Understanding Cell Voltage
Every living cell maintains an electrical potential across its membrane. This "cell voltage" is not merely an electrical curiosity β it is fundamental to cellular function, communication, and health.
| Cell State | Voltage | Implications |
|---|---|---|
| Healthy cell | -75 mV | Normal function, proper division |
| Unhealthy cell | -40 mV | Fatigue, susceptibility to infection |
| Cancer cell | -10 mV | Uncontrolled multiplication |
The Bioelectrical Connection
The relationship between cell voltage and disease was first characterised by researchers who observed that cells in diseased tissues consistently showed depolarised membrane potentials. Cancer cells, in particular, maintain significantly lower voltages than healthy cells.
How VIPP Restores Cell Voltage
CellSonic VIPP technology unique by its capacity to influence cell voltage through three simultaneous forces:
- Pressure waves penetrating deep into tissue
- Flash of light (photobiomodulation)
- Electrical field (25,000 volts)
The Implications for Cancer
While CellSonic does not claim to cure cancer, the theoretical framework is compelling: if cancer cells are characterised by low voltage, and VIPP can restore cell voltage, then VIPP may offer a supportive role in cancer management that deserves further research.
This is biophysics doing what biochemistry cannot do.
Learn more about the science behind VIPP pressure pulse therapy.

