Literature DB >> 16586434

Systematical evaluation of the effects of sample collection procedures on low-molecular-weight serum/plasma proteome profiling.

Sen-Yung Hsieh1, Ren-Kung Chen, Yi-Hsin Pan, Hai-Lun Lee.   

Abstract

Blood is an ideal source for biomarker discovery. However, little has been done to address the effects of sampling, handling and storage procedures on serum/plasma proteomes. We used magnetic bead-based MALDI-TOF MS to systematically evaluate the influence of each procedure on low-molecular-weight serum/plasma proteome profiling on the basis of the whole spectra. We found that sampling procedures, including the selection of blood collection tubes and anticoagulants, variations in clotting time or time lag before centrifugation, and hemolysis, displayed significant effects on the proteomes. Moreover, serum and plasma were mutually incompatible for proteome comparison. By contrast, overnight fasting, handling procedures, including centrifugation speeds (1500 x g vs. 3000 x g) or time (15 min vs. 30 min), and storage conditions, such as at 4 degrees C or 25 degrees C for up to 24 h or at -80 degrees C for up to 3 months, and repeated freeze/thaw of up to ten cycles, had relatively minor effects on the proteomes based upon our analysis of about 100 peaks. We concluded that low-molecular-weight serum/plasma proteomes were diversely affected by sampling, handling and storage with most change from variations of sampling procedures. We therefore suggest the necessity of standardizing sampling procedure for proteome comparison and biomarker discovery.

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Year:  2006        PMID: 16586434     DOI: 10.1002/pmic.200500535

Source DB:  PubMed          Journal:  Proteomics        ISSN: 1615-9853            Impact factor:   3.984


  44 in total

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6.  Printed microfluidic filter for heparinized blood.

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7.  Standard operating procedures for serum and plasma collection: early detection research network consensus statement standard operating procedure integration working group.

Authors:  Melissa K Tuck; Daniel W Chan; David Chia; Andrew K Godwin; William E Grizzle; Karl E Krueger; William Rom; Martin Sanda; Lynn Sorbara; Sanford Stass; Wendy Wang; Dean E Brenner
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8.  Analytical validation of serum proteomic profiling for diagnosis of prostate cancer: sources of sample bias.

Authors:  Dale McLerran; William E Grizzle; Ziding Feng; William L Bigbee; Lionel L Banez; Lisa H Cazares; Daniel W Chan; Jose Diaz; Elzbieta Izbicka; Jacob Kagan; David E Malehorn; Gunjan Malik; Denise Oelschlager; Alan Partin; Timothy Randolph; Nicole Rosenzweig; Shiv Srivastava; Sudhir Srivastava; Ian M Thompson; Mark Thornquist; Dean Troyer; Yutaka Yasui; Zhen Zhang; Liu Zhu; O John Semmes
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9.  Specific Investigation of Sample Handling Effects on Protease Activities and Absolute Serum Concentrations of Various Putative Peptidome Cancer Biomarkers.

Authors:  Irene van den Broek; Rolf W Sparidans; Jan H M Schellens; Jos H Beijnen
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10.  Integrated barcode chips for rapid, multiplexed analysis of proteins in microliter quantities of blood.

Authors:  Rong Fan; Ophir Vermesh; Alok Srivastava; Brian K H Yen; Lidong Qin; Habib Ahmad; Gabriel A Kwong; Chao-Chao Liu; Juliane Gould; Leroy Hood; James R Heath
Journal:  Nat Biotechnol       Date:  2008-11-16       Impact factor: 54.908

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