Abstract

Background:
 Demonstrated is energy released by rupturing paramagnetic oxygen bubbles from H2O2 decomposition causing human cells structural deformations. The aim is to add evidentiary support to a previously published biophysical cancer origin hypothesis.
 The Prokaryotic Cells: In previous research, lithotripsy shock waves rupturing air bubbles were demonstrated causing Red Blood Cells (RBCs) deformations. Recently, experiments using a technique allowing for the demonstration of temporary in vivo preservation of prokaryotic RBCs properties in in vitro blood smears was introduced. Rupturing of oxygen bubbles documented in causing RBCs deformations.
 The Eukaryotic Cells: Previous papers also showed cell deformations caused by imploding oxygen bubbles.
 Methods:
 The Prokaryotic Cells Experiments: In this report, catalase powder was placed directly on wet blood smears. This maneuver triggered an immediate Reactive Oxygen Species (ROS) decomposing the intrinsic H2O2 molecules in blood tissue.
 The Eukaryotic Cells Experiments: Human saliva and scrapped cheek cells were on a glass slide, catalase particles sprinkled and the preparation sandwiched by a second slide. All experiments were monitored and recorded by a video microscope (Celestron Model # 44348) and stored in an Apple MacBook Pro photo application for viewing and evaluation.
 Results:
 In Prokaryotic Cells: Paramagnetism (attraction) from oxygen bubbles, as well as bursts of energy from its decomposition caused deformations of RBCs. The diamagnetic (graphite) and paramagnetic (iron) material also showing to induce cells deformations.
 In Eukaryotic Cells: Paramagnetism (attraction) from oxygen bubbles, as well as bursts of energy from its rupture caused deformations of nucleated cells. Observed were the darkening of endoplasmic reticulum and changes in the internal structures, such as nucleus, Cells architectural external shapes deformations observed.
 
 
 Conclusions:
 This manuscript introduces two mechanisms inducing cells deformations, both having a common denominator, namely oxygen bubbles. Firstly, via a magnetic cross-talk between paramagnetic oxygen bubbles and diamagnetic human cells; and secondly, by the energy released from bubbles rupturing. The deformations were documented in both prokaryotic and eukaryotic cells. As cellular communication ensures biological processes, possible implications are the disruption of cellular communications with unforeseen consequences up to cancer genesis.

Highlights

  • The main purpose of this manuscript is to demonstrate the role of the paramagnetic oxygen molecule effects on human cells structural deformations of both eukaryotic and prokaryotic types, these findings could confirm or support a previously published a biophysical cancer origin hypothesis

  • Via a magnetic cross-talk between paramagnetic oxygen bubbles and diamagnetic human cells; and secondly, by the energy released from bubbles rupturing

  • In Prokaryotic Cells The fronting of opposing magnetic fields, such as the attraction of metal iron filings overriding the weaker diamagnetism or Red Blood Cells (RBCs) is shown to cause RBCs deformation

Read more

Summary

Introduction

Background The main purpose of this manuscript is to demonstrate the role of the paramagnetic oxygen molecule effects on human cells structural deformations of both eukaryotic and prokaryotic types, these findings could confirm or support a previously published a biophysical cancer origin hypothesis. The diamagnetic nature of blood was introduced in 1936 [5], the recording of biomagnetic emissions from the human body ie: Brain, Heart and Hair follicles were published in the 1960s; with a recent increase in publications [6,7,8,9,10,11]. In this manuscript we could apply the Law of Universal Magnetism and state that energy would be emitted by the bursting of an oxygen bubble regardless of its size. Observed were the darkening of endoplasmic reticulum and changes in the internal structures, such as nucleus, Cells architectural external shapes deformations observed

Methods
Results
Discussion
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call