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Liposomes for (trans)dermal drug delivery: the skin-PVPA as a novel in vitro stratum corneum model in formulation development

机译:用于(透)皮药物递送的脂质体:皮肤-PVPA作为制剂开发中的新型体外角质层模型

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Penetration potential of vesicles destined for trans(dermal) administration remains to be of great interests both in respect to drug therapy and cosmetic treatment. This study investigated the applicability of the phospholipid vesicle-based permeation assay (PVPA) as a novel in vitro skin barrier model for screening purposes in preformulation studies. Various classes of liposomes containing hydrophilic model drug were examined, including conventional liposomes (CLs), deformable liposomes (DLs) and propylene glycol liposomes (PGLs). The size, surface charge, membrane deformability and entrapment efficiency were found to be affected by the vesicle lipid concentration, the presence of the surfactant and propylene glycol. All liposomes exhibited prolonged drug release profiles with an initial burst effect followed by a slower release phase. The permeation of the drug from all of the tested liposomes, as assessed with the mimicked stratum corneum - PVPA model, was significantly enhanced as compared to the permeability of the drug in solution form. Although the DLs and the PGLs exhibited almost the same membrane elasticity, the permeability of the drug delivered by PGLs was higher (6.2 x 10(-6) cm/s) than DLs (5.5 x 10(-6) cm/s). Therefore, this study confirmed both the potential of liposomes as vesicles in trans(dermal) delivery and potential of the newly developed skin-PVPA for the screening and optimization of liposomes at the early preformulation stage.
机译:就药物治疗和美容治疗而言,预定用于经皮(皮肤)给药的囊泡的渗透潜力仍然引起人们极大的兴趣。这项研究调查了基于磷脂囊泡的渗透测定法(PVPA)作为新型体外皮肤屏障模型在预制剂研究中进行筛选的适用性。检查了包含亲水模型药物的各种脂质体,包括常规脂质体(CLs),可变形脂质体(DLs)和丙二醇脂质体(PGL)。发现大小,表面电荷,膜可变形性和包封效率受囊泡脂质浓度,表面活性剂和丙二醇的存在的影响。所有脂质体均表现出延长的药物释放曲线,具有初始爆发效应,随后是较慢的释放阶段。与溶液形式的药物的渗透性相比,用模拟的角质层-PVPA模型评估,药物从所有测试脂质体中的渗透显着增强。尽管DL和PGL表现出几乎相同的膜弹性,但PGL递送的药物渗透性(6.2 x 10(-6)cm / s)比DL(5.5 x 10(-6)cm / s)高。因此,这项研究证实了脂质体作为囊泡在透皮传递中的潜力,以及新开发的皮肤PVPA在预配制早期筛选和优化脂质体的潜力。

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