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Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study

(1) Background: A novel bioreactor platform of neuronal cell cultures using low-magnitude, low-frequency (LMLF) vibrational stimulation was designed to discover vibration influence and mimic the dynamic environment of the in vivo state. To better understand the impact of 40 Hz and 100 Hz vibration o...

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Autores principales: Grosman-Dziewiszek, Patrycja, Wiatrak, Benita, Dziewiszek, Wojciech, Jawień, Paulina, Mydlikowski, Remigiusz, Bolejko, Romuald, Szandruk-Bender, Marta, Karuga-Kuźniewska, Ewa, Szeląg, Adam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143216/
https://www.ncbi.nlm.nih.gov/pubmed/35630814
http://dx.doi.org/10.3390/molecules27103337
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author Grosman-Dziewiszek, Patrycja
Wiatrak, Benita
Dziewiszek, Wojciech
Jawień, Paulina
Mydlikowski, Remigiusz
Bolejko, Romuald
Szandruk-Bender, Marta
Karuga-Kuźniewska, Ewa
Szeląg, Adam
author_facet Grosman-Dziewiszek, Patrycja
Wiatrak, Benita
Dziewiszek, Wojciech
Jawień, Paulina
Mydlikowski, Remigiusz
Bolejko, Romuald
Szandruk-Bender, Marta
Karuga-Kuźniewska, Ewa
Szeląg, Adam
author_sort Grosman-Dziewiszek, Patrycja
collection PubMed
description (1) Background: A novel bioreactor platform of neuronal cell cultures using low-magnitude, low-frequency (LMLF) vibrational stimulation was designed to discover vibration influence and mimic the dynamic environment of the in vivo state. To better understand the impact of 40 Hz and 100 Hz vibration on cell differentiation, we join biotechnology and advanced medical technology to design the nano-vibration system. The influence of vibration on the development of nervous tissue on the selected cell line SH-SY5Y (experimental research model in Alzheimer’s and Parkinson’s) was investigated. (2) Methods: The vibration stimulation of cell differentiation and elongation of their neuritis were monitored. We measured how vibrations affect the morphology and differentiation of nerve cells in vitro. (3) Results: The highest average length of neurites was observed in response to the 40 Hz vibration on the collagen surface in the differentiating medium, but cells response did not increase with vibration frequency. Also, vibrations at a frequency of 40 Hz or 100 Hz did not affect the average density of neurites. 100 Hz vibration increased the neurites density significantly with time for cultures on collagen and non-collagen surfaces. The exposure of neuronal cells to 40 Hz and 100 Hz vibration enhanced cell differentiation. The 40 Hz vibration has the best impact on neuronal-like cell growth and differentiation. (4) Conclusions: The data demonstrated that exposure to neuronal cells to 40 Hz and 100 Hz vibration enhanced cell differentiation and proliferation. This positive impact of vibration can be used in tissue engineering and regenerative medicine. It is planned to optimize the processes and study its molecular mechanisms concerning carrying out the research.
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spelling pubmed-91432162022-05-29 Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study Grosman-Dziewiszek, Patrycja Wiatrak, Benita Dziewiszek, Wojciech Jawień, Paulina Mydlikowski, Remigiusz Bolejko, Romuald Szandruk-Bender, Marta Karuga-Kuźniewska, Ewa Szeląg, Adam Molecules Article (1) Background: A novel bioreactor platform of neuronal cell cultures using low-magnitude, low-frequency (LMLF) vibrational stimulation was designed to discover vibration influence and mimic the dynamic environment of the in vivo state. To better understand the impact of 40 Hz and 100 Hz vibration on cell differentiation, we join biotechnology and advanced medical technology to design the nano-vibration system. The influence of vibration on the development of nervous tissue on the selected cell line SH-SY5Y (experimental research model in Alzheimer’s and Parkinson’s) was investigated. (2) Methods: The vibration stimulation of cell differentiation and elongation of their neuritis were monitored. We measured how vibrations affect the morphology and differentiation of nerve cells in vitro. (3) Results: The highest average length of neurites was observed in response to the 40 Hz vibration on the collagen surface in the differentiating medium, but cells response did not increase with vibration frequency. Also, vibrations at a frequency of 40 Hz or 100 Hz did not affect the average density of neurites. 100 Hz vibration increased the neurites density significantly with time for cultures on collagen and non-collagen surfaces. The exposure of neuronal cells to 40 Hz and 100 Hz vibration enhanced cell differentiation. The 40 Hz vibration has the best impact on neuronal-like cell growth and differentiation. (4) Conclusions: The data demonstrated that exposure to neuronal cells to 40 Hz and 100 Hz vibration enhanced cell differentiation and proliferation. This positive impact of vibration can be used in tissue engineering and regenerative medicine. It is planned to optimize the processes and study its molecular mechanisms concerning carrying out the research. MDPI 2022-05-23 /pmc/articles/PMC9143216/ /pubmed/35630814 http://dx.doi.org/10.3390/molecules27103337 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Grosman-Dziewiszek, Patrycja
Wiatrak, Benita
Dziewiszek, Wojciech
Jawień, Paulina
Mydlikowski, Remigiusz
Bolejko, Romuald
Szandruk-Bender, Marta
Karuga-Kuźniewska, Ewa
Szeląg, Adam
Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study
title Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study
title_full Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study
title_fullStr Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study
title_full_unstemmed Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study
title_short Influence of 40 Hz and 100 Hz Vibration on SH-SY5Y Cells Growth and Differentiation—A Preliminary Study
title_sort influence of 40 hz and 100 hz vibration on sh-sy5y cells growth and differentiation—a preliminary study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143216/
https://www.ncbi.nlm.nih.gov/pubmed/35630814
http://dx.doi.org/10.3390/molecules27103337
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