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Investigation of Crystallization and Salt Formation of Poorly Water-Soluble Telmisartan for Enhanced Solubility

机译:水溶性差的替米沙坦增强溶解性的结晶和成盐研究

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摘要

The crystal changes and salt formation of poorly water-soluble telmisartan (TEL) in various solvents were investigated for enhanced solubility, stability and crystallinity. Polymorphic behaviors of TEL were characterized by dispersing in distilled water, acetone, acetonitrile, DMSO, or ethanol using Method I: without heat and then dried under vacuum at room temperature; and Method II: with heat below boiling temperature, cooled at 5 °C, and then dried under vacuum at 40 °C. For salt formation (Method III), the following four powdered mixtures were prepared by dispersing in solution of hydrochloric acid (HCl) (pH 1.2), TEL/HCl; in simulated gastric fluid (pH 1.2 buffer), TEL/simulated gastric fluid (SGF); in intestinal fluid (pH 6.8 buffer), TEL/simulated intestinal fluid (SIF); or in NaOH (pH 6.8), TEL/NaOH, respectively, and then dried under a vacuum at room temperature. The structures of powdered mixtures were then studied using a field emission scanning electron microscope (FESEM), differential scanning calorimetry (DSC), powder X-ray diffraction (PXRD), FTIR, 1H nuclear magnetic resonance (1H-NMR), and LC–MS. The solubility of TEL in powdered forms was performed in pH 6.8, pH 1.2, and distilled water. No polymorphic behaviors of TEL were observed in various solvents as characterized by FESEM, DSC, PXRD, and FTIR. However, the structural changes of powdered mixtures obtained from Method III were observed due to the formation of salt form. Moreover, the solubility of salt form (TEL/HCl) was highly increased as compared with pure TEL. There were no significant changes of TEL/HCl compared with TEL in the content assay, PXRD, DSC, and FTIR during stressed storage conditions at 40 °C/75% relative humidity (RH) for 4 weeks under the closed package condition. Therefore, the present study suggests the new approach for the enhanced stability and solubility of a poorly water-soluble drug via salt form.
机译:研究了水溶性差的替米沙坦(TEL)在各种溶剂中的晶体变化和成盐现象,以提高溶解度,稳定性和结晶度。 TEL的多晶型行为通过使用方法I分散在蒸馏水,丙酮,乙腈,DMSO或乙醇中来表征:不加热,然后在室温下真空干燥。方法II:加热至低于沸腾温度,冷却至5℃,然后在40℃真空干燥。为了形成盐(方法Ⅲ),通过将以下四种粉末混合物分散在盐酸(HCl)(pH 1.2),TEL / HCl溶液中制备。在模拟胃液(pH 1.2缓冲液),TEL /模拟胃液(SGF)中;在肠液(pH 6.8缓冲液)中,TEL /模拟肠液(SIF);或分别在NaOH(pH 6.8),TEL / NaOH中溶解,然后在室温下真空干燥。然后使用场发射扫描电子显微镜(FESEM),差示扫描量热法(DSC),粉末X射线衍射(PXRD),FTIR, 1 H核磁共振来研究粉末混合物的结构( 1 H-NMR)和LC-MS。粉末状TEL的溶解度在pH 6.8,pH 1.2和蒸馏水中进行。通过FESEM,DSC,PXRD和FTIR表征,在各种溶剂中均未观察到TEL的多态行为。然而,由于形成盐形式,观察到了从方法III获得的粉末状混合物的结构变化。而且,与纯TEL相比,盐形式(TEL / HCl)的溶解度大大提高。在密闭条件下,在40°C / 75%相对湿度(RH)的压力储存条件下放置4周,在含量测定,PXRD,DSC和FTIR中,TEL / HCl与TEL相比没有显着变化。因此,本研究提出了通过盐形式增强水溶性差的药物的稳定性和溶解性的新方法。

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