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'''9<sup>th</sup> MiP''conference'' - MiP2013'''
#REDIRECT [[MiPNet18.08_MiP2013]]
 
[http://www.mitophysiology.org/index.php?mip2013 '''<big>MiP2013: Comparative Mitochondrial Physiology</big>''']
 
Obergurgl, Tyrol, Austria. 2013-Sep-23 to 27
 
=== Preliminary titles - max. 124 participants ===
 
''Work in progress''
 
{| class="wikitable"
|-
! Name !! Institution !! Title !! Status
|-
| [[Walker JE|'''Nobel laureate Sir John Walker]]||MRC Mitochondrial Biology Unit, Cambridge, UK|| ''MiP2013 lecture on comparative mitochondrial physiology'' ||Keynote 
|-
|  [[Saltin B|'''Bengt Saltin''']]||Copenhagen Muscle Research Centre, DK||''Kjell Johansen lecture''||Keynote
|-
| [[Acuna-Castroviejo D|Darío Acuña-Castroviejo]]||Universidad de Granada, ES|| ||
|-
| [[Amoedo ND|Nivea Días Amoedo]]||Federal University of Rio de Janeiro, BR||Comparative biochemistry of tumorigenesis: role of mitochondria||
|-
|  Oliver Bandmann||Sheffield Institute for Translational Neuroscience, UK||''TigarB'' causes mitochondrial dysfunction and neuronal loss in PINK1 deficiency||
|-
|  Adam Beach||Concordia University, Montreal, CA||Lithocholic acid delays aging in yeast and exhibits an anti-tumor effect in human cells by altering mitochondrial composition, structure and function||
|-
|  [[Blier PU|Pierre Blier]]||Université du Québec à Rimouski, CA||Holding our breath in our modern world: are mitochondria keeping the pace with global changes?||
|-
|  [[Borutaite V|Vilma Borutaite]]||Kaunas University of Medicine, LT||Mitochondrial response to heart and brain ischemia: NO and preconditioning||
|-
|  [[Bouillaud F|Frédéric Bouillaud]]||Universite Paris Descartes, Paris, FR||Adaptation of colonocyte mitochondria to intense hydrogen sulfide exposure||''part time''
|-
|  [[Boushel RC|Robert Boushel]]||University of Copenhagen, Copenhagen, DK||O<sub>2</sub> delivery, diffusion and mitochondrial respiration components of VO<sub>2</sub> during exercise in health and disease||
|-
|  [[Calzia E|Enrico Calzia]]||Universitätsklinikum Ulm, DE||Studying mitochondrial effects of sulfide. Does the species matter?||
|-
|  [[Chicco AJ|Adam Chicco]]||Colorado State University, Fort Collins, US|| ||
|-
|  [[Chinopoulos C|Christos Chinopoulos]]||Semmelweis University, Budapest, HU|| ||
|-
|  Felix Christen||Université du Québec à Rimouski, CA||Modulation in ROS production in arctic charr heart mitochondria: Is Astaxanthine only good for the pink color?||
|-
|  [[Christiansen LB|Liselotte Christiansen]]||University of Copenhagen, DK||Heart and skeletal muscle from diseased and healthy cats||''tentative''
|-
|  [[Coen P|Paul Coen]]||University of Pittsburgh, US|| ||''tentative''
|-
|  [[Darveau CA|Charles Darveau]]||University of Ottawa, CA||Diversity and evolution of mitochondrial metabolism: Proline as a metabolic reward for pollinators||
|-
|  [[Dela F|Flemming Dela]]||University of Copenhagen, DK||Statins affects skeletal muscle mitochondrial respiration||''tentative''
|-
|  [[Dlaskova A|Andrea Dlaskova]]||Academy of Sciences of the Czech Rep., Prague, CZ||Distribution of nucleoids of mitochondrial DNA||
|-
|  [[Eckert G|Gunter Eckert]]||Goethe-University of Frankfurt am Main, DE||Mitochondrial dysfunction in neurodegeneration - a promising target for novel drugs||
|-
|  [[Eckert S|Schamim Eckert]]||Goethe-University of Frankfurt am Main, DE|| ||''tentative''
|-
