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个人简介
Born to be a (multi)cellular physiologist in Budapest, Hungary, I got my MD at the Semmelweis University in 1986. I got mesmerized by research as a second year medical student at Department of Physiology, and here I remained after graduation to obtain my PhD in 1992 under the guidance of Drs. A Fonyo and G.L Lukacs from the (patho)physiology of mitochondrial cation transport. My main achievements is this period included the characterization of the mitochondrial Na+/H+ exchanger (NHE) and the Ca2+ uniporter, the first continuous measurement of of intramitochondrial pH and Ca2+, and the identification of the physiologic role of the latter (with G.L Lukacs) as a key regulator of the citric acid cycle. I continued with the functional characterization of a novel H+ channel in phagocytes, a topic that drove to perform a postdoc (1992-95) under the supervision of Dr. S Grinstein at Divison of Cell Biology at the Hospital for Sick Children, Toronto. I performed the patch clamp analysis of the new H+ channel and identified the functional differences of plasma membrane NHE isoforms. Here I also got infected with my lifelong interest – the question of how biophysical parameters such as cell volume, tension/contractility and surface charge are converted to biochemical signals and influence cell fate and plasticity. Particularly I sought to understand how cytoskeleton organization regulates transport and gene transcription. I moved to Canada in 1997 and became a PI at the Toronto General Research Institute (1997-2003) and the St. Michaels’s Hospital/Keenan Research Centre (KRC) (2003-present), and was appointed at the Department of Surgery (1999) and Biochemistry (2013). We investigated the organization and role of the cytoskeleton in the context of osmostress and of epithelial mesenchymmal transition (EMT), a key process in organ fibrosis and cancer. Currently we aim at understanding how the cytoskeleton regulates nucleocytopalmic traffic of transcription factors and thus phenotype, plasticity, particularly during organ fibrosis and myofibroblats generation. Our main results include the description of cell volume-dependent regulation of Rho GTPases and a novel kinase cascade, the identification the regulatory role of cell contacts in EMT, the description of the two-hit model (contact-injury and the fibrogenic cytokine TGFβ) of EMT/epithelial-myofibroblast transition, the concept of site specific susceptibility to TGFβ and of acquired ciliopathy during fibrogenesis. I have published 127 peer-reviewed papers (>7500 citations), am the head of the research training centre and the Critical Care/Inflammation Platform at KRC and the associate vice-chair of research at the Dept Surgery.
研究兴趣
论文共 266 篇作者统计合作学者相似作者
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Avinash Naraiah Mukkala,Bruna Araujo David,Menachem Ailenberg,Jady Liang,Chirag Manoj Vaswani,Danielle Karakas, Rachel Goldfarb,William Barbour, Avishai Gasner, Ruoxian Scarlet Wu,Raluca Petrut,Mirjana Jerkic,Ana Cristina Andreazza,Claudia Dos Santos,Heyu Ni,Haibo Zhang,Andras Kapus,Paul Kubes,Ori David Rotstein
Annals of surgeryno. 6 (2025): 1032-1047
Mark F Rzepka, Sonja Raschzok, Xavier A Lee,Kana Yazaki, John Dauz,Mei Sun, Theo Meister,Linda Nghiem,Golam Kabir,Jean-Francois Desjardins,Wolfgang M Kuebler,Andras Kapus,Kim A Connelly,Mark K Friedberg
American journal of respiratory cell and molecular biologyno. 2 (2025): 158-168
iScienceno. 4 (2025): 112105-112105
Avinash Naraiah Mukkala, Vida Maksimoska, Emma Noble,Menachem Ailenberg,Raluca Petrut, Rachel Goldfarb,Andras Kapus,Katalin Szaszi,Ori David Rotstein
Shock (Augusta, Ga)no. 3 (2024): 499-502
Shruthi Venugopal,Qinghong Dan, Veroni S. Sri Theivakadadcham, Brian Wu,Michael Kofler,Matthew D. Layne,Kim A. Connelly, Mark F. Rzepka,Mark K. Friedberg,Andras Kapus,Katalin Szaszi
Open Access Governmentno. 1 (2023): 126-128
Xinying Guo,Negar Khosraviani,Sneha Raju, Joshya Singh, Nikki Zamani Farahani, Madlene Abramian,Victor J. Torres,Kathryn L. Howe,Jason E. Fish,Andras Kapus,Warren L. Lee
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作者统计
#Papers: 266
#Citation: 13630
H-Index: 66
G-Index: 112
Sociability: 7
Diversity: 4
Activity: 18
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