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叶黄素纳米盘可保护人视网膜色素上皮细胞免受紫外线诱导的损伤。

Lutein nanodisks protect human retinal pigment epithelial cells from UV light-induced damage.

作者信息

Moschetti Anthony, Fox Colin A, McGowen Samuel, Ryan Robert O

机构信息

Department of Biochemistry and Molecular Biology, University of Nevada Reno, Reno, NV, United States.

出版信息

Front Nanotechnol. 2022;4. doi: 10.3389/fnano.2022.955022. Epub 2022 Aug 15.

Abstract

The hydrophobic carotenoid, lutein, was conferred with aqueous solubility upon formulation into reconstituted discoidal high density lipoprotein particles, termed lutein nanodisks (ND). When formulated with phosphatidylcholine (PC), apolipoprotein (apo) A-I and lutein (formulation ratio = 5 mg PC/2 mg apoA-I/1 mg lutein), lutein solubilization efficiency in phosphate buffered saline (PBS) was ~90%. The UV/Vis absorbance maxima for lutein ND in PBS were red shifted by 6-13 nm versus the corresponding lutein absorbance maxima in ethanol. FPLC gel filtration chromatography gave rise to a single major absorbance peak in the size range of ND. Incubation of cultured ARPE-19 cells with lutein ND resulted in lutein uptake, as determined by HPLC analysis of cell extracts. Compared to control incubations, ARPE-19 cells incubated with lutein ND were protected from UV light-induced loss of cell viability. Consistent with this, reactive oxygen species generation, induced by exposure to UV irradiation, was lower in lutein-enriched cells than in control cells. Thus, uptake of ND-associated lutein protects ARPE-19 cells from UV light-induced damage. Taken together, the data indicate ND provide an aqueous lutein delivery vehicle for biotechnological or therapeutic applications.

摘要

疏水性类胡萝卜素叶黄素在被制备成重构盘状高密度脂蛋白颗粒(称为叶黄素纳米盘,ND)后具备了水溶性。当与磷脂酰胆碱(PC)、载脂蛋白(apo)A-I和叶黄素一起制备时(配方比例为5毫克PC/2毫克apoA-I/1毫克叶黄素),叶黄素在磷酸盐缓冲盐水(PBS)中的溶解效率约为90%。与叶黄素在乙醇中的相应吸收最大值相比,叶黄素纳米盘在PBS中的紫外/可见吸收最大值发生了6 - 13纳米的红移。快速蛋白质液相色谱(FPLC)凝胶过滤色谱在纳米盘大小范围内产生了一个单一的主要吸收峰。通过对细胞提取物进行高效液相色谱(HPLC)分析确定,用叶黄素纳米盘培养ARPE - 19细胞会导致叶黄素摄取。与对照培养相比,用叶黄素纳米盘培养的ARPE - 19细胞受到保护,免受紫外线诱导的细胞活力丧失。与此一致的是,暴露于紫外线照射所诱导的活性氧生成在富含叶黄素的细胞中比在对照细胞中更低。因此,摄取与纳米盘相关的叶黄素可保护ARPE - 19细胞免受紫外线诱导的损伤。综上所述,数据表明纳米盘为生物技术或治疗应用提供了一种水性叶黄素递送载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b53/9851610/5b0048d21dce/nihms-1854985-f0001.jpg

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