用于生物医学应用的形状特异性微纳加工颗粒:综述。
Shape-specific microfabricated particles for biomedical applications: a review.
机构信息
Laboratory of Nanotechnology for Precision Medicine, Istituto Italiano Di Tecnologia, Via Morego, 30, 16163, Genoa, Italy.
出版信息
Drug Deliv Transl Res. 2022 Aug;12(8):2019-2037. doi: 10.1007/s13346-022-01143-4. Epub 2022 Mar 13.
The storied history of controlled the release systems has evolved over time; from degradable drug-loaded sutures to monolithic zero-ordered release devices and nano-sized drug delivery formulations. Scientists have tuned the physico-chemical properties of these drug carriers to optimize their performance in biomedical/pharmaceutical applications. In particular, particle drug delivery systems at the micron size regime have been used since the 1980s. Recent advances in micro and nanofabrication techniques have enabled precise control of particle size and geometry-here we review the utility of microplates and discoidal polymeric particles for a range of pharmaceutical applications. Microplates are defined as micrometer scale polymeric local depot devices in cuboid form, while discoidal polymeric nanoconstructs are disk-shaped polymeric particles having a cross-sectional diameter in the micrometer range and a thickness in the hundreds of nanometer range. These versatile particles can be used to treat several pathologies such as cancer, inflammatory diseases and vascular diseases, by leveraging their size, shape, physical properties (e.g., stiffness), and component materials, to tune their functionality. This review highlights design and fabrication strategies for these particles, discusses their applications, and elaborates on emerging trends for their use in formulations.
控释系统的历史由来已久;从可降解载药缝线到整体零级释放装置和纳米级药物传递制剂。科学家们已经调整了这些药物载体的物理化学性质,以优化其在生物医学/制药应用中的性能。特别是,自 20 世纪 80 年代以来,微米级的颗粒药物传递系统已经得到了应用。微纳制造技术的最新进展使得能够精确控制颗粒的大小和形状——在这里,我们回顾了微板和圆盘状聚合物颗粒在一系列药物应用中的实用性。微板被定义为长方体形式的微米级聚合物局部储库装置,而圆盘状聚合物纳米结构则是具有微米范围内的横截面直径和数百纳米范围内的厚度的盘状聚合物颗粒。通过利用其尺寸、形状、物理性质(例如,刚性)和组成材料来调整其功能,这些多功能颗粒可用于治疗多种疾病,如癌症、炎症性疾病和血管疾病。本综述重点介绍了这些颗粒的设计和制造策略,讨论了它们的应用,并阐述了它们在制剂中的使用的新兴趋势。