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Sofie Biosciences receives $1M Phase II SBIR grant from the DOE.

CULVER CITY, Calif., July 11, 2012 — Sofie Biosciences, Inc., a molecular imaging company offering a comprehensive range of products from preclinical imaging systems to novel diagnostic PET imaging probes, announced today that the Department of Energy has awarded the company a grant under the Small Business Innovation Research (SBIR) program. This Phase II award, for approximately $1M, will support the development of a microscale technology for rapid, easy synthesis of PET probes.

Presently, scientists and clinicians must accept the limitations of the centralized radiopharmacy model of PET probe production and distribution, where a limited number of probes are available from radiochemistry cores or, more often, commercial radiopharmacies that provide an even smaller menu from which to choose. The end result is that the average investigator is restricted to a handful of PET probes, namely [18F]FDG, [18F]NaF, and occasionally [18F]FLT, leaving the 1,600+ probes that have been synthesized just out of reach, thus drastically limiting the translational power of PET to a few disciplines and applications.

“We are extremely pleased to be recognized with this highly competitive award from DOE,” said Patrick W. Phelps, President and CEO. “It’s an important step to further the development of a proprietary, game-changing technology that will provides researchers and clinicians with a first-generation device for the production of one-pot PET probes.”

These funds will be invested alongside Sofie resources to help broaden access to novel PET probes to answer fundamental biological questions in disease. “Winning this grant from DOE both supports and accelerates our efforts to bring radiochemistry-on-chip to market, a critical step in Sofie’s vision of creating a transformative technology of an affordable, compact, easy-to-use system for the on-demand production of PET probes,” commented Dr. Melissa Esterby, Director, Technology Development, who will be the Principal Investigator working in close collaboration with co-PI and inventor Dr. R. Michael van Dam at UCLA.

http://prn.to/W4enUK

Posted: Tuesday October 30, 2012

library » Microfluidics

On chip droplet characterization: a practical, high-sensitivity measurement of droplet impedance in digital microfluidics.

Sadeghi S, Ding H, Shah GJ, Chen S, Keng PY, Kim CJ, van Dam RM. Anal Chem. 2012 Feb 21;84(4):1915-23. Epub 2012 Feb 1.

http://1.usa.gov/TlYd1h

Posted: Tuesday October 30, 2012

library » Radiochemistry

Accurate dispensing of volatile reagents on demand for chemical reactions in EWOD chips.

Ding H, Sadeghi S, Shah GJ, Chen S, Keng PY, Kim CJ, van Dam RM.
Lab Chip. 2012 Sep 21;12(18):3331-40. doi: 10.1039/c2lc40244k. Epub 2012 Jul 23.

http://1.usa.gov/YkSxdd

Posted: Tuesday October 30, 2012

library » Radiochemistry

Micro-chemical synthesis of molecular probes on an electronic microfluidic device.

Keng PY, Chen S, Ding H, Sadeghi S, Shah GJ, Dooraghi A, Phelps ME, Satyamurthy N, Chatziioannou AF, Kim CJ, van Dam RM. Proc Natl Acad Sci U S A. 2012 Jan 17;109(3):690-5. Epub 2011 Dec 30.

http://bit.ly/TlXYTD

Posted: Tuesday October 30, 2012

library » Radiochemistry

Emerging Technologies for Decentralized Production of PET Tracers.

Pei Yuin Keng, Melissa Esterby and R. Michael van Dam (2012). Current Clinical and
Research Aspects, Chia-Hung Hsieh (Ed.), ISBN: 978-953-307-824-3, InTech.

http://bit.ly/VCeOje

Posted: Tuesday October 30, 2012

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