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Evaluation of formulation properties and skin penetration in the same additive-containing formulation

机译:在相同的含添加剂配方中评估配方性能和皮肤渗透性

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摘要

The aim of this study is to examine the physicochemical properties of the external preparation, the effect on the skin permeability and the human senses. Miconazole nitrate cream formulation (MCZ-A: bland name and MCZ-B, −C, −D: generics) to measure the physicochemical properties, was performed by the skin permeation test and human sensory test. The flattening, viscoelasticity, and water content of each cream were measured and each cream was subjected to near-infrared (NIR) absorption spectroscopy and human sensory testing. The yield value was calculated based on measured flattening and was 734.8 dynes/cm2 for MCZ-A, 1198.9 dynes/cm2 for MCZ-B, 461.3 dynes/cm2 for MCZ-C and 3112.3 dynes/cm2 for MCZ-D. Measurement of viscoelasticity and viscosity revealed that MCZ-C had a smaller tanδ than the other 3 creams at 25 °C. NIR absorption spectroscopy revealed that MCZ-A had the highest absorption peak due to hydroxyl groups, followed by MCZ-C, −B, and then −D. Measurement of water content revealed that MCZ-A had a water content of 65.9%, MCZ-B, −C, and −D had a water content of around 56.3%. Human sensory testing revealed differences between MCZ-A and MCZ-C and between MCZ-B and MCZ-D in terms of spreadability and feel. These findings indicate that differences in water and oil content and emulsification resulted in the creams having different physical properties, such as flattening, internal structure, and dynamic viscoelasticity. NIR absorption spectroscopy, which allows non-destructive measurement of a sample’s physicochemical properties, and measurement of viscoelasticity and viscosity, which allows measurement of a sample’s dynamic viscoelasticity, revealed differences in the physical properties of creams. The skin permeation test, skin MCZ amount was 7.48 µg/cm2 for MCZ-A, 5.11 µg/cm2 for MCZ-B, 12.08 µg/cm2 for MCZ-C and 3.75 µg/cm2 for MCZ-D. In addition, since the drug spread is good about the skin migration, spreadability is affecting the potential dermal transfer.
机译:这项研究的目的是检查外用制剂的理化性质,对皮肤渗透性和人类感官的影响。通过皮肤渗透测试和人体感官测试进行了硝酸咪康唑乳膏配方(MCZ-A:平淡的名称和MCZ-B,-C,-D:通用),以测量其理化性质。测量每种乳霜的扁平度,粘弹性和水含量,并对每种乳霜进行近红外(NIR)吸收光谱和人体感官测试。根据测得的展平度计算出屈服值,MCZ-A为734.8 dynes / cm 2 ,MCZ-B为1198.9 dynes / cm 2 ,461.3 dynes / cm <适用于MCZ-C的sup> 2 和适用于MCZ-D的3112.3 dynes / cm 2 。粘弹性和粘度的测量结果表明,在25°C下,MCZ-C的tanδ小于其他3种乳膏。 NIR吸收光谱显示,由于羟基,MCZ-A的吸收峰最高,其次是MCZ-C,-B和-D。水含量的测量显示MCZ-A具有65.9%的水含量,MCZ-B,-C和-D具有约56.3%的水含量。人体感官测试显示,MCZ-A和MCZ-C之间以及MCZ-B和MCZ-D之间在可扩展性和手感方面存在差异。这些发现表明,水和油含量和乳化性的差异导致乳膏具有不同的物理性质,例如变平,内部结构和动态粘弹性。 NIR吸收光谱法可以无损测量样品的理化性质,粘弹性和粘度也可以测量样品的动态粘弹性,从而揭示了乳霜的物理性能差异。皮肤渗透测试,MCZ-A的皮肤MCZ量为7.48 µg / cm 2 ,MCZ-B的皮肤MCZ量为5.11 µg / cm 2 ,12.08 µg / cm MCZ-C为2 ,MCZ-D为3.75 µg / cm 2 。另外,由于药物散布对皮肤的迁移有好处,所以散布性会影响潜在的皮肤转移。

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