Physical aspects of biological activity and cancer

Mitochondria are organelles at the boundary between chemical–genetic and physical processes in living cells. Mitochondria supply energy and provide conditions for physical mechanisms. Protons transferred across the inner mitochondrial membrane diffuse into cytosol and form a zone of a strong static...

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Main Author: Jiří Pokorný
Format: Article
Language:English
Published: AIP Publishing LLC 2012-03-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.3699057
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author Jiří Pokorný
author_facet Jiří Pokorný
author_sort Jiří Pokorný
collection DOAJ
description Mitochondria are organelles at the boundary between chemical–genetic and physical processes in living cells. Mitochondria supply energy and provide conditions for physical mechanisms. Protons transferred across the inner mitochondrial membrane diffuse into cytosol and form a zone of a strong static electric field changing water into quasi-elastic medium that loses viscosity damping properties. Mitochondria and microtubules form a unique cooperating system in the cell. Microtubules are electrical polar structures that make possible non-linear transformation of random excitations into coherent oscillations and generation of coherent electrodynamic field. Mitochondria supply energy, may condition non-linear properties and low damping of oscillations. Electrodynamic activity might have essential significance for material transport, organization, intra- and inter-cellular interactions, and information transfer. Physical processes in cancer cell are disturbed due to suppression of oxidative metabolism in mitochodria (Warburg effect). Water ordering level in the cell is decreased, excitation of microtubule electric polar oscilations diminished, damping increased, and non-linear energy transformation shifted towards the linear region. Power and coherence of the generated electrodynamic field are reduced. Electromagnetic activity of healthy and cancer cells may display essential differences. Local invasion and metastastatic growth may strongly depend on disturbed electrodynamic activity. Nanotechnological measurements may disclose yet unknown properties and parameters of electrodynamic oscillations and other physical processes in healthy and cancer cells.
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spelling doaj.art-e8d5fe938bc04cb48d2e254f5434c9252022-12-21T19:55:00ZengAIP Publishing LLCAIP Advances2158-32262012-03-0121011207011207-1110.1063/1.3699057100201ADVPhysical aspects of biological activity and cancerJiří Pokorný0Institute of Photonics and Electronics AS CR, Chaberská 57, Prague 8, Czech RepublicMitochondria are organelles at the boundary between chemical–genetic and physical processes in living cells. Mitochondria supply energy and provide conditions for physical mechanisms. Protons transferred across the inner mitochondrial membrane diffuse into cytosol and form a zone of a strong static electric field changing water into quasi-elastic medium that loses viscosity damping properties. Mitochondria and microtubules form a unique cooperating system in the cell. Microtubules are electrical polar structures that make possible non-linear transformation of random excitations into coherent oscillations and generation of coherent electrodynamic field. Mitochondria supply energy, may condition non-linear properties and low damping of oscillations. Electrodynamic activity might have essential significance for material transport, organization, intra- and inter-cellular interactions, and information transfer. Physical processes in cancer cell are disturbed due to suppression of oxidative metabolism in mitochodria (Warburg effect). Water ordering level in the cell is decreased, excitation of microtubule electric polar oscilations diminished, damping increased, and non-linear energy transformation shifted towards the linear region. Power and coherence of the generated electrodynamic field are reduced. Electromagnetic activity of healthy and cancer cells may display essential differences. Local invasion and metastastatic growth may strongly depend on disturbed electrodynamic activity. Nanotechnological measurements may disclose yet unknown properties and parameters of electrodynamic oscillations and other physical processes in healthy and cancer cells.http://dx.doi.org/10.1063/1.3699057
spellingShingle Jiří Pokorný
Physical aspects of biological activity and cancer
AIP Advances
title Physical aspects of biological activity and cancer
title_full Physical aspects of biological activity and cancer
title_fullStr Physical aspects of biological activity and cancer
title_full_unstemmed Physical aspects of biological activity and cancer
title_short Physical aspects of biological activity and cancer
title_sort physical aspects of biological activity and cancer
url http://dx.doi.org/10.1063/1.3699057
work_keys_str_mv AT jiripokorny physicalaspectsofbiologicalactivityandcancer