Singh Bhupinder, Bhatowa Rahul, Tripathi Chandra Bhushan, Kapil Rishi
University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, India .
Int J Pharm Investig. 2011 Apr;1(2):75-87. doi: 10.4103/2230-973X.82395.
Of late, micro and nanoparticluate drug delivery systems have been gaining immense importance primarily attributed to their improved drug release controlling and targeting efficiencies. Also, the small particle size and desirable surface charge associated with these delivery systems render them suitable for specific applications like lymphatic uptake, pulmonary uptake, tumor targeting, brain targeting, etc. For decades, micro and nanoparticulate systems have been prepared by the conventional "trial and error" approach of changing One Variable at a Time (OVAT). Using this methodology, the solution of a specific problematic formulation characteristic can certainly be achieved, but attainment of the true optimal composition is never guaranteed. Thus, the present manuscript provides an updated account of the systematic approach "Design of Experiments (DoE)" as applicable to formulation development of microparticles and nanostructured systems. Besides providing a bird's eye view of the various experimental designs and optimization techniques employed for DoE optimization of such systems, the present manuscript also presents a copilation of the major micro/nano-structuctred systems optimized through DoE till date. In a nutshell, the article will act both as a ready reckoner of DoE optimization of micro/nano drug delivery systems and a catalyst in providing an impetus to young pharmaceutical "nano & micro" researchers to venture into the rewarding field of systematic DoE optimization.
近年来,微米和纳米颗粒药物递送系统变得极其重要,这主要归因于它们在改善药物释放控制和靶向效率方面的表现。此外,这些递送系统的小粒径和理想的表面电荷使其适用于淋巴摄取、肺部摄取、肿瘤靶向、脑靶向等特定应用。几十年来,微米和纳米颗粒系统一直是通过传统的“一次改变一个变量”(OVAT)的“试错”方法制备的。使用这种方法,特定有问题的制剂特性的解决方案当然可以实现,但真正的最佳组成却无法保证。因此,本手稿提供了一种适用于微粒和纳米结构系统制剂开发的系统方法“实验设计(DoE)”的最新情况。除了鸟瞰用于此类系统DoE优化的各种实验设计和优化技术外,本手稿还列出了迄今为止通过DoE优化的主要微/纳米结构系统。简而言之,本文将既是微/纳米药物递送系统DoE优化的现成参考资料,也是推动年轻的制药“纳米与微米”研究人员涉足系统DoE优化这一有意义领域的催化剂。