Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation

The influence of the anisotropy of apple tissue and the orientation of applied electric field on electropermeabilization was investigated. Different tissue regions were sampled to perform a series of experiments. The tissue was viewed under the microscope to study cell size, shape and orientation. I...

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Main Authors: Yongyut Chalermchat, Luca Malangone, Petr Dejmek
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/50486
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-504862018-09-04T04:46:22Z Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation Yongyut Chalermchat Luca Malangone Petr Dejmek Agricultural and Biological Sciences Engineering The influence of the anisotropy of apple tissue and the orientation of applied electric field on electropermeabilization was investigated. Different tissue regions were sampled to perform a series of experiments. The tissue was viewed under the microscope to study cell size, shape and orientation. In a parallel experiment, cylindrical samples of tissue were subjected to pulsed electric fields and the change in electrical conductivity was measured by the voltage-current method. The measured electrical conductivity during pulsing was then converted into a permeability index which defined the relative change in electrical conductivity compared to the electrical conductivity of frozen/thawed tissue that served as a reference of completely damaged tissue. Electrical impedance was also measured to monitor the tissue changes as affected by pulsed electric fields. The results showed that elongated cells taken from the inner region of the apple parenchyma, responded to the electric fields in different ways. Fields of lower intensity were required to permeabilize these cells when the fields were applied parallel to the longest axis of the cells. Other field orientations required greater applied electric fields to permeabilize the cells. No field orientation dependence was observed for round cells that belonged to the outer region of the apple parenchyma. A condition in which a high degree of permeabilization during pulsing and very small change after pulsing were observed could be obtained at an applied field intensity of 900 V cm-1. Thus reversible electroporation took place. © 2009 IAgrE. 2018-09-04T04:41:30Z 2018-09-04T04:41:30Z 2010-03-01 Journal 15375110 2-s2.0-76749139834 10.1016/j.biosystemseng.2009.12.006 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=76749139834&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/50486
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Agricultural and Biological Sciences
Engineering
spellingShingle Agricultural and Biological Sciences
Engineering
Yongyut Chalermchat
Luca Malangone
Petr Dejmek
Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation
description The influence of the anisotropy of apple tissue and the orientation of applied electric field on electropermeabilization was investigated. Different tissue regions were sampled to perform a series of experiments. The tissue was viewed under the microscope to study cell size, shape and orientation. In a parallel experiment, cylindrical samples of tissue were subjected to pulsed electric fields and the change in electrical conductivity was measured by the voltage-current method. The measured electrical conductivity during pulsing was then converted into a permeability index which defined the relative change in electrical conductivity compared to the electrical conductivity of frozen/thawed tissue that served as a reference of completely damaged tissue. Electrical impedance was also measured to monitor the tissue changes as affected by pulsed electric fields. The results showed that elongated cells taken from the inner region of the apple parenchyma, responded to the electric fields in different ways. Fields of lower intensity were required to permeabilize these cells when the fields were applied parallel to the longest axis of the cells. Other field orientations required greater applied electric fields to permeabilize the cells. No field orientation dependence was observed for round cells that belonged to the outer region of the apple parenchyma. A condition in which a high degree of permeabilization during pulsing and very small change after pulsing were observed could be obtained at an applied field intensity of 900 V cm-1. Thus reversible electroporation took place. © 2009 IAgrE.
format Journal
author Yongyut Chalermchat
Luca Malangone
Petr Dejmek
author_facet Yongyut Chalermchat
Luca Malangone
Petr Dejmek
author_sort Yongyut Chalermchat
title Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation
title_short Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation
title_full Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation
title_fullStr Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation
title_full_unstemmed Electropermeabilization of apple tissue: Effect of cell size, cell size distribution and cell orientation
title_sort electropermeabilization of apple tissue: effect of cell size, cell size distribution and cell orientation
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=76749139834&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/50486
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