Otto Daniel P, Otto Anja, de Villiers Melgardt M
North-West University, Research Focus Area for Chemical Resource Beneficiation, Catalysis and Synthesis Research Group , Potchefstroom 2531 , South Africa.
Expert Opin Drug Deliv. 2015 May;12(5):763-77. doi: 10.1517/17425247.2015.988135. Epub 2014 Dec 16.
The increase in the development of novel nanoparticle drug delivery systems makes the choice between micro- and nanoscale drug delivery systems ubiquitous. Changes in physical and chemical properties between micro- to nanosized particles give them different properties that influence their physiological, anatomical and clinical behavior and therefore potential application.
This review focuses on the effect changes in the surface-to-volume ratio have on the thermal properties, solubility, dissolution and crystallization of micro- versus nanosized drug delivery systems. With these changes in the physicochemical properties in mind, the review covers computational and biophysical approaches to the design and evaluation of micro- and nanodelivery systems. The emphasis of the review is on the effect these properties have on clinical performance in terms of drug release, tissue retention, biodistribution, efficacy, toxicity and therefore choice of delivery system.
Ultimately, the choice between micro- and nanometer-sized delivery systems is not straightforward. However, if the fundamental differences in physical and chemical properties are considered, it can be much easier to make a rational choice of the appropriate drug delivery system size.
新型纳米颗粒药物递送系统的不断发展,使得在微米级和纳米级药物递送系统之间进行选择变得十分普遍。从微米级颗粒到纳米级颗粒,其物理和化学性质的变化赋予了它们不同的特性,这些特性会影响它们的生理、解剖和临床行为,进而影响其潜在应用。
本综述重点关注表面积与体积比的变化对微米级和纳米级药物递送系统的热性质、溶解度、溶解和结晶的影响。考虑到这些物理化学性质的变化,本综述涵盖了用于设计和评估微米级和纳米级递送系统的计算和生物物理方法。本综述的重点是这些性质在药物释放、组织滞留、生物分布、疗效、毒性等方面对临床性能的影响,以及由此对递送系统选择的影响。
最终,在微米级和纳米级递送系统之间做出选择并非易事。然而,如果考虑到物理和化学性质的根本差异,就可以更容易地合理选择合适的药物递送系统尺寸。