首页> 外文期刊>Journal of pharmaceutical sciences. >Solid-state characterization of novel active pharmaceutical ingredients: cocrystal of a salbutamol hemiadipate salt with adipic acid (2:1:1) and salbutamol hemisuccinate salt.
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Solid-state characterization of novel active pharmaceutical ingredients: cocrystal of a salbutamol hemiadipate salt with adipic acid (2:1:1) and salbutamol hemisuccinate salt.

机译:新型活性药物成分的固态表征:沙丁胺醇半己二酸盐与己二酸(2:1:1)和沙丁胺醇半琥珀酸盐的共结晶。

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摘要

The production of salt or cocrystalline forms is a common approach to alter the physicochemical properties of pharmaceutical compounds. The goal of this work was to evaluate the impact of anion choice (succinate, adipate, and sulfate) on the physicochemical characteristics of salbutamol forms. Novel crystals of salbutamol were produced by solvent evaporation: a cocrystal of salbutamol hemiadipate with adipic acid (salbutamol adipate, SA), salbutamol hemisuccinate tetramethanolate (SSU.MeOH), and its desolvated form (SSU). The crystalline materials obtained were characterized using thermal, X-ray, nuclear magnetic resonance, Fourier transform infrared spectroscopy, dynamic vapor sorption (DVS), and elemental analysis. The crystal forms of SA and SSU.MeOH were determined to be triclinic, (Pi), and monoclinic, (P2(1) ), respectively. DVS analysis confirmed that SSU and SA do not undergo hydration under increased relative humidity. Both thermal and elemental analyses confirmed the stoichiometry of the salt forms. The aqueous solubilities of SA and SSU were measured to be 82 +/- 2 mg/mL (pH 4.5 +/- 0.1) and 334 +/- 13 mg/mL (pH 6.6 +/- 0.1), respectively. Measured values corresponded well with the calculated pH solubility profiles. The intrinsic dissolution rate of cocrystallized SA was approximately four times lower than that of SSU, suggesting its use as an alternative to more rapidly dissolving salbutamol sulfate.
机译:盐或共晶形式的产生是改变药物化合物的理化性质的常用方法。这项工作的目的是评估阴离子选择(琥珀酸,己二酸和硫酸根)对沙丁胺醇形式的理化特性的影响。通过溶剂蒸发制备了沙丁胺醇的新型晶体:沙丁胺醇半己二酸酯与己二酸(沙丁胺醇己二酸酯,SA),沙丁胺醇半琥珀酸酯四甲醇酸酯(SSU.MeOH)的共晶体及其去溶剂化形式(SSU)。使用热,X射线,核磁共振,傅立叶变换红外光谱,动态蒸气吸附(DVS)和元素分析对获得的结晶材料进行表征。 SA和SSU.MeOH的晶型分别确定为三斜晶(Pi)和单斜晶(P2(1)/ n)。 DVS分析证实,SSU和SA在相对湿度增加的情况下不会发生水合作用。热分析和元素分析均证实了盐形式的化学计量。 SA和SSU的水溶解度分别为82 +/- 2 mg / mL(pH 4.5 +/- 0.1)和334 +/- 13 mg / mL(pH 6.6 +/- 0.1)。测量值与计算出的pH溶解度曲线非常吻合。共结晶SA的固有溶解速率比SSU低约四倍,这表明它可替代速溶性沙丁胺醇硫酸盐。

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