Grant will enable new nano-opto center to develop, apply on-chip bioanalysis

Jan. 28, 2009
JANUARY 28, 2009--The University of California, Santa Cruz announced plans to establish the M. Keck Center for Nanoscale Optofluidics, thanks to a new $1.5 million grant. The center will focus on further developing UCSC's optofluidics platform, which integrates nanotechnology and optofluidic silicon chips, and applying it improve biomedical analysis for toxicology, immunology, disease detection and diagnosis, and more.

JANUARY 28, 2009--The University of California, Santa Cruz (Santa Cruz, CA) has announced plans to establish the W. M. Keck Center for Nanoscale Optofluidics, thanks to a new $1.5 million grant from the W. M. Keck Foundation. The center will focus on integration of nanotechnology and optofluidic silicon chips and how this technology can be used to improve biomedical analysis in a wide range of fields, including toxicology, immunology, disease detection, and diagnostics.

"Being able to analyze single biomolecules is essential to improving our fundamental understanding of life and to developing a new generation of ultrasensitive instruments to detect diseases," said Holger Schmidt, associate professor of electrical engineering and director of the new center. "We have developed an optofluidic platform that enables us to detect single molecules and particles on a chip without the need for bulky microscopes. The Keck Foundation grant provides the financial resource to establish the nanofabrication capabilities required to define nanoscale features on optofluidic chips and take this platform to a new level. We can now conduct benchmark studies in molecular biology to verify the potential of this approach."

The center is a joint endeavor of the Jack Baskin School of Engineering and the Division of Physical and Biological Sciences at UCSC. An interdisciplinary team led by Schmidt is composed of faculty from five UCSC departments: Mark Akeson, adjunct professor of biomolecular engineering; David Deamer, professor emeritus of biomolecular engineering; William Dunbar, assistant professor of computer engineering; Harry Noller, Sinsheimer Professor of Molecular Biology; and Jin Zhang, professor of chemistry and biochemistry. The center grew out of earlier collaborations between these investigators funded in part by a Keck Futures Nanotechnology Grant Schmidt received in 2005.

"The W. M. Keck Foundation's commitment to high-risk research, especially in these economic times, is remarkable," said Michael Isaacson, acting dean of Baskin Engineering and Narinder Singh Kapany Professor of Optoelectronics. "Dr. Schmidt and the team clearly have demonstrated the tremendous potential for developing instrumentation that is portable, inexpensive, and fast. We are grateful that the foundation recognizes this potential."

Based in Los Angeles, the W. M. Keck Foundation was established in 1954 by the late W. M. Keck, founder of the Superior Oil Company. The foundation's grant making is focused primarily on pioneering efforts in the areas of medical research, science, and engineering.

More information:
UCSC's Jack Baskin School of Engineering
W. M. Keck Foundation

Posted by Barbara G. Goode, [email protected].

Sponsored Recommendations

Demonstrating Flexible, Powerful 5-axis Laser Micromachining

Sept. 18, 2024
Five-axis scan heads offer fast and flexible solutions for generating precise holes, contoured slots and other geometries with fully defined cross sections. With a suitable system...

Enhance Your Experiments with Chroma's Spectra Viewer

Sept. 5, 2024
Visualize and compare fluorescence spectra with our interactive Spectra Viewer tool. Easily compare and optimize filters and fluorochromes for your experiments with this intuitive...

Optical Filter Orientation Guide

Sept. 5, 2024
Ensure optimal performance of your optical filters with our Orientation Guide. Learn the correct placement and handling techniques to maximize light transmission and filter efficiency...

Ensure Optimal Performance with Shortpass Filters

Sept. 5, 2024
Achieve precise wavelength blocking with our Shortpass Filters. Ideal for applications requiring effective light transmission and cutoff, these filters ensure optimal performance...

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!