DocumentCode :
2916634
Title :
Quantitative kinetic analysis of DNA nanocomplex self-assembly with Quantum Dots FRET in a microfluidic device
Author :
Ho, Yi-Ping ; Chen, Hunter H. ; Puleo, Christopher M. ; Yeh, Hsin-Chih ; Leong, Kam W. ; Wang, Tza-Huei
Author_Institution :
Johns Hopkins Univ., Baltimore
fYear :
2008
fDate :
13-17 Jan. 2008
Firstpage :
30
Lastpage :
33
Abstract :
The demand for safer and more efficient non-viral gene vectors has increased with the recent progress of genetic medicine. Appropriate nanocomplex assembly of DNA and gene carriers is critical for successful cellular entry and transfection. However, there is a lack of knowledge on this self-assembly process, let alone the controllability of monodisperse nanocomplexes. This paper describes a novel platform integrating nanobiophotonics (quantum dots-mediated FRET) and microfluidic technology to determine binding kinetics that govern the structural and chemical properties of DNA nanocomplexes. We anticipate that this method will elucidate mechanistic and kinetic insights into the self-assembly process of nanocomplexes which may facilitate the rational design of more efficient gene carriers. In addition, a microfluidic platform offers many advantages, including small volume, fast response to external stimulations, continuous monitoring and real-time control of reaction environments, which may be potentially used to generate more monodisperse complexes.
Keywords :
DNA; bioMEMS; biochemistry; biological techniques; fluorescence; genetics; microfluidics; molecular biophysics; nanobiotechnology; quantum dots; self-assembly; DNA nanocomplex self-assembly; binding kinetics; cellular transfection; gene carriers; genetic medicine; integrating nanobiophotonics; microfluidic device; monodisperse complexes; monodisperse nanocomplexes; nonviral gene vectors; quantitative kinetic analysis; quantum dots FRET; Assembly; Chemical technology; Controllability; DNA; Genetics; Kinetic theory; Microfluidics; Nanoscale devices; Quantum dots; Self-assembly;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems, 2008. MEMS 2008. IEEE 21st International Conference on
Conference_Location :
Tucson, AZ
ISSN :
1084-6999
Print_ISBN :
978-1-4244-1792-6
Electronic_ISBN :
1084-6999
Type :
conf
DOI :
10.1109/MEMSYS.2008.4443585
Filename :
4443585
Link To Document :
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