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首页> 外文期刊>Brazilian Journal of Pharmaceutical Sciences >Preparation, characterization and evaluation of the in vivo trypanocidal activity of ursolic acid-loaded solid dispersion with poloxamer 407 and sodium caprate
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Preparation, characterization and evaluation of the in vivo trypanocidal activity of ursolic acid-loaded solid dispersion with poloxamer 407 and sodium caprate

机译:泊洛沙姆407和癸酸钠负载熊酸的固体分散体的体内杀锥团活性的制备,表征和评价

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Ursolic acid is a promising candidate for treatment of Chagas disease; however it has low aqueous solubility and intestinal absorption, which are both limiting factors for bioavailability. Among the strategies to enhance the solubility and dissolution of lipophilic drugs, solid dispersions are growing in popularity. In this study, we employed a mixture of the surfactants poloxamer 407 with sodium caprate to produce a solid dispersion containing ursolic acid aimed at enhancing both drug dissolution and in vivo trypanocidal activity. Compared to the physical mixture, the solid dispersion presented higher bulk density and smaller particle size. Fourier Transform Infrared Spectroscopy results showed hydrogen bonding intermolecular interactions between drug and poloxamer 407. X-ray diffractometry experiments revealed the conversion of the drug from its crystalline form to a more soluble amorphous structure. Consequently, the solubility of ursolic acid in the solid dispersion was increased and the drug dissolved in a fast and complete manner. Taken together with the oral absorption-enhancing property of sodium caprate, these results explained the increase of the in vivo trypanocidal activity of ursolic acid in solid dispersion, which also proved to be safe by cytotoxicity evaluation using the LLC-MK2 cell line.
机译:熊果酸是治疗南美锥虫病的有前途的候选药物;然而,它具有低的水溶性和肠吸收性,它们都是生物利用度的限制因素。在提高亲脂性药物的溶解性和溶解性的策略中,固体分散体的受欢迎程度越来越高。在这项研究中,我们使用了表面活性剂泊洛沙姆407和癸酸钠的混合物,以产生包含熊果酸的固体分散体,旨在同时增强药物溶解和体内锥虫活性。与物理混合物相比,固体分散体具有较高的堆积密度和较小的粒度。傅立叶变换红外光谱的结果表明,药物与泊洛沙姆407之间存在氢键分子间相互作用。X射线衍射实验表明,药物从其晶体形式转变为更易溶的无定形结构。因此,熊果酸在固体分散体中的溶解度增加并且药物以快速且完全的方式溶解。结合癸酸钠的口服吸收增强特性,这些结果解释了熊果酸在固体分散体中的体内锥虫杀伤活性的增加,这通过使用LLC-MK2细胞系进行细胞毒性评估也被证明是安全的。

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