THE TRANSDUCTION OF CELLULAR MEMBRANE PROTEINS AND STRUCTURAL CELL MEMBRANE ALTERATIONS INDUCED BY EXOGENOUS ENERGY WAVES ENERGIZING LIPID DROPLETS AS THE PROPOSED UNDERLYING MECHANISM IN VERY INTENSIVE PRESSURE PULSES TREATMENTS CLAIMS TO A CANCER CURE

Author:

Embi BS Abraham A.,Haltiwanger Steve

Abstract

The purpose of this manuscript is to propose a mechanism for a cancer cure claim resulting from exogenous stimulation of cancer tumors by very intense pressure pulses (VIPPs) treatments from commercially available energy hardware (CellSonic). Could it be that exogenous continuous pulsating waves alter the cellular lipid bilayer; and this in turn also influence intracellular cell signaling? In Vitro experiments are presented supporting the above-stated thesis. The evidence will show via in vitro experiments how trapping energy from bursting oxygen bubbles induces static electricity discharges up to causing luminescence of intracellular lipid droplets. Figures and video recordings documenting the above-mentioned phenomena are presented. In summary, proposed is a mechanism explaining a cancer cure claim via VIPPs. 1 AAE: Idealized, designed wrote manuscript and conducted in vitro experiments possibly demonstrating a mechanism for VIPPs cancer cure. 2 SH: Added theoretical principles in the discussion supporting the proposed VIPPs mechanism to cancer cure.

Publisher

Granthaalayah Publications and Printers

Subject

Ocean Engineering

Reference19 articles.

1. Lee, A.G. (2003). Lipid-protein interactions in biological membranes: a structural perspective. Biochimica et biophysica acta, 1612 1, 1-40. Biochim Biophys Acta. 2;1612(1):1-40.

2. National Cancer Institute. Cancer Causes-Updated March 7th 2019.

3. (NIH/NLM) (US National Library of Medicine, 2019.

4. Personal communication with Dr Andrew Hague, May 31st 2019.

5. Curie, Jacques and Curie, Pierre (1880). “Development, via compression, of electric polarization in hemihedral crystals with inclined faces,” Bulletin de la Societe de Minerologique de France, 3: 90-93.

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