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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Polymorphic characterization and implications on biopharmaceutics properties of potential anti-inflammatory drug candidate eremantholide C from Lychnophora trichocarpha (Brazilian Arnica)
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Polymorphic characterization and implications on biopharmaceutics properties of potential anti-inflammatory drug candidate eremantholide C from Lychnophora trichocarpha (Brazilian Arnica)

机译:来自Lychnophora trichocarpha(巴西山脉)潜在抗炎药物候选矿物胚层C的多态性特征及其对潜在抗炎药物候选酯族的影响

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摘要

Objectives To perform the polymorphic and physicochemical characterization of the potential anti-inflammatory drug, eremantholide C (EREC), as well as to evaluate the influence of these characteristics on its biopharmaceutics classification. Methods Eremantholide C was obtained from chloroformic extract of Lychnophora trichocarpha and crystallized in two distinct solvents: chloroform (EREC 1) and ethyl acetate (EREC 2). To evaluate the polymorphism, EREC samples were submitted to melting point, purity, infrared spectroscopy, differential scanning calorimetry (DSC), X-ray powder diffraction, optical microscopy and scanning electron microscopy analysis. In addition, EREC samples crystallized after intrinsic dissolution study were submitted to DSC and X-ray powder diffraction analysis. Key findings EREC 1 showed fusion at 234.7-241.6 degrees C, while EREC 2 showed fusion at 238.6-243.7 degrees C. No polymorphic transitions were observed during the intrinsic dissolution experiment. A single sharp endothermic peak was obtained for the EREC samples. X-ray diffraction showed no crystallographic differences between the EREC samples. EREC 1 and EREC 2 showed birefringence under polarized light and indefinite morphology; however, the shape of the crystals was common to the two samples. Conclusions Eremantholide C does not present classical or morphological polymorphism; therefore, there is no influence of crystalline transitions in the solubility and consequently in its biopharmaceutics classification and oral absorption process.
机译:目的是进行潜在的抗炎药物,EREMANTHEDE C(EREC)的多态性和物理化学表征,以及评估这些特征对其生物制冷分类的影响。方法从氯妥洛氏菌属的氯仿提取物中获得EREMANTHELINE C,并在两个不同的溶剂中结晶:氯仿(EREC 1)和乙酸乙酯(EREC 2)。为了评估多态性,EREC样品被提交至熔点,纯度,红外光谱,差扫描量热法(DSC),X射线粉末衍射,光学显微镜和扫描电子显微镜分析。此外,在内在溶解研究后结晶的EREC样品被提交至DSC和X射线粉末衍射分析。钥匙发现EREC 1显示融合在234.7-241.6℃,而EREC 2在238.6-243.7℃下显示融合。在内在溶解实验期间没有观察到多晶型转变。获得EREC样品的单个尖锐的吸热峰。 X射线衍射显示EREC样品之间没有结晶差异。 EREC 1和EREC 2在偏振光和无限性形态下显示了双折射;然而,晶体的形状对于两个样品是常见的。结论Eremanthelide C不存在古典或形态多态性;因此,在其溶解度中没有晶体过渡的影响,因此在其生物制药学分类和口服吸收过程中。

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