Optical Investigation of DNA Behaviour in Flow using Confocal Detection Incorporated with Fluorescence Correlation Spectroscopy (FCS)

被引:0
作者
Guzel, Fatma Dogan [1 ,2 ]
Ghorbanpoor, Hamed [3 ]
机构
[1] Ankara Yildirim Beyazit Univ, Fac Engn & Nat Sci, Dept Mech Engn, Ankara, Turkiye
[2] Imperial Coll London, Dept Chem, London, England
[3] Eskisehir Osmangazi Univ, Dept Biomed Engn, Eskisehir, Turkiye
关键词
DNA behaviour in Flow; Microfluidics; Rheological properties of DNA; Fluorescence Correlation Spectroscopy (FCS); Flow-dominated regime; SINGLE-POLYMER DYNAMICS; MOLECULES; SYSTEM; SHEAR;
D O I
10.1007/s10895-025-04263-5
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Investigation of the behavior of biopolymers in flow such as Deoxyribonucleic acid (DNA), is a critical challenge in engineering, polymer, and life sciences. In this study, we studied the rheological properties of DNA and flow characteristics in real-time. The velocity measurement was carried out using confocal detection incorporated with Fluorescence Correlation Spectroscopy (FCS). Optical experiments provided an understanding of the diffusion- and flow-dominated regimes for molecules treated in microfluidic channels and lab-on-chip devices in general. We found that the flow-dominated regime starts at a flow rate of 0.3 mu l/min and the transitional regime falls into 0.02-0.3 mu l/min flow rates. There are a few examples for the detection of DNA and different fragments in flow as such. It is therefore believed to provide valuable insights into the subject of flow dynamics of DNA.
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页数:9
相关论文
共 47 条
[1]   Effect of initial conformation, flow strength, and hydrodynamic interaction on polymer molecules in extensional flows [J].
Agarwal, US .
JOURNAL OF CHEMICAL PHYSICS, 2000, 113 (08) :3397-3403
[2]   Real-time monitoring of bead-based DNA hybridization in a microfluidic system: study of amplicon hybridization behavior on solid supports [J].
Boissinot, Karel ;
Peytavi, Regis ;
Chapdelaine, Sebastien ;
Geissler, Matthias ;
Boissinot, Maurice ;
Martel, Eric A. ;
Beliveau-Viel, David ;
Gravel, Jean-Francois ;
Malic, Lidija ;
Veres, Teodor ;
Boudreau, Denis ;
Bergeron, Michel G. .
ANALYST, 2021, 146 (13) :4226-4234
[3]   An integrated nanoliter DNA analysis device [J].
Burns, MA ;
Johnson, BN ;
Brahmasandra, SN ;
Handique, K ;
Webster, JR ;
Krishnan, M ;
Sammarco, TS ;
Man, PM ;
Jones, D ;
Heldsinger, D ;
Mastrangelo, CH ;
Burke, DT .
SCIENCE, 1998, 282 (5388) :484-487
[4]   Flow-Based Autocorrelation Studies for the Detection and Investigation of Single-Particle Surface-Enhanced Resonance Raman Spectroscopic Events [J].
Cecchini, Michael P. ;
Stapountzi, Margarita A. ;
McComb, David W. ;
Albrecht, Tim ;
Edel, Joshua B. .
ANALYTICAL CHEMISTRY, 2011, 83 (04) :1418-1424
[5]   DNA molecules in microfluidic oscillatory flow [J].
Chen, YL ;
Graham, MD ;
de Pablo, JJ ;
Jo, K ;
Schwartz, DC .
MACROMOLECULES, 2005, 38 (15) :6680-6687
[6]   Characterization of the Surface Contribution to Fluorescence Correlation Spectroscopy Measurements [J].
Chowdhury, Salina A. ;
Lim, Manho .
BULLETIN OF THE KOREAN CHEMICAL SOCIETY, 2011, 32 (02) :583-589
[7]  
Coelho S, 2018, bioRxiv487728
[8]   ABSOLUTE QUANTUM EFFICIENCIES [J].
CROSBY, GA ;
DEMAS, JN ;
CALLIS, JB .
JOURNAL OF RESEARCH OF THE NATIONAL BUREAU OF STANDARDS SECTION C-ENGINEERING AND INSTRUMENTATION, 1972, A 76 (06) :561-577
[9]   Electrosprayed MnFe2O4/PVDF membrane integrated microfluidic chip for amoxicillin removal with real-time monitoring of pH and dissolved oxygen [J].
Dabagh, Shadab ;
Javanifar, Roshan ;
Kaya, Murat ;
Ebrahimi, Aliakbar ;
Guven, Sinan ;
Kaya, Burak Malik ;
Esenturk, Okan ;
Askin, Aysegul ;
Guzel, Fatma Dogan ;
Uysal, Onur ;
Sariboyaci, Ayla Eker ;
Ghorbanpoor, Hamed ;
Avci, Huseyin .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2024, 12 (06)
[10]   COIL-STRETCH TRANSITION OF DILUTE FLEXIBLE POLYMERS UNDER ULTRAHIGH VELOCITY-GRADIENTS [J].
DEGENNES, PG .
JOURNAL OF CHEMICAL PHYSICS, 1974, 60 (12) :5030-5042