Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation

The impact of the pattern of a pulse electrical field generated by a defibrillator discharge on the efficiency of membranous electroporation was studied in a model experiment on human erythrocytic suspension. The initial temperature and time parameters of the model were substantiated. The rate of ce...

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Main Authors: Ye. K. Kozlova, V. V. Moroz, M. S. Bogushevich, P. Yu. Alekseyeva, A. M. Chernysh
Format: Article
Language:English
Published: Federal Research and Clinical Center of Intensive Care Medicine and Rehabilitology, Moscow, Russia 2005-02-01
Series:Общая реаниматология
Online Access:https://www.reanimatology.com/rmt/article/view/1321
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author Ye. K. Kozlova
V. V. Moroz
M. S. Bogushevich
P. Yu. Alekseyeva
A. M. Chernysh
author_facet Ye. K. Kozlova
V. V. Moroz
M. S. Bogushevich
P. Yu. Alekseyeva
A. M. Chernysh
author_sort Ye. K. Kozlova
collection DOAJ
description The impact of the pattern of a pulse electrical field generated by a defibrillator discharge on the efficiency of membranous electroporation was studied in a model experiment on human erythrocytic suspension. The initial temperature and time parameters of the model were substantiated. The rate of cellular hemolysis under the action of two impulses was shown to be increased by 1.2—3.5 times as compared with that under the action of one impulse. Electroporation was more effective and its threshold was lower under the action of two heterodirectional pulses as compared with that under the action of two unidirectional ones. These dependencies are statistical.
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spelling doaj.art-c29c6ace936a44f1993375ee10a76a2c2023-03-13T09:32:45ZengFederal Research and Clinical Center of Intensive Care Medicine and Rehabilitology, Moscow, RussiaОбщая реаниматология1813-97792411-71102005-02-0111424610.15360/1813-9779-2005-1-42-461321Impact of Electrical Pulse Pattern on Red Blood Cell Membranous ElectroporationYe. K. Kozlova0V. V. Moroz1M. S. Bogushevich2P. Yu. Alekseyeva3A. M. Chernysh4ГУ НИИ общей реаниматологии РАМН, Москва, Московская медицинская академия им. И.М. СеченоваГУ НИИ общей реаниматологии РАМН, Москва, Московская медицинская академия им. И.М. СеченоваГУ НИИ общей реаниматологии РАМН, Москва, Московская медицинская академия им. И.М. СеченоваГУ НИИ общей реаниматологии РАМН, Москва, Московская медицинская академия им. И.М. СеченоваГУ НИИ общей реаниматологии РАМН, Москва, Московская медицинская академия им. И.М. СеченоваThe impact of the pattern of a pulse electrical field generated by a defibrillator discharge on the efficiency of membranous electroporation was studied in a model experiment on human erythrocytic suspension. The initial temperature and time parameters of the model were substantiated. The rate of cellular hemolysis under the action of two impulses was shown to be increased by 1.2—3.5 times as compared with that under the action of one impulse. Electroporation was more effective and its threshold was lower under the action of two heterodirectional pulses as compared with that under the action of two unidirectional ones. These dependencies are statistical.https://www.reanimatology.com/rmt/article/view/1321
spellingShingle Ye. K. Kozlova
V. V. Moroz
M. S. Bogushevich
P. Yu. Alekseyeva
A. M. Chernysh
Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation
Общая реаниматология
title Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation
title_full Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation
title_fullStr Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation
title_full_unstemmed Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation
title_short Impact of Electrical Pulse Pattern on Red Blood Cell Membranous Electroporation
title_sort impact of electrical pulse pattern on red blood cell membranous electroporation
url https://www.reanimatology.com/rmt/article/view/1321
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AT msbogushevich impactofelectricalpulsepatternonredbloodcellmembranouselectroporation
AT pyualekseyeva impactofelectricalpulsepatternonredbloodcellmembranouselectroporation
AT amchernysh impactofelectricalpulsepatternonredbloodcellmembranouselectroporation