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Physicochemical properties and antioxidant activity of gamma-oryzanol-loaded liposome formulations for topical use.

机译:局部使用γ-谷维素负载脂质体制剂的理化性质和抗氧化活性。

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The objective of this study is to prepare the gamma-oryzanol-loaded liposomes and investigate their physicochemical properties and antioxidant activity intended for cosmetic applications. Liposomes, Composing phosphatidylCholine (PC) and Cholesterol (Chol), CHAPS or sodium taurocholate (NaTC) were prepared by sonication method. Gamma-oryzanol-loaded liposomes were prepared by using 3, 5 and 10% gamma-oryzanol as an initial concentration. The formulation factors in a particular type and composition of lipid and initial drug loading on the physicochemical properties (i.e., particle size, zeta potential, entrapment efficiency, drug release) and antioxidant activity were studied. The particle sizes of bare liposomes were in nanometer range. The gamma-oryzanol-loaded liposomes in formulations of PC/CHAPS and PC/NaTC liposomes were smaller than PC/Chol liposomes. The incorporation efficiency of 10% gamma-oryzanol-loaded PC/Chol liposomes was less than gamma-oryzanol-loaded PC/CHAPS liposomes and PC/NaTC liposomes allowing higher in vitro release rate due to higher free gamma-oryzanol in buffer solution. The antioxidant activity of gamma-oryzanol-loaded liposomes was not different from pure gamma-oryzanol. Both gamma-oryzanol-loaded PC/CHAPS liposomes and PC/NaTC liposomes were showed to enhance the antioxidant activity in NHF cells. gamma-oryzanol-loaded PC/Chol liposomes demonstrated the lowest cytotoxicity in NHF cells. It was conceivably concluded that liposomes prepared in this study are suitable for gamma-oryzanol incorporation without loss of antioxidant activity.
机译:这项研究的目的是制备载有γ-谷维素的脂质体,并研究其理化性质和抗氧化活性,以用于化妆品。通过超声处理制备脂质体,磷脂酰胆碱(PC)和胆固醇(Chol),CHAPS或牛磺胆酸钠(NaTC)。通过使用3%,5%和10%的γ-谷维素醇作为初始浓度来制备γ-谷维素负载的脂质体。研究了脂质的特定类型和组成以及初始药物载量对理化性质(即粒径,ζ电势,包封效率,药物释放)和抗氧化剂活性的影响因素。裸露脂质体的粒径在纳米范围内。 PC / CHAPS和PC / NaTC脂质体制剂中的γ-谷维素脂质体负载量小于PC / Chol脂质体。 10%γ-谷维素负载的PC / Chol脂质体的掺入效率低于γ-谷维素负载的PC / CHAPS脂质体和PC / NaTC脂质体,由于缓冲溶液中游离γ-谷维素含量较高,因此体外释放速率更高。 γ-谷维素负载脂质体的抗氧化活性与纯γ-谷维素醇相同。载有γ-谷维素的PC / CHAPS脂质体和PC / NaTC脂质体均显示出可增强NHF细胞的抗氧化活性。 γ-谷维素负载的PC / Chol脂质体在NHF细胞中显示出最低的细胞毒性。可以得出这样的结论:在这项研究中制备的脂质体适用于γ-谷维素醇的掺入而不会丧失抗氧化活性。

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