标题: | 奈米粒子应用于癌细胞标定的拉曼光学量测 The Raman measurement of nanoparticles on cancer cells |
作者: | 江宇涵 Chiang, Yu-Han 孙建文 Sun, Kien-Wen 应用化学系分子科学硕博士班 |
关键字: | 奈米钻石;奈米金球;拉曼光谱;细胞;Nanodiamonds;Gold nanoparticles;Raman spectrum;cells |
公开日期: | 2010 |
摘要: | 近年来,越来越多研究团队将奈米粒子运用于生医检测与治疗上,追踪奈米粒子在有机体内的流向,甚至当作药物传输的载体。一般而言,一个好的生物标记子需具有低生物毒性、高强度特征峰、表面易改质等特性。 本篇论文研究两种不同的奈米粒子,第一部份是将奈米金球修饰孔雀绿,电穿孔送入Hep G2细胞后,量测其拉曼讯号和在细胞内分布的情形,接着用hGH改变与细胞的连接方式,和前种方法相互比较。第二部份则是改用奈米钻石标定细胞,侦测其在细胞内分布的情形,第三部份进一步利用PDMS翻模法制作微流道,并将奈米金球与奈米钻石分别送进微流道里,观测其流速与讯号的变化,期望未来能将此两种奈米粒子与微流道结合发展成快速且自动化的生物晶片。 Recently, more and more researches focus on using nanoparticles for biomedical detection and as therapeutic tools, tracing their fate in organisms, or even used them for drug deliver. Generally speaking, a good biomarker should have the characteristics of low cytotoxicity, high emission intensity and specific peaks and easily surface functionalization, etc…. This thesis studied two different nanoparticles in bio applications. In the first part of the work, we applied malachite green to modify gold nanoparticle surface and transferred them into Hep G2 cell by electroporation. Then the Raman signal mapping were taken from the cells to determine the nanoparticle distribution inside the cells. We also used hGH to change the connection path with Hep G2 cells and compare the results with the malachite green. And the second part is that the entire experiment processes were repeated with the gold nanoparticles replaced with nanodiamonds. The third part was to construct a microfluidic channel by using PDMS replica molding method. We investigated the correlation between the flow rate and the Raman signals when gold nanoparticles and nanodiamonds were pumped into the microfluidic channel respectively. It is possible to combine these two different nanoparticles with microfluidic channel to develop an automation biochip and to achieve real time detection in the near future. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079758515 http://hdl.handle.net/11536/46105 |
显示于类别: | Thesis |
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