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Evaluation of the surface chemistry and drug-polymer interaction of semi-crystalline micro-particles for the development of controlled release formulations

机译:评价半结晶微粒的表面化学和药物-聚合物相互作用,以开发控释制剂

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摘要

This research work explores the surface chemistry and drug-polymer interaction in the manufactured controlled release micro-particles. Isoniazid (INH) was used as a model anti-tubercular drug while Eudragit® S100 (S100), Eudragit® L100-55 based co-processed Acryl EZE (EZE) and Ethylcellulose ECN10 (ECN10) were used as polymeric carriers. INH containing micro-particles were prepared using a mini spray dryer B-290 (Buchi, Switzerland). The drug polymer ratios were optimized at 1:1 and 1:3 to evaluate the effect of polymers on the release of the drug from the micro-particles. Solid state characterization via SEM and particle size analysis of the manufactured micro-particles showed densely aggregated spherical particles with a mean diameter <10 μm. The advanced surface analysis via EDS revealed a homogenous drug distribution on the spray dried micro-particles. The physico-chemical characterization carried out by using DSC and XRPD showed an increase in the amorphicity of the drug during the spray drying process while the chemical elemental analysis via XPS revealed a strong intermolecular interaction between the amine group of the drug and the carboxyl group of the polymers. As expected, the in vitro dissolution study showed a slow release pattern for the highly water soluble drug INH in acidic media (pH 1.2) for the first 2 h followed by a burst release upon changing the pH to 6.8. It was concluded that emerging spray drying processing can be used as a valuable tool to encapsulate drug for controlled release dosage forms by means of facilitating a possible drug/polymer interaction as outlined by novel XPS analysis.
机译:这项研究工作探讨了制成的控释微粒中的表面化学和药物-聚合物相互作用。异烟肼(INH)用作抗结核药物的模型,而Eudragit®S100(S100),基于Eudragit®L100-55的共处理的丙烯酸EZE(EZE)和乙基纤维素ECN10(ECN10)被用作聚合物载体。使用小型喷雾干燥器B-290(瑞士布奇)制备含INH的微粒。将药物聚合物的比例优化为1:1和1:3,以评估聚合物对药物从微粒中释放的影响。通过SEM进行的固态表征和制得的微粒的粒度分析显示出致密聚集的球形颗粒,平均直径<10μm。通过EDS进行的高级表面分析表明,药物在喷雾干燥的微粒上分布均匀。使用DSC和XRPD进行的理化表征表明,在喷雾干燥过程中药物的非晶性增加,而通过XPS进行的化学元素分析表明,药物的胺基与羧基的羧基之间存在强烈的分子间相互作用。聚合物。如预期的那样,体外溶出度研究显示了高水溶性药物INH在酸性介质(pH 1.2)中的前2 h缓慢释放模式,随后在将pH值更改为6.8时突然释放。结论是,新兴的喷雾干燥工艺可通过促进新型XPS分析所概述的可能的药物/聚合物相互作用,而成为封装控释剂型药物的有价值的工具。

著录项

  • 来源
    《Materials science & engineering》 |2017年第7期|559-567|共9页
  • 作者单位

    Faculty of Engineering and Sciences, University of Greenwich, Chatham Maritime, Chatham, Kent ME4 4TB, United Kingdom;

    Faculty of Engineering and Sciences, University of Greenwich, Chatham Maritime, Chatham, Kent ME4 4TB, United Kingdom;

    Faculty of Engineering and Sciences, University of Greenwich, Chatham Maritime, Chatham, Kent ME4 4TB, United Kingdom;

    Department of Pharmacy, School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9QG, United Kingdom,Drug Applied Research Center and Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran;

    Department of Pharmacy, School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9QG, United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microencapsulation; Spray drying; Controlled release; Amorphous; Crystalline; Micro-particles;

    机译:微囊化;喷雾干燥;控释;非晶态结晶;微粒子;

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