Khaled AlAwam, Ed Dudley, Rossen Donev, Johannes Thome
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Protein and peptide profiling as a tool for biomarker discovery in depression
This study sought to determine whether protein and/or peptide profiles from serum were able to distinguish patients suffering from depression from healthy control subjects and thereby act as biomarker candidates with potential diagnostic value. Serum samples were collected from patients (n = 39) and controls (n = 30). A C8 magnetic bead protocol was used to prepare serum proteins, while a microextraction C18 packed tip was used to isolate serum peptides. Both protein and peptide profiles were recorded by MALDI-MS and the data were exported for further analysis. No protein signals differentiated patients from controls and principle component analysis of the entire peptide profile did not allow for distinct clustering of the two groups. Further analysis of individual peptides however identified three peptide signals whose intensities were significantly different between patients and control subjects. The efficacy of these potential biomarker candidates to identify the patients was therefore studied using a receiver operating characteristic (ROC) curve and the combined use of all three candidates together offered the most specific and sensitive identification of true positive cases of depression.
期刊介绍:
ELECTROPHORESIS is an international journal that publishes original manuscripts on all aspects of electrophoresis, and liquid phase separations (e.g., HPLC, micro- and nano-LC, UHPLC, micro- and nano-fluidics, liquid-phase micro-extractions, etc.).
Topics include new or improved analytical and preparative methods, sample preparation, development of theory, and innovative applications of electrophoretic and liquid phase separations methods in the study of nucleic acids, proteins, carbohydrates natural products, pharmaceuticals, food analysis, environmental species and other compounds of importance to the life sciences.
Papers in the areas of microfluidics and proteomics, which are not limited to electrophoresis-based methods, will also be accepted for publication. Contributions focused on hyphenated and omics techniques are also of interest. Proteomics is within the scope, if related to its fundamentals and new technical approaches. Proteomics applications are only considered in particular cases.
Papers describing the application of standard electrophoretic methods will not be considered.
Papers on nanoanalysis intended for publication in ELECTROPHORESIS should focus on one or more of the following topics:
• Nanoscale electrokinetics and phenomena related to electric double layer and/or confinement in nano-sized geometry
• Single cell and subcellular analysis
• Nanosensors and ultrasensitive detection aspects (e.g., involving quantum dots, "nanoelectrodes" or nanospray MS)
• Nanoscale/nanopore DNA sequencing (next generation sequencing)
• Micro- and nanoscale sample preparation
• Nanoparticles and cells analyses by dielectrophoresis
• Separation-based analysis using nanoparticles, nanotubes and nanowires.