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无定形药物递送系统:分子层面、设计与性能

Amorphous drug delivery systems: molecular aspects, design, and performance.

作者信息

Kaushal Aditya Mohan, Gupta Piyush, Bansal Arvind Kumar

机构信息

Department of Pharmaceutical Technology (Formulations), National Institute of Pharmaceutical Education and Research (NIPER), S.A.S. Nagar, Punjab, India.

出版信息

Crit Rev Ther Drug Carrier Syst. 2004;21(3):133-93. doi: 10.1615/critrevtherdrugcarriersyst.v21.i3.10.

Abstract

The biopharmaceutical properties-especially the solubility and permeability-of a molecule contribute to its overall therapeutic efficacy. The newer tools of drug discovery have caused a shift in the properties of drug-like compounds, resulting in drugs with poor aqueous solubility and permeability, which offer delivery challenges, thus requiring considerable pharmaceutical manning. The modulation of solubility is a more viable option for enhancing bioavailability than permeability, because of the lack of "safe" approaches to enhance the latter. Solid-state manipulation in general, and amorphization in particular, are preferred ways of enhancing solubility and optimizing delivery of poorly soluble drugs. This review attempts to address the diverse issues pertaining to amorphous drug delivery systems. We discuss the various thermodynamic phenomenon such as glass transition, fragility, molecular mobility, devitrification kinetics, and molecular-level chemical interactions that contribute to the ease of formation, the solubility advantage, and the stability of amorphous drugs. The engineering of pharmaceutical alloys by solubilizing and stabilizing carriers, commonly termed solid dispersions, provide avenues for exploiting the benefits of amorphous systems. Carrier properties, mechanisms of drug release, and study of release kinetics help to improve the predictability of performance. The review also addresses the various barriers in the design of amorphous delivery systems, use of amorphous form in controlled release delivery systems, and their in vivo performance.

摘要

分子的生物制药特性,尤其是溶解度和渗透性,会影响其整体治疗效果。药物研发的新工具导致类药物化合物的特性发生了变化,产生了水溶性和渗透性较差的药物,这带来了给药挑战,因此需要大量的药物制剂技术。由于缺乏增强渗透性的“安全”方法,调节溶解度是提高生物利用度比增强渗透性更可行的选择。一般来说,固态操作,特别是非晶化,是提高难溶性药物溶解度和优化给药的首选方法。本综述试图探讨与非晶态药物递送系统相关的各种问题。我们讨论了各种热力学现象,如玻璃化转变、脆性、分子流动性、析晶动力学和分子水平的化学相互作用,这些现象有助于非晶态药物的形成、溶解度优势和稳定性。通过溶解和稳定载体来设计药物合金,通常称为固体分散体,为利用非晶态系统的优势提供了途径。载体特性、药物释放机制和释放动力学研究有助于提高性能的可预测性。本综述还讨论了非晶态递送系统设计中的各种障碍、在控释递送系统中使用非晶态形式及其体内性能。

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