Calienni Maria Natalia, Martínez Luis Manuel, Izquierdo Maria Cecilia, Alonso Silvia Del Valle, Montanari Jorge
Laboratorio de Bio-Nanotecnología, Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, Bernal 1876, Argentina.
Grupo de Biología Estructural y Biotecnología (GBEyB), IMBICE (CONICET CCT-La Plata), La Plata 1906, Argentina.
Pharmaceutics. 2023 Sep 27;15(10):2392. doi: 10.3390/pharmaceutics15102392.
The rheological and viscoelastic properties of hybrid formulations composed of vehicles designed for cutaneous topical application and loaded with ultradeformable liposomes (UDL) were assessed. UDL were selected for their established ability to transport both lipophilic and hydrophilic compounds through the skin, and are applicable in pharmaceuticals and cosmetics. Formulations underwent flow analysis and were fitted to the Herschel-Bulkley model due to their prevalent non-Newtonian behavior in most cases. Linear viscoelastic regions (LVR) were identified, and G' and G″ moduli were determined via frequency sweep steps, considering the impact of temperature and aging. The formulations exhibited non-Newtonian behavior with pseudoplastic traits in most cases, with UDL incorporation inducing rheological changes. LVR and frequency sweep tests indicated predominantly elastic solid behavior, with G' higher than G″, at different temperatures and post-production times. Tan δ values also illustrated a predominant solid-like behavior over liquid. This study provides pivotal insights into the rheological and viscoelastic features of topical formulations, emphasizing the crucial role of meticulous vehicle and formulation selection when incorporating UDL or analogous liposomal drug delivery systems.
对由用于皮肤局部应用的载体组成并负载超可变形脂质体(UDL)的混合制剂的流变学和粘弹性进行了评估。选择UDL是因为其具有既定的通过皮肤转运亲脂性和亲水性化合物的能力,并且适用于制药和化妆品领域。由于制剂在大多数情况下普遍具有非牛顿行为,因此对其进行了流动分析并拟合到赫谢尔-布尔克利模型。确定了线性粘弹性区域(LVR),并通过频率扫描步骤确定了G'和G''模量,同时考虑了温度和老化的影响。在大多数情况下,制剂表现出具有假塑性特征的非牛顿行为,加入UDL会引起流变学变化。LVR和频率扫描测试表明,在不同温度和生产后时间下,制剂主要表现为弹性固体行为,G'高于G''。Tan δ值也表明其主要表现为类似固体而非液体的行为。本研究为局部制剂的流变学和粘弹性特征提供了关键见解,强调了在加入UDL或类似脂质体药物递送系统时精心选择载体和制剂的关键作用。