Division of Chemistry & Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 637371, Singapore, Singapore.
Center for Advanced Functional Nanorobots, Department of Inorganic Chemistry, Faculty of Chemical Technology, University of Chemistry and Technology Prague, Technická 5, 166 28, Prague 6, Czech Republic.
Small. 2020 Jul;16(27):e1902365. doi: 10.1002/smll.201902365. Epub 2019 Aug 21.
Micromachines are at the forefront of materials research as they are self-propelled, smart autonomous systems capable of acting as an intelligent matter. One of the obstacles the field faces is tracking individual micromachines carrying molecular cargo from the rest of the micromachines. Highly stable fluorescent markers based on chemically modified 2D germanene compounds are developed. Two different 2D germanene derivatives, 4-fluorophenylgermanane (2D-Ph-Ge) and methylgermanane (2D-Me-Ge), exhibit different fluorescence under UV light irradiation (excitation at 365 nm), which allows one particular micromotor to be easily distinguished in a mixture of micromotors. This offers a paradigm shift toward a new approach of multiplex detection of self-propelled micromachines. The utility is demonstrated on a drug delivery system, where micromachines carrying a drug are labeled with 2D-Ph-Ge with blue emission while bare micromachines are labeled by 2D-Me-Ge with red emission. This approach of functional fluorescent labeling will pave the way to multiple simultaneous functionalized micromachines identification in complex environments.
微纳机器是材料研究的前沿领域,因为它们是自推进的智能自主系统,能够充当智能物质。该领域面临的一个障碍是从其他微纳机器中跟踪携带分子货物的单个微纳机器。开发了基于化学修饰的二维锗化合物的高度稳定荧光标记物。两种不同的二维锗衍生物,4-氟苯基锗烷(2D-Ph-Ge)和甲基锗烷(2D-Me-Ge),在紫外光照射下(激发波长为 365nm)表现出不同的荧光,这使得在微纳机器混合物中很容易区分出特定的微纳机器。这为自推进微纳机器的多路复用检测提供了一种新方法。该方法在药物输送系统中得到了验证,其中携带药物的微纳机器用蓝色发射的 2D-Ph-Ge 标记,而裸微纳机器用红色发射的 2D-Me-Ge 标记。这种功能荧光标记方法将为在复杂环境中同时识别多个功能化微纳机器铺平道路。