Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue

Low Power Laser Irradiation therapy raises the levels of proliferation for the variety of cells. Although despite very little is recognized about its effect on the proliferation levels and possible nuclear morphological changes of mice mesenchymal stem cells, which derived from bone marrow and adipo...

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Main Authors: Z. AL-Timimi, F. Mustafa
Format: Article
Language:Arabic
Published: University of Mosul, College of Veterinary Medicine 2019-01-01
Series:Iraqi Journal of Veterinary Sciences
Subjects:
Online Access:https://vetmedmosul.com/article_153869_26f4db60efc80c11bb19232c276992c4.pdf
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author Z. AL-Timimi
F. Mustafa
author_facet Z. AL-Timimi
F. Mustafa
author_sort Z. AL-Timimi
collection DOAJ
description Low Power Laser Irradiation therapy raises the levels of proliferation for the variety of cells. Although despite very little is recognized about its effect on the proliferation levels and possible nuclear morphological changes of mice mesenchymal stem cells, which derived from bone marrow and adipose tissue. This study examined the effects of the different fluence of 1, 2, 3 and 4 j/cm² with different dose durations on promoting proliferation, viability and possible nuclear morphological changes of mice mesenchymal stem cells. The growth curves have been used to analyse the proliferation of all the applications. Fluorescent stain (DAPI) (4’-6-diamidino-2-phenylindole) staining used to check the nuclear alterations at 72 hours, while the trypan blue assay used to test the cell viability. Mesenchymal stem cells that derived from bone marrow responded to LPLI in a dose-dependent manner. The higher cell growth determined once the cells irradiated with a fluence of 4 j/cm², especially after 24 hours (P<0. 01). Whereas adipose tissue-derived stem cells responded better to a fluence of 2 j/cm² after 48 hours (P<0. 05). There was no significant change in nuclear alterations and in cell viability detected in the studied groups. LPLI permits a significant increase in the proliferation of stem cells, without causing nuclear alterations, therefore, increasing the number of differentiating cells for tissue engineering, regenerative, and healing processes.
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spelling doaj.art-5ff5f1dea2bf4d22a6a789b64da902e82022-12-22T00:50:16ZaraUniversity of Mosul, College of Veterinary MedicineIraqi Journal of Veterinary Sciences1607-38942071-12552019-01-0132228529010.33899/ijvs.2019.153869153869Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissueZ. AL-Timimi0F. Mustafa1Laser Physics-College of Science for Women, Babylon University, IraqMedical Physics-College of Pharmacy, Hawler Medical University, IraqLow Power Laser Irradiation therapy raises the levels of proliferation for the variety of cells. Although despite very little is recognized about its effect on the proliferation levels and possible nuclear morphological changes of mice mesenchymal stem cells, which derived from bone marrow and adipose tissue. This study examined the effects of the different fluence of 1, 2, 3 and 4 j/cm² with different dose durations on promoting proliferation, viability and possible nuclear morphological changes of mice mesenchymal stem cells. The growth curves have been used to analyse the proliferation of all the applications. Fluorescent stain (DAPI) (4’-6-diamidino-2-phenylindole) staining used to check the nuclear alterations at 72 hours, while the trypan blue assay used to test the cell viability. Mesenchymal stem cells that derived from bone marrow responded to LPLI in a dose-dependent manner. The higher cell growth determined once the cells irradiated with a fluence of 4 j/cm², especially after 24 hours (P<0. 01). Whereas adipose tissue-derived stem cells responded better to a fluence of 2 j/cm² after 48 hours (P<0. 05). There was no significant change in nuclear alterations and in cell viability detected in the studied groups. LPLI permits a significant increase in the proliferation of stem cells, without causing nuclear alterations, therefore, increasing the number of differentiating cells for tissue engineering, regenerative, and healing processes.https://vetmedmosul.com/article_153869_26f4db60efc80c11bb19232c276992c4.pdfcell proliferationlow-level laser therapystem cellsadipose tissuebone marrow
spellingShingle Z. AL-Timimi
F. Mustafa
Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
Iraqi Journal of Veterinary Sciences
cell proliferation
low-level laser therapy
stem cells
adipose tissue
bone marrow
title Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
title_full Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
title_fullStr Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
title_full_unstemmed Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
title_short Recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
title_sort recognizing the effectiveness of the diode laser 850nm on stimulate the proliferation and viability of mice mesenchymal stem cells derived from bone marrow and adipose tissue
topic cell proliferation
low-level laser therapy
stem cells
adipose tissue
bone marrow
url https://vetmedmosul.com/article_153869_26f4db60efc80c11bb19232c276992c4.pdf
work_keys_str_mv AT zaltimimi recognizingtheeffectivenessofthediodelaser850nmonstimulatetheproliferationandviabilityofmicemesenchymalstemcellsderivedfrombonemarrowandadiposetissue
AT fmustafa recognizingtheeffectivenessofthediodelaser850nmonstimulatetheproliferationandviabilityofmicemesenchymalstemcellsderivedfrombonemarrowandadiposetissue