Molia Cinger
   Born in December 1961 in Seattle. 1991 by the University of California Los Angeles (UCLA) Biochemistry, 1992-1993 Dr. Stanford (Stanford) of the University of molecular pharmacology postdoctoral. 1993-1996 Canada molecular and cell biology researcher at the Institute. 1996-2000 U.S. Senior Fellow at Stanford University School of Medicine. 2000 U.S. Cornell University MBA degree, after the United States, Canada, Australia, New Zealand and many other biotechnology companies as product development director. 2002 employed in the United States love Staples International
Institute of Biotechnology. In the United States ˇ¶cells and biologicalˇ·ˇ¶cell nutritionˇ·the British ˇ¶Drug Delivery Researchˇ·magazine published nearly 32 papers.

Research Direction

   First, special magnetic materials biological function. Exploration of magnetic nanoparticles on cell survival and death implications. Research on magnetic nano-materials blocking
nerve cells and stem cell apoptosis in particular biological function and molecular
mechanism.
   Second, biological molecules in nano-magnet under the application. Research on
biological molecules, cells in the magnetic effect of the microwave oscillations, and the magnetic force of the mass, skin, Meridian, neurological side effects and the role of
research. And the development of biological magnet in biology, medicine, environmental protection and the application of electronics.
   Third, targeting magnetic controlled-release drug system. The development of a specific organ or cells of sick and microwave or magnetic field changes from the control of nano-particle delivery system. Will be sustained release, targeted and controlled release of these three elements together organically, protein, peptide and small molecule drugs to provide effective control of vector platform.
   Fourth. Gland apoptosis. Exploration of the gland cells in the human body with specific common, to promote apoptosis glands and the effects of molecular mechanism. Find gland cells promote nutrition, proliferation and split the active ingredient.
   Fifth, cell division and collagen protein relationship. Study of different organizations of
cell division and proliferation in the course of the impact on the material, the proportion of ingredients and quantity. Exploration of human cells to sort and the relationship between
the electrodes.

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