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首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >CaAl-layered double hydroxide as a drug delivery system: effects on solubility and toxicity of the antiretroviral efavirenz
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CaAl-layered double hydroxide as a drug delivery system: effects on solubility and toxicity of the antiretroviral efavirenz

机译:CaAl层状双氢氧化物作为药物输送系统:对抗逆转录病毒依非韦伦的溶解度和毒性的影响

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The use of layered double hydroxides associated with biologically active molecules is becoming a promising alternative in the development of drug delivery systems that may be applied to drug therapies for different diseases. Efavirenz is an antiretroviral belonging to class II of the biopharmaceutical classification system (low solubility, high permeability). Due to its low aqueous solubility, absorption problems occur in the gastrointestinal tract and, consequently, inadequate oral bioavailability. In this paper, the association between efavirenz and CaAl-layered double hydroxide was obtained by stirring in an acetonic solution until complete evaporation of the solvent. The hybrid material obtained was characterized by X-ray diffraction, differential scanning calorimetry and fourier transform infrared spectroscopy. It was observed that in systems containing up to 30 % of efavirenz, the drug became a molecule with amorphous characteristics and lost its crystalline character. This phenomenon can be demonstrateby the absence of the drug in crystalline plane diffractograms, as well as the absence of its melting point in thermal analysis. In the release test, these systems have been successful in increasing solubility. The system carrier-drug with 30 % of efavirenz was more promising with an increase of 558 % of soluble drug, compared to the drug alone. In antiproliferative activity on human macrophage cell lines, it was observed that the isolate efavirenz presented an IC50 value of 15.71 mg ml(-1), while the system carrierdrug with 30 % of efavirenz showed an IC50 value of 20.83 mg ml(-1), demonstrating that efavirenz in association with a CaAl-layered double hydroxide provided a reduction in drug toxicity.
机译:与生物活性分子相关的层状双氢氧化物的使用正成为药物递送系统发展的一种有前途的替代方法,该系统可以应用于针对不同疾病的药物治疗。依非韦伦是一种抗逆转录病毒,属于生物药物分类系统的II类(低溶解度,高渗透性)。由于其水溶性低,在胃肠道中发生吸收问题,因此口服生物利用度不足。在本文中,依法韦仑和CaAl层状双氢氧化物之间的缔合是通过在丙酮溶液中搅拌直至溶剂完全蒸发而获得的。通过X射线衍射,差示扫描量热法和傅立叶变换红外光谱对得到的杂化材料进行表征。据观察,在含有高达30%依非韦伦的系统中,该药物成为具有无定形特征的分子,并失去了其结晶特性。这种现象可以通过在结晶平面衍射图中不存在药物以及在热分析中不存在熔点来证明。在释放测试中,这些系统已成功提高了溶解度。与单独使用药物相比,含30%依非韦伦的系统载体药物前景看好,可溶性药物增加558%。在对人类巨噬细胞系的抗增殖活性中,观察到分离出的依非韦伦的IC50值为15.71 mg ml(-1),而含有依非韦伦的30%的系统载药的IC50值为20.83 mg ml(-1)。 ,证明依法韦仑与CaAl层状双氢氧化物结合可降低药物毒性。

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