Cancer Electro-biology

The fundamental premise of Bio-Electromagnetic-Medicine is set upon the electrostatic forces of nature that act to govern the physiologic processes of biologic life. At the molecular level of every living cell within the body, biologic function and expression of life can be described as dynamic cascades of chemical interactions and modifications that are facilitated and modulated via the electrostatic forces inherent within us.

Naturally occurring electric fields have been measured within multiple tissues and cell types and in the surrounding areas of healing and regenerating tissues throughout the body. Electromagnetic fields have demonstrated a biologic affect upon the growth, development and regeneration of various cells and tissues of the human body. Modifications of growth patterns in early embryonic development and during electromagnetic induced tissue regeneration and repair of bone, cartilage, heart muscle, spinal cord, nerve cell and open wounds have all been observed with the use of electromagnetic-based therapeutics. Scientific research indicates that these effects are a result of the electromagnetic field influence on cell and tissue metabolism, enzyme activity, gene/dna expression and cell communication and signaling.

Free Radicals are naturally synthesized chemicals involved in the cell’s daily metabolic processes and are known to be directly involved in the rapid growth rates of certain cancer cell types. Free radicals are also involved with certain aspects of DNA damage, cell mutation and programmed cell death, particularly in certain cancer cell types. Oxidative stress involves the cells ability to regulate an increase of free radical concentration levels within the cell interior. Most cancer cells undergo increased oxidative stress due to the excessive metabolic rate required to support an increase in cell division and tumor growth. It is this mechanism that our current electromagnetic treatment design has focused upon.

SCIENTIFIC data from our research suggests a biologic interaction between the electromagnetic field energy upon the modulation of the cell’s free radical chemistry and oxidative stress load. The results of our studies on mice demonstrate significant changes upon the cancer cell's growth, proliferation and survival rate.

THESE FINDINGS HOLD ENORMOUS PROMISE FOR FUTURE DISCOVERIES!

SIGNIFICANT FUNDING IS NECESSARY FOR THE ADVANCEMENT OF RESEARCH IN THIS AREA OF SCIENCE IN ORDER TO ATTAIN REVOLUTIONARY BREAKTHROUGHS THAT CAN ONE DAY BENEFIT HUMAN-KIND.

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