Related people (48)
Nikolaos Stergiopoulos
Education MTE, Managing the Technology Enterprise Program (2000), IMD, Lausanne Ph.D. in Biomedical Engineering & Engineering Mechanics (1990) Iowa State University, Ames, Iowa. MS in Biomedical Engineering (1987) Iowa State University, Ames, Iowa. Diploma in Mechanical Engineering (1985) National Technical University of Athens. Professional Activities 2002 - present: Professor and director of LHTC 2010 - present: Founder and director of Rheon Medical SA, Préverenges, Switzerland 2008 - present: Founder and director of Antlia S.A., PSE-C, EPFL campus, Switzerland 1998 - 2007: Founder and Scientific Director of EndoArt S.A., Lausanne, Switzerland 1996 - 2002: Assistant professor at the Biomedical Engineering Laboratory, Swiss Federal Institute of Technology, Lausanne, Switzerland. 1991 - 1996: Research Associate at Swiss Federal Institute of Technology - Lausanne 1990 - 1991: Lecturer, Iowa State University
Hilal Lashuel
2012-2013 Visiting Professor, Standford University. Stanford School of Medicine 2011- Associate Professor of Life Sciences-Brain Mind Institute-EPFL Dir. Laboratory of Chemical Biology of Neurodegeneration 2005-2011 Assistant Professor of Life Sciences-Brain Mind Institute-EPFL Dir. Laboratory of Molecular Neurobiology and Neuroproteomics 2005-2008 Director- EPFL Proteomic Core Facility 2002-2004 Instructor of Neurology- Harvard Medical School and Brigham and Women's Hospital 2001-2002 Sabbatical Fellow- Laboratory for Drug Discovery in Neurodegeneration Harvard Medical School, 2001-2002 Post-doctoral Fellow- Center for Neurologic Diseases Harvard Medical School and Brigham and Women's Hospital Advisor- Prof. Peter T. Lansbury 2000-2001 Research Scientist, The Picower Institute for Medical Research, Great Neck New York 1994-2000 PhD Student; Texas A&M University and the Scripps Research Institute Advisor- Prof. Jeffery W. Kelly 1990-1994 B.S. City University of New York, Brooklyn College Dr. Hilal A. Lashuel received his B.Sc. degree in chemistry from the City University of New York in 1994 and completed his doctoral studies at Texas A&M University and the Scripps Research Institute in 2000. After obtaining his doctoral degree, he became a research fellow at the Picower Institute for Medical Research in Long Island New York. In 2001, he moved to Harvard Medical School and the Brigham and Women's Hospital as a research fellow in the Center for Neurologic Diseases and was later promoted to an instructor in neurology at Harvard Medical School. During his tenure (2001-2004) at Harvard Medical School his work focused on understanding the mechanisms of protein misfolding and fibrillogenesis and the role of these processes in the pathogenesis of Parkinson's and Alzheimer's disease. In 2005 Dr. Lashuel moved Switzerland to join the Brain Mind Institute at the Swiss Federal Institute of Technology Lausanne as a tenure-track assistant professor in neurosciences. Currently, Dr. Lashuel is an associate professor of life sciences and the director of the laboratory of molecular and chemical biology of neurodegeneration. (http://lashuel-lab.epfl.ch/). Research efforts in the Lashuel’s laboratory focus on understanding the molecular mechanisms of neurodegeneration and developing novel strategies to diagnose and treat neurodegenerative diseases such as Alzheimer’s and Parkinson’s disease. Research in the Lashuel lab is funded by several international funding agencies and foundations, including the Swiss National Science Foundation, European FP7 program (Marie Curie and ERC grants), Human Science Frontiers, Strauss Foundation, Cure the Huntington’s disease foundation and Michael J Fox foundation and is supported by collaborations with pharmaceutical and biotech companies (http://lashuel-lab.epfl.ch/page-50538-en.html), Nestle, Merck-Serono, AC Immune and Johnson and Johnson. Dr. Lashuel’s research has resulted in the characterization of novel quaternary structure intermediates on the amyloid pathway, identification of potential therapeutic targets, and new hypotheses concerning the mechanisms of pathogenesis in Alzheimer’s disease, Parkinson’s disease and related disorders. Dr. Lashuel scientific contribution to this field includes i) more than100 publications in major peer reviewed journals including Nature journals, Cell, PNAS, JBC, J. Neuroscience JACS, and Angewandtie Chemie; ii) three patents on novel strategies for preventing protein aggregation and treating autoimmune and inflammatory diseases; iii) more than 150 invited lectures since 2002 and more than 5500 citations (7800 citation-Google Scholar) since 1996. Dr. Lashuel has received several pre-doctoral and post-doctoral awards and fellowships and was the recipient of two prestigious awards given to young investigators; Human Science Frontiers young investigator research award and the European Research Council (ERC) starting independent researcher grant and the ERC proof of concept award (2013) These awards provide more than $2.5 Million to Dr. Lashuel to translate some of his ideas and projects into novel strategies for diagnosing and treating neurodegenerative diseases such as Alzheimer’s and Parkinson’s disease. Dr. Lashuel has chaired and co-organized several international conferences and serves as an academic editor for PLoS ONE, an associate editor for frontiers of molecular neuroscience, member of the Editorial advisory board of ChemBioChem and ad hoc reviewer for several international scientific journals and funding agencies.
