Department of Pharmaceutical Sciences, University of Michigan, Ann Arbor, MI, 48109, USA.
Department of Material Sciences and Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.
Small. 2017 Feb;13(6). doi: 10.1002/smll.201602569. Epub 2016 Nov 22.
The asymmetrical features and unique properties of multibuilding block Janus nanostructures (JNSs) provide superior functions for biomedical applications. However, their production process is very challenging. This problem has hampered the progress of JNS research and the exploration of their applications. In this study, an asymmetrical multibuilding block gold/iron oxide JNS has been generated to enhance photothermal effects and display colored Brownian motion in an optical trap. JNS is formed by seed-mediated self-assembly of nanoparticle-loaded thermocleavable micelles, where the hydrophobic backbones of the polymer are disrupted at high temperatures, resulting in secondary self-assembly and structural rearrangement. The JNS significantly enhances photothermal effects compared to their homogeneous counterpart after near-infrared (NIR) light irradiation. The asymmetrical distribution of gold and iron oxide within JNS also generates uneven thermophoretic force to display active colored Brownian rotational motion in a single-beam gradient optical trap. These properties indicate that the asymmetrical JNS could be employed as a strong photothermal therapy mediator and a fuel-free nanoscale Janus motor under NIR light.
多嵌段不对称 Janus 纳米结构 (JNS) 的不对称特征和独特性质为生物医学应用提供了卓越的功能。然而,它们的生产过程极具挑战性。这个问题阻碍了 JNS 研究的进展和其应用的探索。在本研究中,生成了一种不对称的多嵌段金/氧化铁 JNS,以增强光热效应并在光阱中显示彩色的布朗运动。JNS 是通过负载纳米颗粒的热敏性胶束的种子介导自组装形成的,其中聚合物的疏水骨架在高温下被破坏,导致二次自组装和结构重排。与近红外 (NIR) 光照射后的同质相比,JNS 显著增强了光热效应。JNS 内金和氧化铁的不对称分布也会产生不均匀的热泳力,从而在单光束梯度光阱中显示出活跃的彩色布朗旋转运动。这些特性表明,不对称 JNS 可用作强光热治疗介质和 NIR 光下无燃料的纳米级 Janus 马达。