The minimizing of fluorescence background in Raman optical activity and Raman spectra of human blood plasma

被引:0
作者
Michal Tatarkovič
Alla Synytsya
Lucie Šťovíčková
Bohuš Bunganič
Michaela Miškovičová
Luboš Petruželka
Vladimír Setnička
机构
[1] Institute of Chemical Technology Prague,Department of Analytical Chemistry
[2] Military University Hospital Prague,Department of Gastroenterology
[3] Charles University and General University Hospital in Prague,Department of Oncology, First Faculty of Medicine
来源
Analytical and Bioanalytical Chemistry | 2015年 / 407卷
关键词
Human blood plasma; Raman optical activity; Protein; Fluorescence; Spectroscopy;
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摘要
Raman optical activity (ROA) is inherently sensitive to the secondary structure of biomolecules, which makes it a method of interest for finding new approaches to clinical applications based on blood plasma analysis, for instance the diagnostics of several protein-misfolding diseases. Unfortunately, real blood plasma exhibits strong background fluorescence when excited at 532 nm; hence, measuring the ROA spectra appears to be impossible. Therefore, we established a suitable method using a combination of kinetic quenchers, filtering, photobleaching, and a mathematical correction of residual fluorescence. Our method reduced the background fluorescence approximately by 90 %, which allowed speedup for each measurement by an average of 50 %. In addition, the signal-to-noise ratio was significantly increased, while the baseline distortion remained low. We assume that our method is suitable for the investigation of human blood plasma by ROA and may lead to the development of a new tool for clinical diagnostics.
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页码:1335 / 1342
页数:7
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[1]  
Barron LD(2000)undefined Prog Biophys Mol Biol 73 1-49
[2]  
Hecht L(2011)undefined Appl Spectrosc 65 699-723
[3]  
Blanch EW(2001)undefined Curr Opin Drug Discov Dev 4 764-775
[4]  
Bell AF(2000)undefined Chirality 12 199-203
[5]  
He Y(2010)undefined J Pharm Biomed Anal 53 958-961
[6]  
Bo W(2013)undefined Anal Bioanal Chem 405 5441-5453
[7]  
Dukor RK(2012)undefined Chirality 24 951-955
[8]  
Nafie LA(2011)undefined Mol Cancer 10 101-344
[9]  
Shah RD(2010)undefined N Engl J Med 362 329-279
[10]  
Nafie LA(2011)undefined Alzheimers Dement 7 270-294