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植物油体:传递脂溶性分子的新型载体。

Plant oil bodies: novel carriers to deliver lipophilic molecules.

机构信息

Institute of Sciences of Food Production CNR Unit of Lecce, Italy.

出版信息

Appl Biochem Biotechnol. 2011 Mar;163(6):792-802. doi: 10.1007/s12010-010-9083-0. Epub 2010 Sep 18.

Abstract

Oil bodies (OBs) are specialised organelles ubiquitously detected in plant oil seeds, which serve as lipid storage compartments. OBs consist of a hydrophobic core of triacylglycerol (TAGs), surrounded by a monolayer of phospholipids (PLs) embedded with some specific proteins with a size ranging from 0.5 to 2 μm. In this work, we report an easy method to reconstitute OBs starting from their constituents and to encapsulate lipophilic molecules, i.e. the fluorescent fluorescein isothiocyanate (FITC) and carboxyfluorescein (CF), into reconstituted OBs. This methods allowed us to produce OBs 4- to 10-fold smaller (50-200 nm) than the native one and to obtain a good recovery (about 40%) of both the fluorescent compounds used in the present work. The properties of reconstituted OBs were investigated by a combination of Brewster angle microscopy, scanning force microscopy, ζ-potential techniques. OBs were stable and formed ordered monolayers when patterned on hydrophobic substrates whereas they showed a higher tendency to aggregate into larger, coalescing OBs when were deposited onto hydrophilic substrates or at the air/water interface. Furthermore, we verified the uptake of FITC-loaded OBs by the MCF-7 breast cancer cell line. Our results indicated that OBs could be envisaged as novel carriers to deliver hydrophobic bioactive compounds.

摘要

油体(OBs)是植物油脂种子中普遍存在的一种特殊细胞器,作为脂质储存室。OBs 由三酰基甘油(TAGs)的疏水性核心组成,周围是一层嵌入一些特定蛋白的磷脂 (PLs),这些蛋白的大小范围从 0.5 到 2 微米不等。在这项工作中,我们报告了一种从其成分重新构建 OBs 并将亲脂性分子(即荧光异硫氰酸荧光素(FITC)和羧基荧光素(CF))包封到再构建 OBs 中的简便方法。这种方法允许我们生产比天然 OBs 小 4 到 10 倍(50-200nm)的 OBs,并获得本工作中使用的两种荧光化合物的良好回收率(约 40%)。通过布儒斯特角显微镜、扫描力显微镜和 ζ-电势技术的组合,研究了再构建 OBs 的性质。当 OBs 在疏水性基底上图案化时,它们是稳定的并形成有序的单层,而当它们沉积在亲水性基底上或在空气/水界面上时,它们更倾向于聚集形成更大的、聚结的 OBs。此外,我们还验证了 MCF-7 乳腺癌细胞系对 FITC 负载 OBs 的摄取。我们的结果表明,OBs 可以被视为输送疏水性生物活性化合物的新型载体。

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