|  [[Eigentler A|Andrea Eigentler]]||Medical University Innsbruck, AT|| ||
|-
|  [[Eira da Costa AC|Ana Carina Eira da Costa]]||University of Leicester, UK||''Drosophila Trap1'' protects against mitochondrial dysfunction in a PINK1/parkin model of Parkinson’s disease||
|-
|  [[Garcia-Roves PM|Pablo Garcia-Roves]]||Institut d'Investigacions Biomediques August Pi Sunyer (IDIBAPS) Hospital Clinic de Barcelona, ES||Mitochondrial respiration in different mouse tissues under patho-physiological states||
|-
|  [[Giulivi C|Cecilia Giulivi]]||University of California, Davis, US||The role of thiamine deficiency across species: from seals to Alaskan huskies||
|-
|  [[Glick GD|Gary Glick]]||Lycera Corporation, Ann Arbor, MI, US|| || 
|-
|  [[Gnaiger E|Erich Gnaiger]]||Medical University Innsbruck, AT||The Mitochondrial Physiology Map - [[MiPMap]]||
|-
|  [[Gourlay CW|Campbell Gourlay]]||University of Kent, UK|| ||
|-
|  [[Gram MJ|Martin Gram]]||University of Copenhagen, DK||Mitochondrial respiration and ROS production in response to physical inactivity in young and old men||''tentative''
|-
|  [[Hand SC|Steven Hand]]||LSU, Baton Rouge, Lousiana, US|| ||
|-
|  Eric Hendricks||Eastern Illinois University, Charleston, US||Bioenergetics of permeabilized and intact nerve cell terminals from ApoE deficient and wild type mice||
|-
|  [[Hickey AJ|Anthony Hickey]]||University of Auckland, NZ|| ||
|-
|  [[Holloway GP|Graham Holloway]]||University of Guelph, CA|| ||''tentative''
|-
|  [[Hoppel CL|Charles Hoppel]]||Cleveland, Ohio, US|| ||
|-
|  [[Irving BA|Brian Irving]]||Geisinger Health System, Danville, US|| ||''tentative''
|-
|  [[Jacobs RA|Robert Jacobs]]||University of Zurich, CH|| ||[http://www.hypoxianet.com HypoxiaNet]
|-
|  [[Jezek P|Petr Jezek]]||Academy of Sciences of the Czech Rep., Prague, CZ||Antioxidant synergy of mitochondrial uncoupling protein UCP2 and phospholipase iPLA<sub>2</sub>γ||
|-
|  [[Keijer J|Jaap Keijer]]||Wageningen University, NL||Three non-invasive methods to measure metabolic health in mice using indirect calorimetry||
|-
|  [[Kozlov A|Andrey Kozlov]]||Ludwig Boltzmann Institute, Vienna, AT||Regulatory role of mitochondrial ROS upon inflammation||
|-
|  [[Kraunsoee R|Regitze Kraunsoee]]||University of Copenhagen, DK|| ||''tentative''
|-
|  Bernard Korzeniewski||Jagiellonian University, Krakow, PL||'Regulation of oxidative phosphorylation during work transitions in various tissues results from its kinetic properties||
|-
|  [[Laner V|Verena Laner]]||OROBOROS INSTRUMENTS, Innsbruck, Austria|| ||
|-
|  [[Larsen S|Steen Larsen]]||University of Copenhagen, DK||Skeletal muscle respiration after high intensity training||''tentative''
|-
|  [[Lee HK|Hong Kyu Lee]]||Eulji University College of Medicine, Seoul, KR|| ||
|-
|  [[Lemieux H|Hélène Lemieux]]||University of Alberta, CA|| ||
|-
|  [[Lund MT|Michael Lund]]||University of Copenhagen, DK||Respiration in skeletal muscle, subcutaneous adipose tissue, visceral adipose tissue and hepatic tissue from the same patients||''tentative''
|-
|  [[Lundby C|Carsten Lundby]]||University of Zurich, CH|| ||[http://www.hypoxianet.com HypoxiaNet]
|-
|  [[Lundby S|Stine Lundby]]||University of Zurich, CH|| ||[http://www.hypoxianet.com HypoxiaNet]
|-
|  [[Mairbaeurl H|Heimo Mairbaeurl]]||University of Heidelberg, DE||Hypoxia prevents increase in mitochondrial activity by metabolic stress of cardiomyocytes||[http://www.hypoxianet.com HypoxiaNet]
|-