Dominique Pioletti
Dominique Pioletti received his Master in Physics from the Swiss Federal Institute of Technology Lausanne (EPFL) in 1992. He pursued his education in the same Institution and obtained his PhD in biomechanics in 1997. He developed original constitutive laws taking into account viscoelasticity in large deformations. Then he spent two years at UCSD as post-doc fellow acquiring know-how in cell and molecular biology. He was interested in particular to gene expression of bone cells in contact to orthopedic implant. In April 2006, Dominique Pioletti was appointed Assistant Professor tenure-track at the EPFL and is director of the Laboratory of Biomechanical Orthopedics. His research topics include biomechanics and tissue engineering of musculo-skeletal tissues; mechano-transduction in bone; development of orthopedic implant as drug delivery system. Since 2013, he has been promoted to the rank of Associate Professor.
Henning Paul-Julius Stahlberg
Positions: Since 2020  Prof. Physics, IPHYS, SB, EPFL, Switzerland   2009 – 2021  Prof. Structural Biology, Biozentrum, University Basel, Switzerland 2009 – 2010  Adj. Assoc. Prof. Molecular & Cellular Biology, UC Davis, CA, USA 2007 – 2009  Assoc. Prof. Molecular & Cellular Biology, UC Davis, CA, USA 2003 – 2007  Assist. Prof. Molecular & Cellular Biology, UC Davis, CA, USA Education:     2002  Habilitation, Biozentrum, University Basel, Switzerland   1997 – 2003  Postdoctoral Fellow, Biozentrum, University Basel, Switzerland   1992 – 1997  PhD Student, EPFL, Lausanne, Switzerland   1990 – 1991  Diploma Thesis in Solid State Physics, TU Berlin, Germany   1987 – 1993  Study of Physics, TU Berlin, Germany       Selected Awards & Honors:     2009  W.M.Keck Award   2004  CAREER award, NSF, USA   2002  Habilitation, University Basel, Switzerland       Selected Memberships:     2008 – 2013  Chancellor’s Fellow Award, UC Davis, CA, USA   2004 – 2009  Faculty of 1000   Since 1992  Swiss Society for Optics and Microscopy (SSOM)
Jean-Jacques Meister
A Swiss citizen, Jean-Jacques Meister was born in 1950. He received a diploma in electrical engineering, then a diploma in physics from the Swiss Federal Institute of Technology in Lausanne (EPFL). He joined the Institute of Biomedical Engineering at the Swiss Federal Institute of Technology in Zurich and obtained a PhD in1983. From 1984 to 1990, he worked in different areas of biophysics and biomedical engineering. His main contributions concern novel noninvasive methods for the prevention and diagnosis of cardiovascular diseases: mechanical properties of the arterial wall, arterial hemodynamics, and Doppler ultrasonography. In 1990, he was recruited as a full professor of experimental physics at the Swiss Federal Institute of Technology in Lausanne. He was director of the laboratory of biomedical engineering until 2001, then director of the laboratory of cell biophysics. His fields of research are cellular biophysics: cytoskeleton dynamics, motility & adhesion of cells and calcium dynamics in smooth muscle cells. He spent a sabbatical leave in 2000 at the famous Marine Biological Laboratory, Woods Hole, Massachusetts -USA to improve his skills in molecular and cellular biology. His teaching activities include courses in general physics, Newtonian mechanics, biomedical engineering and biophysics presented to undergraduate and graduate EPFL students in physics and engineering. He is author or co-author of more than 230 scientific papers & book chapters and 8 international patents.
Matthias Lütolf
Matthias Lutolf is Full Professor at EPFL’s Institute of Bioengineering, with a cross appointment in the Institute of Chemical Sciences and Engineering. Lutolf was trained as a Materials Engineer at ETH Zurich where he also carried out his PhD studies (with Jeffrey Hubbell) that were awarded with an ETH medal. He continued his research training as a Post-Doctoral Fellow in Stem Cell Biology (with Helen Blau) at Stanford University. He has served as the Director of the Institute of Bioengineering from 2014 to 2018. Lutolf is an internationally recognized leader in the fields of stem cell bioengineering and tissue engineering. His research program uniquely combines stem cell biology with engineering principles and quantitative thinking. His team, composed of engineers, chemists, physicists, cell and developmental biologists, strives to develop technologies that have true biological and medicinal function and applicability. Lutolf’s work has led to more than 110 peer-reviewed scientific publications, many of which published in highly reputed journals, more than 25 patents, and the commercialization of several products. Current research in the Lutolf lab is focused on the bioengineering of miniature tissues, termed organoids, that are generated from self-organizing stem cells.

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