全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

The Role of Magnetite Nanoparticles (ICNB) in Discovery New Factor Which Influence on Permeability of Erythrocytes and Eryptosis

DOI: 10.4236/oalib.1101055, PP. 1-6

Subject Areas: Clinical Medicine, Nanometer Materials

Keywords: Nanoparticles of ICNB, Permeability, Physiological Activity, Erythrocytes, Mobility of Protons of the Hydrogen Atoms, Eryptosis

Full-Text   Cite this paper   Add to My Lib

Abstract

This paper presents original research studying the effects of biocompatible nanoparticles standardized (ICNB) on the permeability of erythrocytes and eryptosis. The presented evidence demonstrates that changing orientation and mobility protons of the hydrogen atoms in the pericellular fluid significantly modify the permeability and physiological activity of erythrocytes. The leading role of the state of cell membrane and transport activity enzymes (ATPase) in ensuring its permeability and functional activity is exaggerated. Magnetite nanoparticles (IСNB) act on the fluid of pericellular structure by changing the orientation and mobility of hydrogen protons that ultimately determines the permeability, and physiological activity of cells. These studies support the G. Ling’s theory of an “association-induction” and “multi-layered organization polarized water”.

Cite this paper

Belousov, A. (2014). The Role of Magnetite Nanoparticles (ICNB) in Discovery New Factor Which Influence on Permeability of Erythrocytes and Eryptosis. Open Access Library Journal, 1, e1055. doi: http://dx.doi.org/10.4236/oalib.1101055.

References

[1]  http://nanolab.com.ua/abstracts.html 
[2]  Belousov, A.N. and Belousova, E.Yu. (2002) The First Steps in Discovery New Mechanisms of Cellular Regulation in Means by Nanotechnology Preparations. X International Conference New Information Technologies in Medicine and Ecology, Yalta, 420-425.
[3]  Belousov, A.N. (2000) Effect of Magnet Controlled Sorbent on Parameters of Acid-Base Balance of the Blood and the Processes of Glycolysis in Erythrocytes. Pain, Anesthesia and Intensive Care, 1, 263-265.
[4]  Belousov, A.N. and Nevzorov, V.P. (1997) Ultrastructure of Cells in the Kidneys and Lungs of Rabbits after Administration of Magnetite. International Collection of Scientific Papers IV Scientific and Practical Conference on the Creation and Testing of New Drugs, 4, 77-87.
[5]  Belousov, A.N. and Nevzorov, V.P. (1997) Ultrastructure of Liver Cells after Administration of Magnetite. International Collection of Scientific Papers IV Scientific and Practical Conference on the Creation and Testing of New Drugs, 4, 71-77.
[6]  Belousov, A.N. (2009) Spectrum of Application Magnetite Nanopaticles in Medicine. Nanotech, 2, 154-157.
[7]  Belousov, A.N. (2012) Effect on Hemolysis and Transport ATPase Activity of Erythrocytes by Means Nanopareticles of Magnetit Controlled Sorbent (MCS-B). Pain, Anesthesia and Intensive Care, 1, 26-28.
[8]  Belousov, A.N. (2013) Application Magnetite of Nanoparticles (ICNB Preparation) as Magnetically-Resonant Contrasting Means during Visualization of Tumours. Clean Technology and Sustainable Industries Organization, 10, 379- 381.
[9]  Belousov, A.N. (2012) Investigation of the Influence Nanoparticles of Magnetite Controlled Sorbent (MCS-B) on the Functional Activity of Erythrocytes. Prospects Medicine and Biology, 1, 94-97.
[10]  www.nanolab.com.ua 
[11]  Ling, G.N. (2008) Life at the Cell and Below-Cell Level: The Hidden History of a Fundamental Revolution in Biology. Science, Sankt-Peterburg, 376 p.

Full-Text


comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133

WeChat 1538708413