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| Education l Research Summary l Publications l Fellowships l Honors & Awards | |||||||||||||||||||||||||||||||||||||||||||
Education
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| Research Summary | |||||||||||||||||||||||||||||||||||||||||||
Engineered constructs that enhance the selectivity of therapeutic agents and novel materials
that act as enhanced contrast agents represent the future of cancer care. Self assembled drug
delivery vehicles composed of biocompatible amphiphilic polymers are one of the best studied
and most widely used constructs for improving the therapeutic index of anticancer drugs.
Similarly, quantum dots and magnetic nanoparticles are nanoscale imaging agents with great
potential for clinical diagnostics. This research proposal focuses on combining the delivery and
targeting capabilities of biocompatible amphiphilic polymer constructs with the superior imaging
capabilities of quantum dots and magnetic nanoparticles. Preliminary work has focused on the
development of quantum dot and magnetic nanoparticle loaded block copolymer micelles and
optimization of characterization techniques. We have successfully produced micelles on the
order of 20-80 nms loaded with nanoscale imaging agents of choice. The assembly process
has been shown to be broadly applicable to a wide variety of polymer/nanoparticle systems.
Further, we have proven that the physical properties of the loaded micelles can be tailored for
applications of interest. |
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Publications and Presentation
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| Fellowships | |||||||||||||||||||||||||||||||||||||||||||
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| Honors and Awards | |||||||||||||||||||||||||||||||||||||||||||
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