Noninvasive body fluid stress sensing
Electrochemical impedance-based label-free and rapid biosensor for select bodily fluid biomolecule levels. Monoclonal antibodies to of biomolecule such as Cortisol were covalently attached to a 16-mercaptohexadecanoic acid functionalized gold working electrode using zero-length crosslinkers N-(3-dimethylaminopropyl)-N-ethylcarbodiimide and 10 mM N-hydroxysulfosuccinimide. Cortisol was detected in phosphate buffered saline (simulated tear fluid) using a simple ferrocyanide reagent with a lower limit of detection of 18.73 pM and less than 10% relative standard deviation.
1. An electrochemical sensor, comprising:
a reference electrode and a counter electrode;
a sensing well disposed between said reference electrode and said counter electrode; and
a functionalized working electrode encapsulated in a mesoporous carbon ink and disposed within said sensing well; wherein
one or more of a molecular recognition unit to a stress marker is coupled to said functionalized working electrode.
2. The sensor of claim 1 , wherein said one or more molecular recognition units comprise monoclonal antibodies are covalently attached to a 16-mercaptohexadecanoic acid functionalized working electrode.
3. The sensor of claim 2 , wherein said one or more monoclonal antibodies are attached to said functionalized working electrode with zero-length crosslinkers N-(3-dimethylaminopropyl}-N-ethylcarbodiimide and 1 OmM N-hydroxysulfosuccinimide.
4. The sensor of claim 3 , wherein said reference electrode comprises a Ag/AgCl electrode.
5. The sensor of claim 4 , wherein said counter electrode comprises a Pt electrode.
6. The sensor of claim 1 , further comprising a multiplexible electrochemical impedance spectroscopy system in operable arrangement therewith.
7. The sensor of claim 1 , wherein said reference electrode and said counter electrode are disposed both within and outside of said sensing well.
8. The sensor of claim 1 , wherein said reference electrode and said counter electrode are disposed along a sidewall within said sensing well.