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Role of excipients in the crystallization of Albendazole

机译:赋形剂在阿苯达唑结晶中的作用

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Cocrystallization of drugs in presence of excipients can become an effective tool to improve physicochemical and mechanical properties of drugs which may ultimately affect its bioavailability and manufacturability. Aim of present investigation was to understand the influence Benzoic acid (BA) on recrystallization behavior of Albendazole (ABZ) using slow (conventional) evaporation technique. Benzoic acid treated crystals showed a unique melting behavior, improved solubility (12.53 folds) and dissolution rate (8.6 folds) with higher drug content (72.17%). Control batch crystals showed a possibility of a new crystalline form with much improved properties. SEM photographs revealed bigger and plate-shaped BA treated crystals with aspect ratio near to unity which improved flow and packability of crystals. Heckel parameters suggested greater plastic deformation and high tensile strength with negligible elastic recovery compared with pure drug. FT-IR studies assumed a formation of hydrogen bond between drug and excipient. Treated crystals were stable even after six months of accelerated stability study. Use of directly compressible excipients could be minimized in the tablet formulation in case of treated crystals. Pharmacokinetic study showed improved (3.42 times) in vivo performance in rats. In this study, improvement in physicomechanical and pharmacokinetic parameters of Albendazole by its cocrystallization could be highlighted. (C) 2015 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在赋形剂存在下药物的共结晶可以成为改善药物理化和机械性能的有效工具,这些药物可能最终影响其生物利用度和可制造性。本研究的目的是了解使用慢速(常规)蒸发技术,苯甲酸(BA)对阿苯达唑(ABZ)的重结晶行为的影响。苯甲酸处理的晶体表现出独特的熔融行为,溶解度提高(12.53倍),溶出度提高(8.6倍),药物含量更高(72.17%)。对照批晶体显示出具有性质大大改善的新晶形的可能性。 SEM照片显示,较大和板状BA处理的晶体的纵横比接近于1,从而改善了晶体的流动性和可包装性。与纯药物相比,Heckel参数表明更大的塑性变形和较高的拉伸强度,且弹性回复率可忽略不计。 FT-IR研究假设药物和赋形剂之间形成氢键。经过六个月的加速稳定性研究后,处理过的晶体仍然稳定。对于经处理的晶体,可以将片剂制剂中可直接压缩的赋形剂的使用减至最少。药代动力学研究显示,大鼠体内性能提高了(3.42倍)。在这项研究中,可以强调通过阿苯达唑的共结晶改善其物理力学和药代动力学参数。 (C)2015年日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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