CapSense-Flex ↗
A capillary cartridge with a molecularly imprinted cortisol electrode. Published in ACS Sensors 11, 3143–3155.
ACS Sensors · 2026Technology
The cartridge combines passive fluid transport, molecularly imprinted recognition and electrochemical measurement. Published cortisol research provides the starting point for product development.
Fig. 2 — Channel cross-section
01 · Fluidics
Capillary action is the whole fluid-handling system. Channel geometry and surface chemistry pull the sample from the inlet to the sensing surface, so there is no pump, no valve and no external actuation.
Passive transport reduces the fluid-handling hardware. A compact reader is still needed for the electrical measurement. Manufacturing consistency and the complete sampling workflow remain part of development.
02 · Recognition
Molecular imprinting builds the recognition site into a polymer. The target molecule acts as a template during polymerisation, then is washed out, leaving a cavity that matches it in shape and chemistry.
Fig. 3 — Molecular imprinting, in three steps
The published cartridge retained about 90% of its signal after 60 days at 4 °C. That result does not establish room-temperature shelf life.
Synthetic monomers offer a route to economical recognition chemistry. Finished test cost must also include manufacturing, packaging and quality control.
The sensing layer is formed directly on the electrode, so recognition and readout are the same component.
03 · Readout
Binding changes the electrode interface. In the CapSense-Flex cortisol study, electrochemical impedance spectroscopy measures this response, which is calibrated against known concentrations.
The planned product pairs a disposable cartridge with a dedicated reader. Assay precision, calibration stability and agreement with reference methods must be established before clinical use.
Published cortisol benchmark
Research results for cortisol, not specifications for a finished Hormetrix product. Incubation time is not the complete test time.
Read the published studyWhy it matters
| Property | Antibody-based assay | Imprinted polymer sensor |
|---|---|---|
| Recognition element | Biological, produced in living systems | Synthetic polymer |
| Storage | Assay-specific storage conditions | Ambient storage under development |
| Shelf life | Established for the complete assay | Complete cartridge stability requires testing |
| Consumable cost | Reagent, production and quality costs | Synthetic monomers; finished cost to validate |
| Workflow | Laboratory or integrated point-of-care formats | Passive transport integrated on a chip |
| Result | Qualitative or quantitative, depending on device | Quantitative cortisol research results |
Comparison of approaches. Performance depends on the complete assay; the Hormetrix product is in development.
Published work
These papers describe two related cortisol sensing approaches. The cartridge uses imprinted polymers; the wearable study uses antibodies. Their results should be assessed separately.
A capillary cartridge with a molecularly imprinted cortisol electrode. Published in ACS Sensors 11, 3143–3155.
ACS Sensors · 2026An antibody-based wearable cortisol immunosensor with sweat storage for parallel reference testing. Published in Chemical Engineering Journal 532, 174373.
Chemical Engineering Journal · 2026Where we are
We are early, and we say so plainly. This is the path in front of us.
Technical partnership
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