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Development and characterization of biocompatible isotropic and anisotropic oil-in-water colloidal dispersions as a new delivery system for methyl dihydrojasmonate antitumor drug

机译:生物相容性各向同性和各向异性水包油胶体分散体的开发和表征,作为二氢茉莉酮酸甲酯抗肿瘤药的新型输送系统

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摘要

Microemulsions (MEs) are colloidal systems that can be used for drug-delivery and drug-targeting purposes. These systems are able to incorporate drugs modifying bioavailability and stability and reducing toxic effects. The jasmonate compounds belong to a group of plant stress hormones, and the jasmonic acid and its methyl ester derivative have been described as having anticancer activity. However, these compounds are very poorly water-soluble, not allowing administration by an intravenous route without an efficient nanostructured carrier system. In this work, biocompatible MEs of appropriate diameter size for intravenous route administration, loaded and unloaded with methyl dihydrojasmonate (MJ), were developed and described in a pseudo-ternary phase diagram. The compositions of the MEs were carefully selected from their own regions in the pseudo-ternary phase diagram. The formulations were analyzed by light scattering, polarized light microscopy, and X-ray diffraction. Also, a study on rheological profile was performed. The results showed that the droplet size decreased with both MJ incorporation and oil phase/surfactant ratio. All compositions of the studied MEs showed rheological behavior of pseudoplastic fluid and amorphous structures. In the absence of MJ, most of the studied MEs had thixotropic characteristics, which became antithixotropic in the presence of the drug. Almost all MJ-unloaded MEs presented anisotropic characteristics, but some formulations became isotropic, especially in the presence of MJ. The results of this study support the conclusion that the studied system represents a promising vehicle for in vivo administration of the MJ antitumor drug.
机译:微乳(MEs)是胶体系统,可用于药物递送和靶向药物。这些系统能够掺入可改善生物利用度和稳定性并减少毒性作用的药物。茉莉酸酯化合物属于植物胁迫激素的组,并且茉莉酸及其甲酯衍生物已被描述为具有抗癌活性。但是,这些化合物的水溶性非常差,如果没有有效的纳米结构载体系统,则不允许通过静脉途径给药。在这项工作中,开发了具有适当直径尺寸的生物相容性MEs,用于静脉内途径给药,装载和卸载了二氢茉莉酮酸甲酯(MJ),并在伪三元相图中进行了描述。在伪三元相图中,从它们自己的区域中仔细选择了ME的成分。通过光散射,偏光显微镜和X射线衍射分析制剂。另外,进行了流变学研究。结果表明,随着MJ掺入和油相/表面活性剂比率的增加,液滴尺寸减小。所研究的ME的所有组成均显示假塑性流体和无定形结构的流变行为。在没有MJ的情况下,大多数研究的ME具有触变特性,在存在药物的情况下变为抗触变特性。几乎所有未加载MJ的ME都具有各向异性,但是某些配方变得各向同性,尤其是在MJ存在的情况下。这项研究的结果支持这样的结论,即所研究的系统代表了一种在体内施用MJ抗肿瘤药物的有希望的载体。

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