INHIBITION OF EHRLICH TUMOR GROWTH IN MICE BY ELECTRIC INTERFERENCE THERAPY (IN VIVO STUDIES)

M. M. Ghannam, Reem H. El-Gebaly, Mohamed H. Gaber, Fadel M. Ali

Electromagnetic Biology and Medicine · 2002 · 19 citations · 23 references

Concepts

TL;DR

The interferential electric fields were produced in mouse tumor tissue by superimposing two high‑frequency sinusoidal waves to generate a 5‑Hz beat frequency centered at the tumor core. Daily 1‑hour exposure to this 5‑Hz interferential field markedly slowed tumor growth, reduced tumor permittivity toward normal levels, and induced partial regression of neoplastic aggregates, indicating that treatment duration and resonant field frequency are key to tumor growth delay.

Abstract

A study of solid tumor growth retardation by employing extremely low frequency (ELF) electric fields has been carried out. ELF electric fields were generated in tumor tissue in mice by the interference of two high frequency sinusoidal waves with the beat frequency centered at the tumor core. The results indicated a pronounced decrease in tumor growth rate in animals exposed to a 5-Hz interferential frequency for 1 hr daily. The 1 hr/day treatment produced a greater retardation effect than the 1 hr/week treatment. This indicates that treatment duration at the applied field frequency appears to play an important role in tumor growth delay. The dielectric properties of the tumor cells showed higher permittivity and conductivity values than homologous normal tissue. The permittivity of tumor cells treated daily with 5 Hz reaches nearly the same value as control tissue. Moreover, histological studies show that tumor tissues treated daily with the same frequency undergo partial regression and shrinkage of the aggregates of neoplastic cells leaving very little of them. We conclude that this new interferential technique is promising for tumor treatment in which a resonating electric field affects cell-to-cell communication.

References

23