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Structural Study of (Hydroxypropyl)Methyl Cellulose Microemulsion-Based Gels Used for Biocompatible Encapsulations

机译:用于生物相容性包封的(羟丙基)甲基纤维素微乳液基凝胶的结构研究

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摘要

(Hydroxypropyl)methyl cellulose (HPMC) can be used to form gels integrating a w/o microemulsion. The formulation in which a microemulsion is mixed with a hydrated HPMC matrix has been successfully used as a carrier of biocompatible ingredients. However, little is known about the structure of these systems. To elucidate this, scanning electron microscopy was used to examine the morphology and the bulk of the microemulsion-based gels (MBGs) and small-angle X-ray scattering to clarify the structure and detect any residual reverse micelles after microemulsion incorporation in the gel. Electron paramagnetic resonance spectroscopy was applied using spin probes to investigate the polar and non-polar areas of the gel. Furthermore, the enzyme-labelling technique was followed to investigate the location of an enzyme in the matrix. A structural model for HPMC matrix is proposed according to which, although a w/o microemulsion is essential to form the final gel, no microemulsion droplets can be detected after incorporation in the gel. Channels are formed by the organic solvent (oil), which are coated by surfactant molecules and a water layer in which the enzyme can be hosted.
机译:(羟丙基)甲基纤维素(HPMC)可用于形成整合W / O微乳液的凝胶。将微乳液与水合HPMC基质混合的制剂已成功地用作生物相容性成分的载体。但是,关于这些系统的结构很少。为了阐明这一点,使用扫描电子显微镜检查了微乳液的凝胶(MBG)和小角X射线散射的形态和大部分,以澄清结构并检测微乳液在凝胶中掺入后的任何残留的反向胶束。使用旋转探针施加电子顺磁共振光谱,研究凝胶的极性和非极性区域。此外,遵循酶标记技术以研究基质中酶的位置。提出了一种用于HPMC基质的结构模型,尽管W / O微乳液是形成最终凝胶的必需品,但在凝胶中掺入后,不能检测微乳液液滴。通道由有机溶剂(油)形成,所述有机溶剂(油)由表面活性剂分子和水层涂覆,其中酶可以追踪。

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