생체 다공성 매질에서 분자 확산 측정을 위한 영상 기반 형광 광표백 기법 개발

Fluorescence recovery after photobleaching (FRAP) has been widely used for the measurement of molecular diffusion in living cells and tissues. We developed an image-based FRAP (iFRAP) technique using a modified real-time microscope and a 488 nm Ar-ion laser. A fractional intensity curve was obtained...

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Veröffentlicht in:한국가시화정보학회지 2009, 7(1), 13, pp.9-13
Hauptverfasser: 이동희(Donghee Lee), 이정훈(Jeonghoon Lee), 박춘호(Choonho Park), 김중경(Jung Kyung Kim)
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Sprache:kor
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Zusammenfassung:Fluorescence recovery after photobleaching (FRAP) has been widely used for the measurement of molecular diffusion in living cells and tissues. We developed an image-based FRAP (iFRAP) technique using a modified real-time microscope and a 488 nm Ar-ion laser. A fractional intensity curve was obtained from the time-lapse images of fluorescence recovery in the bleached spot to determine the diffusion coefficient of fluorescently labeled macromolecules in porous medium. We validated iFRAP through experiments with agar gels (0.5% and 1.5% w/v) containing FITC-Dextrans (10, 70 and 500 kDa MW). Further validation was performed by a Monte Carlo approach, where we simulated the three-dimensional random walk of macromolecules in agar gel model. Diffusion coefficients were deduced from the mean square displacement curves and showed good agreements with those measured by iFRAP.
ISSN:1598-8430
2093-808X