MSLIFE · Integrating high performance mass spectrometry tools with application in life science
FP7 — People (Marie Curie Actions)
- Duration
- 2011-11-01 → 2014-10-31
- EU contribution
- €319,200
- Participants
- 5
- Scheme
- MC-IRSES
Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.
Results in brief
Integrating high performance mass spectrometry tools with application in life science
In the first period of this project an active and effective schedule of exchange of staff was initiated and performed between the European Laboratories, and the American Partner laboratories. A number of joint research projects through exchange of coworkers has been performed on the determination of protein structures using high Performance mass spectrometry methods (WP 1); identification of pathophysiological Protein structure modifications (WP 2); quantitative proteomics approaches and applications (WP 3); mass spectrometric identification of the assembly and topology of large protein complexes (WP 4); the characterization of protein conformation-dependent misfolding/aggregating using ion mobility mass spectrometry as a principal tool (WP 5); and applications to elucidate protein-biopolymer interactions and molecular recognition structures using new tools of bioaffinity-mass spectrometry (WP 6). After an initial joint start meeting in May 2012 at one of the American Partner laboratory, significant progress has been made through Joint exchanges in research collaborations (both bi- and tri-lateral); joint tutorials by experienced Researchers; joint meetings at research conferences, and exchanges at joint workshops. The principal goals of this Project were, (i), to establish new technologies of mass spectrometry in life science applications such as the identification of biomarkers for disease diagnostics; and (ii), the integration of mass spectrometry tools with key biochemical and biomedical Technologies. These goals have been met in most of the joint research work carried out in the first period of the Project (some delay, caused by unanticipated funding delay by one US Partner has been amended in the second Project phase). The results of the first period Phase have led to a number of joint presentations at National and International Conferences, and several Joint publications. The successfull completion of the Project has been reached with the goal (i), to integrate interdisciplinary applications of biopolymer mass spectrometry in life sciences, and (ii) to contribute to high-Level academic exchange and Training. These results were remarkable since in the second Project Phase some were impeded by (i), some reduced activity imposed by the retrirement of the coordinator; (ii), some health impairment by one of the principal investigators.
Data: CORDIS, © European Union
Project objective
Recent advances of biopolymer mass spectrometry - first highlighted by the Nobel Prize-awarded “soft ionization” methods - have opened new applications in life sciences, such as the identification of proteins from complex biological material (proteomics). A number of high performance mass spectrometry technologies and hyphenated separation methods have become amenable; however, their efficient exploration and integration in interdisciplinary biochemical and biomedical applications is still in the initial phase. In this project an effective exchange scheme of staff will be established between European laboratories of different application areas, and leading American Centers of high performance biopolymer mass spectrometry. Joint research projects through exchange of coworkers will focus on the determination of protein structures and pathophysiological structure modifications; the identification of the assembly and topology of large protein complexes; development and application of disease-related quantitative proteome analysis; characterization of protein conformations and misfolding/aggregating proteins; applications to elucidate protein-biopolymer interactions and molecular recognition structures using new tools of bioaffinity-mass spectrometry. The principal goals of this project are (i), to establish new technologies of mass spectrometry in important life science applications such as the identification of biomarkers for disease diagnostics; and (ii), to provide a basis, through exchange of coworkers, for the integration of mass spectrometry tools with biochemical and biomedical technologies. This project will contribute to (i), integrate interdisciplinary applications of biopolymer mass spectrometry in life sciences; (ii), enhance exchange and collaboration between European and North-American academic laboratories; (ii) the graduate and postgraduate education of young researchers in mass spectrometry in life sciences.
Original text from CORDIS.
Participants
- UNIVERSITAT KONSTANZ · KonstanzCoordinatorGermany
- SYDDANSK UNIVERSITET · Odense MDenmark
- UNIVERSITAET ROSTOCK · RostockGermany
- UNIVERSITATEA AUREL VLAICU DIN ARAD · AradCity levelRomania
- UNIVERSITEIT UTRECHT · UtrechtNetherlands
Links
Data: CORDIS, © European Union
