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Impact of Quercetin Encapsulation with Added Phytosterols on Bilayer Membrane and Photothermal-Alteration of Novel Mixed Soy Lecithin-Based Liposome

机译:添加植物蛋白酶对双层膜上的植物蛋白溶胶的影响及新型混合大豆卵磷脂基脂质体的光热改变

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摘要

This study used highly lipophilic agents with an aim to increase the oxidant inhibitory activity and enhance photothermal stability of a novel mixed soy lecithin (ML)-based liposome by changing the composition of formulation within the membrane. Specifically, the development and optimization of the liposome intended for improving Trolox equivalent antioxidant capacity (TEAC) value and %TEAC loss was carried out by incorporating a natural antioxidant, quercetin (QU). In this context, a focus was set on QU encapsulation in ML-based liposomes and the concentration-dependent solubility of QU was investigated and calculated as encapsulation efficiency (EE). To explore the combined effects of the incorporation of plant sterols on the integrity and entrapment capacity of mixed phospholipid vesicles, conjugation of two types of phytosterols (PSs), namely β-sitosterol (βS) and stigmasterol (ST), to mixed membranes at different ratios was also performed. The EE measurement revealed that QU could be efficiently encapsulated in the stable ML-based liposome using 0.15 and 0.1 g/100 mL of βS and ST, respectively. The aforementioned liposome complex exhibited a considerable TEAC (197.23%) and enhanced TEAC loss (30.81%) when exposed to ultraviolet (UV) light (280–320 nm) over a 6 h duration. It appeared that the presence and type of PSs affect the membrane-integration characteristics as well as photodamage transformation of the ML-based liposome. The association of QU with either βS or ST in the formulation was justified by their synergistic effects on the enhancement of the EE of liposomes. Parallel to this, it was demonstrated that synergistic PS effects could be in effect in the maintenance of membrane order of the ML-based liposome. The findings presented in this study provided useful information for the development and production of stable QU-loaded ML-based liposomes for food and nutraceutical applications and could serve as a potential mixed lipids-based delivery system in the disease management using antioxidant therapy.
机译:该研究使用高亲脂性药剂的目的是通过改变膜内的制剂组合物来增加氧化剂抑制活性并提高基于混合大豆卵磷脂(ML)的脂质体的光热稳定性。具体地,通过掺入天然抗氧化剂,槲皮素(QU)来进行用于改善Troolox当量抗氧化能力(TeaC)值和%TeaC损失的脂质体的开发和优化。在这种情况下,将焦点在基于mL的脂质体中进行QU封装,并研究曲的浓度依赖性溶解度并计算为封装效率(EE)。探讨植物甾醇掺入对混合磷脂囊泡的完整性和夹带能力的组合效果,两种植物甾醇(PSS)的缀合,即β-谷甾醇(βS)和甾醇(ST),在不同的混合膜上还进行了比率。 EE测量表明,分别可以使用0.15和0.1g / 100mlβ和st有效地封装在稳定的ML基脂质体中。上述脂质体复合物在6小时内暴露于紫外线(UV)光(280-320nm)时表现出相当大的茶(197.23%)和增强的茶杯损失(30.81%)。它似乎PSS的存在和类型影响膜 - 积分特性以及基于ML的脂质体的光电模压。通过其在制剂中与βS或ST的曲调的关联是通过对脂质体EE的增强的协同作用来典范。并行于此,证明了协同PS效应可以在维持基于ML的脂质体的膜序中生效。本研究中提出的调查结果为食品和营养素应用的稳定Qu加载ML的脂质体提供了有用的信息,并且可以用作使用抗氧化治疗的疾病管理中的潜在混合脂质的递送系统。

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