DocumentCode :
3188543
Title :
Development of dual-color simultaneous single molecule imaging system for analyzing multiple intracellular trafficking activities
Author :
Hatakeyama, H. ; Kanzaki, Makoto
Author_Institution :
Grad. Sch. of Biomed. Eng., Tohoku Univ., Sendai, Japan
fYear :
2013
fDate :
3-7 July 2013
Firstpage :
1418
Lastpage :
1421
Abstract :
Intracellular trafficking is a critical process for cell physiology. Previous extensive studies employing biochemical and molecular biological approaches have provided qualitative information about intracellular trafficking, but we have little quantitative information due to technical limitations of these assays. We therefore developed a novel method for quantifying intracellular trafficking based on single molecule imaging with Quantum dot (QD) fluorescent nanocrystals and quantitatively described the trafficking properties of some recycling proteins. We herein first describe how to label intracellular molecules with QD which has no cell permeability and how to quantify intracellular trafficking, and then we detail the development of a novel experimental system allowing multi-color simultaneous single molecule imaging for analyzing the relationships of intracellular trafficking activities among multiple molecules having distinct trafficking properties. Finally, we document how we confirmed the reliability of our system by simultaneously analyzing the intracellular movements of two recycling protein, GLUT4 glucose transporter and transferrin receptor. Since impairment of intracellular trafficking has critical etiological roles in various late-onset diseases such as type 2 diabetes, our novel imaging system may be a powerful tool for developing next-generation biomedical devices for diagnostics and medical treatment based on intracellular trafficking.
Keywords :
biochemistry; biomedical optical imaging; cellular biophysics; diseases; fluorescence; molecular biophysics; nanomedicine; nanostructured materials; permeability; proteins; quantum dots; reliability; GLUT4 glucose transporter; QD fluorescent nanocrystals; biochemical biological approaches; cell physiology; critical etiological roles; dual-color simultaneous single molecule imaging system; intracellular molecules; intracellular movements; intracellular trafficking activities; late-onset diseases; molecular biological approaches; multicolor simultaneous single molecule imaging; protein recycling; quantum dot fluorescent nanocrystals; reliability; single molecule imaging; trafficking properties; transferrin receptor; type 2 diabetes; Fluorescence; Imaging; Insulin; Labeling; Proteins; Recycling; Reliability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location :
Osaka
ISSN :
1557-170X
Type :
conf
DOI :
10.1109/EMBC.2013.6609776
Filename :
6609776
Link To Document :
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