Sun Ruijuan, Wang Wenqian, Wen Yongqiang, Zhang Xueji
Research Center for Bioengineering & Sensing Technology, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Nanomaterials (Basel). 2015 Nov 25;5(4):2019-2053. doi: 10.3390/nano5042019.
Mesoporous silica nanoparticle (MSN)-based intelligent transport systems have attracted many researchers' attention due to the characteristics of uniform pore and particle size distribution, good biocompatibility, high surface area, and versatile functionalization, which have led to their widespread application in diverse areas. In the past two decades, many kinds of smart controlled release systems were prepared with the development of brilliant nano-switches. This article reviews and discusses the advantages of MSN-based controlled release systems. Meanwhile, the switching mechanisms based on different types of stimulus response are systematically analyzed and summarized. Additionally, the application fields of these devices are further discussed. Obviously, the recent evolution of smart nano-switches promoted the upgrading of the controlled release system from the simple "separated" switch to the reversible, multifunctional, complicated logical switches and selective switches. Especially the free-blockage switches, which are based on hydrophobic/hydrophilic conversion, have been proposed and designed in the last two years. The prospects and directions of this research field are also briefly addressed, which could be better used to promote the further development of this field to meet the needs of mankind.
基于介孔二氧化硅纳米颗粒(MSN)的智能传输系统因其孔径和粒径分布均匀、生物相容性好、比表面积高以及功能化多样等特点,吸引了众多研究人员的关注,这些特点使其在多个领域得到了广泛应用。在过去二十年中,随着出色的纳米开关的发展,制备了多种智能控释系统。本文回顾并讨论了基于MSN的控释系统的优势。同时,系统地分析和总结了基于不同类型刺激响应的开关机制。此外,还进一步讨论了这些装置的应用领域。显然,智能纳米开关的最新发展推动了控释系统从简单的“分离”开关向可逆、多功能、复杂的逻辑开关和选择性开关升级。特别是基于疏水/亲水转换的自由阻断开关,是在过去两年中提出并设计的。本文还简要探讨了该研究领域的前景和方向,以便更好地促进该领域的进一步发展,满足人类需求。