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种子油混合物的物理化学性质及其创建具有可调极性的合成油体的潜力。

Physicochemical Properties of Seed Oil Blends and Their Potential for the Creation of Synthetic Oleosomes with Modulated Polarities.

作者信息

Berger Brett A, Vietor Henry M, Scott Dane W, Lee Hwayoung, Hashemipour Sanaz, Im Wonpil, Wittenberg Nathan J, Glover Kerney Jebrell

机构信息

Department of Chemistry, Lehigh University, 6 E. Packer Ave., Bethlehem, Pennsylvania 18015, United States.

Department of Chemistry, East Tennessee State University, P.O. Box 70695, Johnson City, Tennessee 37614, United States.

出版信息

ACS Omega. 2024 Oct 11;9(42):43193-43202. doi: 10.1021/acsomega.4c07512. eCollection 2024 Oct 22.

Abstract

There is an increasing demand within the pharmaceutical and cosmetic industries for biofriendly lipid-based active ingredient delivery systems. Micelles, liposomes, and lipid nanoparticles are currently the most used systems despite their limitations. Oleosomes, also known as lipid droplets, are promising alternatives to the existing strategies. Oleosomes are typically found in plant cells and are characterized by a nonpolar triacylglycerol core surrounded by a phospholipid monolayer punctuated with the protein oleosin. Producing oleosomes synthetically allows the customization of their lipid content, size, protein content, and oil core characteristics, expanding their versatility. Herein we demonstrate a proof of concept for the use of synthetic oleosomes to sequester polar molecules by modulating their core polarity with blends of sunflower and castor oils. The physical properties (density, refractive index, and permittivity) of the oil blends are characterized and demonstrate ideal mixing of the oils, which is supported by molecular dynamics simulations. Spectroscopic examination of the oil blends using fluorescent probes shows that the polarity of oil blends increases as the fraction of castor oil increases. Finally, we show that the uptake of a polar fluorescent probe (NBD-glucose) into synthetic oleosomes is enhanced by increasing the polarity of the oil core, but large charged molecules are excluded from the core regardless of polarity. These experiments show that synthetic oleosomes with tunable oil cores can expand the range of molecules that can be loaded into a biofriendly package as desired for biotechnology applications.

摘要

制药和化妆品行业对生物友好型脂质基活性成分递送系统的需求日益增长。尽管存在局限性,但胶束、脂质体和脂质纳米颗粒目前是最常用的系统。油体,也称为脂质滴,是现有策略的有前途的替代方案。油体通常存在于植物细胞中,其特征是由非极性三酰甘油核心和被油质蛋白点缀的磷脂单层包围。合成生产油体可以定制其脂质含量、大小、蛋白质含量和油核心特性,从而扩展其通用性。在此,我们展示了一个概念验证,即通过用向日葵油和蓖麻油的混合物调节其核心极性,利用合成油体来隔离极性分子。对油混合物的物理性质(密度、折射率和介电常数)进行了表征,并证明了油的理想混合,这得到了分子动力学模拟的支持。使用荧光探针对油混合物进行光谱检查表明,随着蓖麻油比例的增加,油混合物的极性增加。最后,我们表明,通过增加油核心的极性,极性荧光探针(NBD-葡萄糖)对合成油体的摄取会增强,但无论极性如何,大的带电分子都被排除在核心之外。这些实验表明,具有可调油核心的合成油体可以扩大能够根据生物技术应用的需要装载到生物友好型包装中的分子范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20a2/11500134/aee120174551/ao4c07512_0001.jpg

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