|  [[Mark FC|Felix Mark]]||Alfred Wegener Institute for Polar and Marine Search, Bremerhaven, DE|| ||
|-
|  [[Matallo J|Jose Matallo]]||Universitätsklinikum Ulm, DE|| ||
|-
|  [[Menze MA|Michael Menze]]||Eastern Illinois University, Charleston, US||Group1 LEA protein ameliorates inhibition of mitochondrial respiration in Drosophila melanogaster Kc167 cells and isolated mitochondria||
|-
|  Daniel Munro||Université du Québec à Rimouski, CA||Mitochondrial membrane of the longest-lived metazoan (A.islandica) are lipoxidation-resistant||
|-
|  [[Murray AJ|Andrew Murray]]||University of Cambridge, UK|| ||''tentative part time''
|-
|  [[Oliveira MF|Marcus Oliveira]]||Universidade Federal do Rio de Janeiro, BR|| ||
|-
|  [[Palm F|Fredrik Palm]]||Uppsala University, SE|| ||
|-
|  Carl Pinkert||Auburn University, Alabama, US|| Mouse modeling of human mitochondrial disorders||
|-
|  [[Pichaud N|Nicolas Pichaud]]||Université du Québec à Rimouski, CA||Importance of mitochondrial haplotypes in the expression of metabolic phenotypes under different conditions||
|-
|  [[Plecita-Hlavata L|Lydie Plecita-Hlavata]]||Academy of Sciences of the Czech Rep., Prague, CZ||Mitochondrial network and cristae remodeling upon hypoxia||
|-
|  [[Quistorff B| Björn Quistorff]]||University of Copenhagen, SE|| ||
|-
|  [[Richards JG| Jeff Richards]]||University of British Columbia, CA|| ||
|-
|  [[Rossignol R|Rodrigue Rossignol]]||Université Victor Segalen-Bordeaux 2, FR|| ||''part time''
|-
|  [[Scatena R|Roberto Scatena]]||Catholic University, Rome, IT|| ||''tentative''
|-
|  Vitaly Selivanov||Universitat de Barcelona, ES||Analysis of bifurcation characteristics of the mitochondrial respiratory chain operation and factors determining its specificity for various tissues||
|-
|  [[Skulachev VP|Vladimir Skulachev]]||Moscow State University, RU||SkQ1, the first tool to treat ROS-induced mitochondrial pathologies, which is available in drugstores||
|-
|  [[Smolkova K|Katharina Smolkova]]||Academy of Sciences of the Czech Rep., Prague, CZ||Reverse carboxylation glutaminolysis in breast cancer cells||
|-
|  [[Staples J|James Staples]]||University of Western Ontario, London, CA|| ||''tentative''
|-
|  [[Stocker R|Roland Stocker]]||Victor Chang Cardiac Research Institute, Sydney, AU|| ||''tentative''
|-
|  [[Tretter L|Laszlo Tretter]]||Semmelweis University, Budapest, HU|| ||
|-
|  Willie van Aardt||Noordwes Universiteit, ZA|| || ''tentative''
|-
|  [[Vercesi AE|Anibal Vercesi]]||State University of Campinas, BR||Mitochondrial calciun transport in animal, plant and trypanosomes||
|-
|  [[Votion DM|Dominique Votion]]||University of Liège, BE||The challenge of understanding myopathies in horses using permeabilized and cultured equine muscle cells||
|-
|  [[Wieckowski MR|Mariusz Wieckowski]]||Nencki Institute of Experimental Biology, Warsaw, PL||Can mitochondrial parameters and ROS production be used to differentiate defects in the mitochondrial respiratory system?||
|-
|  || || ||
|}
 
=== Session on high-altitute mitochondrial physiology and hypoxia ===
* Supported by [http://www.hypoxianet.com COST project HypoxiaNet] for members of this network.
 
 
=== Pre-conference Workshop ===
* [http://www.oroboros.at/?IOC78_Obergurgl OROBOROS Oxygraph-2k Workshop IOC78] - limited to 30 participants (6 O2k)
 
 
 
 
[[Category:Events]]

Latest revision as of 11:55, 9 June 2015

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