The long term objectives of this proposal are: (1) Basic research in the area of solid state chemical sensors, namely CHEMFETs, leading to understanding and utilization of unique features of these devices; (2) Biomedical applications of CHEMFETs namely for in vivo monitoring of electrolytes in biological fluids and ex vivo monitoring of electrolytes and gases. This proposal will also provide basic support to other research programs in terms of devices and transfer of know-how.
The specific aims for this grant period include: (a) design/development of multisensor chip with integrated supporting on-chip electronics. This design will be done concurrently with the separately funded microencapsulation effort which is essential for making these devices commercially available; (b) development of rapid microtechnique based on potentiometric stripping for trace analysis of heavy metals (Pb, Cu, Cd) in biological fluids. In this work we shall use our recently developed electrostatically protected ISFET; (c) Basic study of Langmuir-Blodgettt films deposited on the CHEMFET gates. This work should lead to better understanding of the electrochemistry of olfaction and ion flux modulation by adsorbing molecules on lipid bilayer membranes; (d) As in the previous period our devices will be made available to non-profit organizations at no cost.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM022952-09
Application #
3271423
Study Section
Surgery and Bioengineering Study Section (SB)
Project Start
1976-04-01
Project End
1987-07-31
Budget Start
1985-08-01
Budget End
1986-07-31
Support Year
9
Fiscal Year
1985
Total Cost
Indirect Cost
Name
University of Utah
Department
Type
DUNS #
City
Salt Lake City
State
UT
Country
United States
Zip Code
84112
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Bezegh, K; Petelenz, D; Bezegh, A et al. (1987) Integrated solid state probe for determination of activity of sodium chloride. Anal Chem 59:1423-5
Caras, S D; Janata, J; Saupe, D et al. (1985) pH-based enzyme potentiometric sensors. Part 1. Theory. Anal Chem 57:1917-20
Caras, S D; Petelenz, D; Janata, J (1985) pH-based enzyme potentiometric sensors. Part 2. Glucose-sensitive field effect transistor. Anal Chem 57:1920-3
Caras, S D; Janata, J (1985) pH-based enzyme potentiometric sensors. Part 3. Penicillin-sensitive field effect transistor. Anal Chem 57:1924-5