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 orientati...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 modifies 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(ICNB)act on the fluid of pericellular structure by changing the orientation and mobility of hydrogen protons that ultimately determine 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".展开更多
文摘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 modifies 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(ICNB)act on the fluid of pericellular structure by changing the orientation and mobility of hydrogen protons that ultimately determine 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".