研究生: |
張佐民 Joe-Ming Chang |
---|---|
論文名稱: |
AFM原子力顯微鏡在生物力學上的研究 Atomic force microscopy study of biomechanics |
指導教授: |
曾繁根
Fan-Gang Tseng 錢景常 Ching-Chanf Chieng 黃海美 Haimei Huang |
口試委員: | |
學位類別: |
碩士 Master |
系所名稱: |
原子科學院 - 工程與系統科學系 Department of Engineering and System Science |
論文出版年: | 2005 |
畢業學年度: | 93 |
語文別: | 中文 |
論文頁數: | 96 |
中文關鍵詞: | 原子力顯微鏡 、細胞 、蛋白質 、楊氏係數 |
外文關鍵詞: | atomic force microscope, cell, protein, young's modulus |
相關次數: | 點閱:3 下載:0 |
分享至: |
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
本研究宗旨主要為利用原子力顯微鏡(Atomic force microscope ,AFM )進行生物影像掃描與力學量測,以AFM掃描良好的生物影像(細菌、活體細胞)進行進階的生物力學定位量測。以AFM 距離-力學曲線(Force curve)圖譜分析活體細胞的楊氏係數表現,以此分析數據探究活體細胞的生物力學反應,用以對日後的細胞培育研究有一初步的量測技術開發。
另外也希望以AFM獨特的探針操作模式進行蛋白質的鍵結強度分析,探究蛋白質內部的鍵結能力與結構。
以AFM量測細胞與蛋白質的力學反應特性的研究目的,是為日後以微機電生物晶片技術處理生物相關的應用研究時,能提供以AFM做為量測生物特性的技術開發為主,輔助解決在設計生物晶片時所遇之生物反應問題,對生物力學特性能有較全面的了解。
1. Albrecht L wersenbornt and Mitra khorsandit , “Deformation and height anomaly of soft surface studied with an AFM”, Nanotechnology , 4 , pp106-113 (1994)
2. Jan Domke and Manfred Radmacher* , “Measuring the Elastic Properties of Thin Polymer Films with the Atomic Force Microscope” , Langmuir , 14,
pp 3320-3325(1998)
3. Ulrich G. Hofmann,1,2 Christian Rotsch,2 Wolfgang J. Parak, and Manfred Radmacher ,” Investigating the Cytoskeleton of Chicken Cardiocytes with the Atomic Force Microscope” , Journal of Structural Biology , 119, pp84–91 (1997)
4. Christian rotsch , fillip braet , eddie wisse and Manfred radmacher , “AFM image and elasticity measurement on living rat liver macophages” , Cell biology international , vol.21 no.11 , pp 685-696 , 1997
5. Hisashi Haga!, Shigeo Sasaki!, Kazushige Kawabata!, Etsuro Ito",Tatsuo Ushiki, Takashi Sambongi! ,” Elasticity mapping of living "broblasts by AFM and immunouorescence observation of the cytoskeleton” , Ultramicroscopy , 82 , pp253-258 (2000)
6. Christian Rotsch*, Ken Jacobson†, and Manfred Radmacher*‡ , “Dimensional and mechanical dynamics of active and stable edges in motile fibroblasts investigated by using atomic force microscopy” , Proc. Natl. Acad. Sci. USA February ,Vol. 96,
pp. 921–926(1999)
7. Chistian Rotsch and Manfrd , “ Drug-induced Changes of Cytoskeletal structure amd mechanics in fibroblasts : an Atomic force microscopy study”, Biophysical journal january , volume 78, pp520-535 , 2000
8. H.Miyazaki , K.Hayashi , “Atomic force microscopic measurement of the mechanical properties of intact endothelial cells in fresh arteries”, Medical and Biological Engineering and Computing , vol.37 ,pp530-536 ,(1999)
9. P. Hallett , L. Tskhovrebova, J. Trinick, and G. Offer , M. J. Miles , “Improvements in atomic force microscopy protocols for imaging fibrous proteins “ , J. Vac. Sci. Technol. B 14(2), Mar/Apr, pp1444-1448,( 1996)
10. Peter Hinterdorfer , Werner Baumgartner, Hermann J. Gruber, Kurt Schilcher , and Hansgeorg Schindler*,” Detection and localization of individual antibody–antigen recognition events by atomic force microscopy” , Proc. Natl. Acad. Sci. USA April , Vol. 93, pp. 3477–3481, 1996
11. Matthias Rief, Mathias Gautel, Filipp Oesterhelt, Julio M. Fernandez, Hermann E. Gaub* , “Reversible Unfolding of Individual Titin Immunoglobulin Domains by AFM “ , Science16 May , Vol. 276 , pp1109-1112 , 1997
12. By Hongbin Li, Matthias Rief, Filipp Oesterhelt, and Hermann E. Gaub* , “Single-Molecule Force Spectroscopy on Xanthan by AFM”, Adv. Mater., 3, No. 4 , pp316-319 , 1998
13. Mariano Carrion-Vazquez, Piotr E. Marszalek, Andres F. Oberhauser, and Julio M. Fernandes* , “Atomic force microscopy captures length phenotypes in single proteins” , Proc. Natl. Acad. Sci. USA September, Vol. 96, pp. 11288–11292 , 1999
14. Veeco instrument “MultiMode SPM”使用說明書
15. JPK instrument “The NanoWizard AFM” user manual