Optical control of adhesion property of magnetic nanosensor using photochromism for effective manipulation and cell injection

H. Hashim, Wu Lei, H. Maruyama, T. Masuda, F. Arai
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引用次数: 1

Abstract

Effective manipulation and rapid injection of nanosensor with high cell viability have great significance to biological and biomedical applications such as drug delivery and cells biology. This study presents manipulation of a magnetic nanosensor with a temperature indicator and immobilization onto cell surface using glass nanoprobe by Coulomb's force. The nanosensor is stained by Rhodamine B as the temperature indicator and is contained by lipid layer with Spiropyran (SP), which is a photochromic material. The zeta potential of nanosensor is switched between negative and positive by photo-isomerization of SP. The zeta potential of the liposome is switched to positive by UV illumination and recovered to negative by VIS illumination. The nanosensor is picked up and transported by glass nanoprobe. The positively charged nanosensor is immobilized to the cell membrane since the zeta potential of cell membrane is negative. The immobilized nanosensor can be injected into the cell cytoplasm by local laser heating. We demonstrated the manipulation and injection of the Ø750 nm magnetic nanosensor by the micromanipulator and local laser heating.
利用光致变色技术对磁性纳米传感器的粘附特性进行光学控制,实现有效的操作和细胞注射
具有高细胞活力的纳米传感器的有效操作和快速注射在药物传递和细胞生物学等生物学和生物医学应用中具有重要意义。本研究提出了一种带有温度指示器的磁性纳米传感器的操作方法,并利用玻璃纳米探针通过库仑力将其固定在细胞表面。纳米传感器采用罗丹明B作为温度指示剂进行染色,并用螺吡喃(SP)包裹在脂质层中,螺吡喃是一种光致变色材料。SP光异构化使纳米传感器的zeta电位在正、负之间切换,紫外照射使脂质体的zeta电位变为正,可见光照射使其恢复为负。纳米传感器由玻璃纳米探针拾取和传输。由于细胞膜的zeta电位为负,带正电荷的纳米传感器被固定在细胞膜上。固定化纳米传感器可以通过局部激光加热注入细胞质中。我们演示了通过微机械臂和局部激光加热对Ø750 nm磁性纳米传感器的操作和注射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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