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学习优化
第476期“工物学术论坛”:Combining mechanistic models and data-driven algorit...
Conversion of Biomass into Useful Chemicals and Biofuel
Publishing with Chem from Cell Press(腾讯会议:389-181-164)
报告题目:
合成生物学的挑战和机遇(Challenges and Opportunities in Synthetic Biology)
 报告人:
Dr. Huimin Zhao
professor
Departments of Chemical and Biomolecular 
Engineering, chemistry, biochemistry, biophysics, 
and bioengineering at the University of Illinois 
at Urbana-Champaign (UIUC)
报告时间:
2013-12-27 16:00
报告地点:
化学工程系工物馆422
主办单位:
化学工程系
  简介:
摘要:
Synthetic biology is the deliberate design of novel biological systems and organisms that draws on principles elucidated by biologists, chemists, physicists, and engineers.  It is a rapidly growing area with broad applications in medical, chemical, food, and agricultural industries. In this talk, I will briefly discuss the challenges and opportunities in synthetic biology and give an overview of the various major synthetic biology efforts around the world.  In addition, I will highlight our own recent work on the development and application of novel synthetic biology tools to address major challenges in health, energy and sustainability.
 
简介:
Prof. Huimin Zhao
Dr. Huimin Zhao is the Centennial Endowed Chair Professor of chemical and biomolecular engineering, and professor of chemistry, biochemistry, biophysics, and bioengineering at the University of Illinois at Urbana-Champaign (UIUC).  He received his B.S. degree in Biology from the University of Science and Technology of China in 1992 and his Ph.D. degree in Chemistry from the California Institute of Technology in 1998 under the guidance of Dr. Frances Arnold.  Prior to joining UIUC in 2000, he was a project leader at the Industrial Biotechnology Laboratory of the Dow Chemical Company.  He was promoted to full professor in 2008.  Dr. Zhao has authored and co-authored over 170 research articles and over 20 issued and pending patent applications with several being licensed by industry.  In addition, he has given plenary, keynote or invited lectures in over 200 international meetings, universities, industries, and research institutes.  Eight of his former graduate students and postdocs became professors in the United States (6) and Korea (2).
Dr. Zhao received numerous research and teaching awards and honors, including Guggenheim Fellowship (2012), Fellow of the American Association for the Advancement of Science (AAAS) (2010), Fellow of the American Institute of Medical and Biological Engineering (AIMBE) (2009), American Institute of Chemical Engineers (AIChE) Food, Pharmaceutical, and Bioengineering Division Plenary Award Lecturer (2009), the American Chemical Society (ACS) Division of Biochemical Technology Young Investigator Award (2008), Outstanding Overseas Young Chinese Scholars Award (2007), DuPont Young Professor Award (2005), National Science Foundation CAREER Award (2004), Dow Chemical Special Recognition Award (1999), Xerox Award for Faculty Research from UIUC College of Engineering (2005), Petit Scholar from UIUC College of Liberal Arts and Sciences (2006), and University Scholar from UIUC (2007).
Dr. Zhao served as a consultant for over 10 companies such as Pfizer, Maxygen, BP, Gevo, and zuChem, and a Scientific Advisory Board member of Gevo and Myriant Technologies.  He is an advisor to the Department of Energy’s Biological and Environmental Research program.  He is the visiting principle investigator of the metabolic engineering research laboratory (MERL) in the Agency for Science, Technology and Research (A*STAR) of Singapore.  In addition, he is the theme leader of the Biosystems Design theme in the Institute for Genomic Biology at UIUC.  Dr. Zhao is an Associate Editor of ACS Catalysis and an editor of ACS Synthetic Biology, Journal of Industrial Microbiology and Biotechnology, and Scientific Reports (Nature).  His primary research interests are in the development and applications of synthetic biology tools to address society’s most daunting challenges in health energy, and sustainability, and in the fundamental aspects of enzyme catalysis, cell metabolism, and gene regulation.
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