4.6 Article

Screening the low molecular weight fraction of human serum using ATR-IR spectroscopy

期刊

JOURNAL OF BIOPHOTONICS
卷 9, 期 10, 页码 1085-1097

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/jbio.201600015

关键词

human serum; centrifugal filtration; IR spectroscopy; Attenuated Total Reflection (ATR); Principal Component Analysis; Low Molecular Weight Fraction (LMWF)

资金

  1. Science Foundation Ireland [11/PI/1108]
  2. Science Foundation Ireland (SFI) [11/PI/1108] Funding Source: Science Foundation Ireland (SFI)

向作者/读者索取更多资源

Vibrational spectroscopic techniques can detect small variations in molecular content, linked with disease, showing promise for screening and early diagnosis. Biological fluids, particularly blood serum, are potentially valuable for diagnosis purposes. The so-called Low Molecular Weight Fraction (LMWF) contains the associated peptidome and metabolome and has been identified as potentially the most relevant molecular population for disease-associated biomarker research. Although vibrational spectroscopy can deliver a specific chemical fingerprint of the samples, the High Molecular Weight Fraction (HMWF), composed of the most abundant serum proteins, strongly dominates the response and ultimately makes the detection of minor spectral variations a challenging task. Spectroscopic detection of potential serum biomarkers present at relatively low concentrations can be improved using pre-analytical depletion of the HMWF. In the present study, human serum fractionation by centrifugal filtration was used prior to analysis by Attenuated Total Reflection infrared spectroscopy. Using a model sample based on glycine spiked serum, it is demonstrated that the screening of the LMWF can be applied to quantify blinded concentrations up to 50 times lower. Moreover, the approach is easily transferable to different bodily fluids which would support the development of more efficient and suitable clinical protocols exploring vibrational spectroscopy based ex-vivo diagnostic tools. [GRAPHICS] Revealing serum LMWF for spectral serological diagnostic applications.

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