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首页> 外文期刊>Drug development and industrial pharmacy >Non-destructive monitoring of creaming of oil-in-water emulsion-based formulations using magnetic resonance imaging
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Non-destructive monitoring of creaming of oil-in-water emulsion-based formulations using magnetic resonance imaging

机译:基于磁共振成像的水包油型乳化剂配方的无损监控

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摘要

A non-destructive method for monitoring creaming of emulsion-based formulations is in great demand because it allows us to understand fully their instability mechanisms. This study was aimed at demonstrating the usefulness of magnetic resonance (MR) techniques, including MR imaging (MRI) and MR spectroscopy (MRS), for evaluating the physicochemical stability of emulsion-based formulations. Emulsions that are applicable as the base of practical skin creams were used as test samples. Substantial creaming was developed by centrifugation, which was then monitored by MRI. The creaming oil droplet layer and aqueous phase were clearly distinguished by quantitative MRI by measuring T-1 and the apparent diffusion coefficient. Components in a selected volume in the emulsions could be analyzed using MRS. Then, model emulsions having different hydrophilic-lipophilic balance (HLB) values were tested, and the optimal HLB value for a stable dispersion was determined. In addition, the MRI examination enables the detection of creaming occurring in a polyethylene tube, which is commonly used for commercial products, without losing any image quality. These findings strongly indicate that MR techniques are powerful tools to evaluate the physicochemical stability of emulsion-based formulations. This study will make a great contribution to the development and quality control of emulsion-based formulations.
机译:监控乳液基配方乳膏的非破坏性方法非常需要,因为它可以让我们充分了解其不稳定性机理。这项研究旨在证明磁共振(MR)技术(包括MR成像(MRI)和MR光谱学(MRS))在评估乳液型制剂的理化稳定性方面的有用性。可用作实用护肤霜基础的乳剂用作测试样品。通过离心产生大量乳脂,然后通过MRI进行监测。通过测量T-1和表观扩散系数,通过定量MRI清楚地区分了乳脂状油滴层和水相。可以使用MRS分析乳液中选定体积的成分。然后,测试具有不同亲水-亲脂平衡(HLB)值的模型乳液,并确定稳定分散体的最佳HLB值。另外,MRI检查能够检测在通常用于商业产品的聚乙烯管中发生的乳脂状,而不会损失任何图像质量。这些发现强烈表明,MR技术是评估乳液型制剂理化稳定性的有力工具。这项研究将为乳液型配方的开发和质量控制做出巨大贡献。

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