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Implementation of a Protein Profiling Platform Developed as an Academic-Pharmaceutical Industry Collaborative Effort

Author

Summary, in English

As much attention has devoted to the proteome research during the last years, biomarker discovery has become an increasingly hot area, potentially enabling the development of new assays for diagnosis and prognosis of severe diseases. This is the field of research interest where efforts originating from both academic and industrial groups should jointly work on solutions. In this paper we would like to demonstrate the fruitful combination of both research domains where the scientific crossroads sprout fresh ideas from the basic research domain and how these are refined and tethered to industrial standards.

We will present an approach that is based on novel microfluidic devices, utilizing their benefits in processing small-volume samples. Our biomarker discovery strategy, built around this platform, involves optimized samples processing (based on solid-phase extraction and sample enrichment) and fast MALDI-MS read-out. The identification of novel biomarkers at low abundance level has been achieved by the utilization of a miniaturized sample handling platform, which offers clean up and enrichment of proteins in one step. Complete automation has been realized in the form of a unique robotic instrumentation that is able to extract and transfer 96 samples onto standard MALDI target plates with high throughput.

The developed platform was operated with a 60 sample turnaround per hour allowing sensitivities in femtomol regions of medium and low abundant target proteins from clinical studies on tissue samples of multiple sclerosis and gastroesophageal reflux disease. Several proteins have been identified as new biomarkers from cerebrospinal fluid and esophagus epithelial cells.

Publishing year

2008

Language

English

Pages

2696-2705

Publication/Series

Electrophoresis

Volume

29

Issue

12

Document type

Journal article

Publisher

John Wiley & Sons Inc.

Topic

  • Analytical Chemistry
  • Medical Engineering

Keywords

  • microfluidics
  • solid-phase extraction
  • multiple sclerosis
  • piezo-dispensing
  • gastroesophageal reflux disease
  • proteomics

Status

Published

ISBN/ISSN/Other

  • ISSN: 0173-0835