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β-乳球蛋白纳米颗粒的细胞摄取与细胞毒性:粒径和表面电荷的影响

Cellular Uptake and Cytotoxicity of β-Lactoglobulin Nanoparticles: The Effects of Particle Size and Surface Charge.

作者信息

Ha Ho-Kyung, Kim Jin Wook, Lee Mee-Ryung, Jun Woojin, Lee Won-Jae

机构信息

Department of Food and Nutrition, Daegu University, Gyeongsan 712-714, Korea .

Division of Food and Nutrition, Chonnam National University, Gwangju 550-757, Korea .

出版信息

Asian-Australas J Anim Sci. 2015 Mar;28(3):420-7. doi: 10.5713/ajas.14.0761.

Abstract

It is necessary to understand the cellular uptake and cytotoxicity of food-grade delivery systems, such as β-lactoglobulin (β-lg) nanoparticles, for the application of bioactive compounds to functional foods. The objectives of this study were to investigate the relationships between the physicochemical properties of β-lg nanoparticles, such as particle size and zeta-potential value, and their cellular uptakes and cytotoxicity in Caco-2 cells. Physicochemical properties of β-lg nanoparticles were evaluated using particle size analyzer. Flow cytometry and confocal laser scanning microscopy were used to investigate cellular uptake and cytotoxicity of β-lg nanoparticles. The β-lg nanoparticles with various particle sizes (98 to 192 nm) and zeta-potential values (-14.8 to -17.6 mV) were successfully formed. A decrease in heating temperature from 70°C to 60°C resulted in a decrease in the particle size and an increase in the zeta-potential value of β-lg nanoparticles. Non-cytotoxicity was observed in Caco-2 cells treated with β-lg nanoparticles. There was an increase in cellular uptake of β-lg nanoparticles with a decrease in particle size and an increase in zeta-potential value. Cellular uptake β-lg nanoparticles was negatively correlated with particle size and positively correlated with zeta-potential value. Therefore, these results suggest that the particle size and zeta-potential value of β-lg nanoparticles play an important role in the cellular uptake. The β-lg nanoparticles can be used as a delivery system in foods due to its high cellular uptake and non-cytotoxicity.

摘要

为了将生物活性化合物应用于功能性食品,有必要了解食品级递送系统(如β-乳球蛋白(β-lg)纳米颗粒)的细胞摄取和细胞毒性。本研究的目的是探讨β-lg纳米颗粒的物理化学性质(如粒径和zeta电位值)与其在Caco-2细胞中的细胞摄取和细胞毒性之间的关系。使用粒度分析仪评估β-lg纳米颗粒的物理化学性质。采用流式细胞术和共聚焦激光扫描显微镜研究β-lg纳米颗粒的细胞摄取和细胞毒性。成功制备了具有不同粒径(98至192nm)和zeta电位值(-14.8至-17.6mV)的β-lg纳米颗粒。加热温度从70°C降至60°C导致β-lg纳米颗粒的粒径减小,zeta电位值增加。在用β-lg纳米颗粒处理的Caco-2细胞中未观察到细胞毒性。随着粒径减小和zeta电位值增加,β-lg纳米颗粒的细胞摄取增加。β-lg纳米颗粒的细胞摄取与粒径呈负相关,与zeta电位值呈正相关。因此,这些结果表明β-lg纳米颗粒的粒径和zeta电位值在细胞摄取中起重要作用。由于其高细胞摄取和无细胞毒性,β-lg纳米颗粒可作为食品中的递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca6/4341088/c44671d74750/ajas-28-3-420f1.jpg

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