体的粒径对生物利用度和抗炎活性的影响。

Effects of Particle Size of Curcumin Solid Dispersions on Bioavailability and Anti-Inflammatory Activities.

作者信息

Kato Chihiro, Itaya-Takahashi Mayuko, Miyazawa Taiki, Ito Junya, Parida Isabella Supardi, Yamada Hiroki, Abe Akari, Shibata Mika, Someya Keita, Nakagawa Kiyotaka

机构信息

Laboratory of Food Function Analysis, Graduate School of Agricultural Science, Tohoku University, 468-1 Aramaki Aza-Aoba, Aoba-ku, Sendai 980-8572, Japan.

New Industry Creation Hatchery Center (NICHe), Tohoku University, 6-6-10 Aramaki Aza-Aoba, Aoba-ku, Sendai 980-8579, Japan.

出版信息

Antioxidants (Basel). 2023 Mar 15;12(3):724. doi: 10.3390/antiox12030724.

Abstract

The delivery of curcumin (CUR) using the solid dispersion system (CUR solid dispersions; C-SDs) has been shown to improve CUR bioavailability. However, it is unclear how different particle sizes of C-SDs affect the bioavailability and biological activities of CUR. Hence, we prepared C-SDs in different sizes using food-grade excipients and evaluated their bioavailability and biological activities. By pulverizing large particle sizes of C-SDs using zirconia beads, we successfully prepared C-SDs I-IV (particle size: (I) 120, (II) 447, (III) 987, (IV) 1910 nm). When administrated orally in rats, the bioavailability of CUR was increased with decreasing C-SDs size, most likely by improving its solubility in micelles. When administrated intravenously in rats, blood concentrations of CUR were increased with increasing particle size, suggesting that larger C-SDs presumably control the metabolic conversion of CUR. In RAW264 cells, more CUR was taken up by cells as their sizes reduced, and the more potent their anti-inflammatory activities were, suggesting that smaller C-SDs were taken up through a number of cellular uptake pathways. Altogether, the present study showed an evident effect of C-SDs size on their bioavailability and anti-inflammatory activities-information that serves as a basis for improving the functionality of CUR.

摘要

使用固体分散系统递送姜黄素(CUR)(CUR固体分散体;C-SDs)已被证明可提高CUR的生物利用度。然而,尚不清楚不同粒径的C-SDs如何影响CUR的生物利用度和生物学活性。因此,我们使用食品级辅料制备了不同粒径的C-SDs,并评估了它们的生物利用度和生物学活性。通过使用氧化锆珠研磨大粒径的C-SDs,我们成功制备了C-SDs I-IV(粒径:(I)120,(II)447,(III)987,(IV)1910 nm)。当对大鼠进行口服给药时,CUR的生物利用度随着C-SDs粒径的减小而增加,这很可能是通过提高其在胶束中的溶解度实现的。当对大鼠进行静脉给药时,CUR的血药浓度随着粒径的增加而升高,这表明较大的C-SDs可能控制了CUR的代谢转化。在RAW264细胞中,随着C-SDs粒径的减小,细胞摄取的CUR更多,其抗炎活性也更强,这表明较小的C-SDs通过多种细胞摄取途径被摄取。总之,本研究表明C-SDs粒径对其生物利用度和抗炎活性有明显影响,这些信息为改善CUR的功能提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91cd/10045274/78938ff41e8c/antioxidants-12-00724-g001.jpg

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