Cargando…

Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels

Cytogenetic analysis is essential to determine the effect of mutagens and antimutagens on genetic material. This study was done to evaluate the protective effect of root bark extract of Morus alba (M. alba) against cyclophosphamide induced somatic and germinal cell damage in male rats. The ethanolic...

Descripción completa

Detalles Bibliográficos
Autores principales: Ghosh, Abhijit, Rabbani, Syed Imam, Asdaq, Syed Mohammed Basheeruddin, Mohzari, Yahya, Alrashed, Ahmed, Najib Alajami, Hamdan, Othman Aljohani, Awad, Ali Al Mushtawi, Abdullah, Sultan Alenazy, Majed, Fahad Alamer, Rakan, Khalid Alanazi, Abdulmajead
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7956634/
https://www.ncbi.nlm.nih.gov/pubmed/33652778
http://dx.doi.org/10.3390/molecules26051266
_version_ 1783664481191067648
author Ghosh, Abhijit
Rabbani, Syed Imam
Asdaq, Syed Mohammed Basheeruddin
Mohzari, Yahya
Alrashed, Ahmed
Najib Alajami, Hamdan
Othman Aljohani, Awad
Ali Al Mushtawi, Abdullah
Sultan Alenazy, Majed
Fahad Alamer, Rakan
Khalid Alanazi, Abdulmajead
author_facet Ghosh, Abhijit
Rabbani, Syed Imam
Asdaq, Syed Mohammed Basheeruddin
Mohzari, Yahya
Alrashed, Ahmed
Najib Alajami, Hamdan
Othman Aljohani, Awad
Ali Al Mushtawi, Abdullah
Sultan Alenazy, Majed
Fahad Alamer, Rakan
Khalid Alanazi, Abdulmajead
author_sort Ghosh, Abhijit
collection PubMed
description Cytogenetic analysis is essential to determine the effect of mutagens and antimutagens on genetic material. This study was done to evaluate the protective effect of root bark extract of Morus alba (M. alba) against cyclophosphamide induced somatic and germinal cell damage in male rats. The ethanolic extract of M. alba (0.25, 0.5 and 1 g/kg, 2 weeks) was evaluated against cyclophosphamide (75 mg/kg, single dose) induced nuclear damage. The sampling was done after 48 h of the clastogen treatment. The somatic and germinal nuclear damage was studied by bone marrow micronucleus and sperm analysis, respectively. Serum superoxide and catalase levels were estimated to determine the antioxidant status in each group. The results were analyzed statistically to find the significant variation. The administration of M. alba for 2 weeks suppressed dose-dependently the changes induced by cyclophosphamide. M. alba (0.5 g/kg) decreased the frequency of micronucleated erythrocyte, sperm shape abnormality and enhanced the sperm count, sperm motility and polychromatic-normochromatic erythrocytes ratio significantly (p < 0.05) in comparison with the cyclophosphamide treated group. The highest tested dose of M. alba (1 g/kg) produced more prominent suppression (p < 0.01) in the cyclophosphamide-induced somatic and germinal cell defects. The results also showed significant (p < 0.05) improvement in the serum antioxidant enzymes levels with M. alba when compared with the challenge group. The lower dose of M. alba extract (0.25 g/kg) prevented the CP-induced changes but was found to be statistically insignificant. Therefore, antimutagenic potential of the high dose of the extract of M. alba is possibly due to its antioxidant nature. The ability of the M. alba extract to prevent the nuclear damage could play an important role in overcoming several mutational defects that are associated with anticancer chemotherapy.
format Online
Article
Text
id pubmed-7956634
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-79566342021-03-16 Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels Ghosh, Abhijit Rabbani, Syed Imam Asdaq, Syed Mohammed Basheeruddin Mohzari, Yahya Alrashed, Ahmed Najib Alajami, Hamdan Othman Aljohani, Awad Ali Al Mushtawi, Abdullah Sultan Alenazy, Majed Fahad Alamer, Rakan Khalid Alanazi, Abdulmajead Molecules Article Cytogenetic analysis is essential to determine the effect of mutagens and antimutagens on genetic material. This study was done to evaluate the protective effect of root bark extract of Morus alba (M. alba) against cyclophosphamide induced somatic and germinal cell damage in male rats. The ethanolic extract of M. alba (0.25, 0.5 and 1 g/kg, 2 weeks) was evaluated against cyclophosphamide (75 mg/kg, single dose) induced nuclear damage. The sampling was done after 48 h of the clastogen treatment. The somatic and germinal nuclear damage was studied by bone marrow micronucleus and sperm analysis, respectively. Serum superoxide and catalase levels were estimated to determine the antioxidant status in each group. The results were analyzed statistically to find the significant variation. The administration of M. alba for 2 weeks suppressed dose-dependently the changes induced by cyclophosphamide. M. alba (0.5 g/kg) decreased the frequency of micronucleated erythrocyte, sperm shape abnormality and enhanced the sperm count, sperm motility and polychromatic-normochromatic erythrocytes ratio significantly (p < 0.05) in comparison with the cyclophosphamide treated group. The highest tested dose of M. alba (1 g/kg) produced more prominent suppression (p < 0.01) in the cyclophosphamide-induced somatic and germinal cell defects. The results also showed significant (p < 0.05) improvement in the serum antioxidant enzymes levels with M. alba when compared with the challenge group. The lower dose of M. alba extract (0.25 g/kg) prevented the CP-induced changes but was found to be statistically insignificant. Therefore, antimutagenic potential of the high dose of the extract of M. alba is possibly due to its antioxidant nature. The ability of the M. alba extract to prevent the nuclear damage could play an important role in overcoming several mutational defects that are associated with anticancer chemotherapy. MDPI 2021-02-26 /pmc/articles/PMC7956634/ /pubmed/33652778 http://dx.doi.org/10.3390/molecules26051266 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ghosh, Abhijit
Rabbani, Syed Imam
Asdaq, Syed Mohammed Basheeruddin
Mohzari, Yahya
Alrashed, Ahmed
Najib Alajami, Hamdan
Othman Aljohani, Awad
Ali Al Mushtawi, Abdullah
Sultan Alenazy, Majed
Fahad Alamer, Rakan
Khalid Alanazi, Abdulmajead
Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels
title Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels
title_full Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels
title_fullStr Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels
title_full_unstemmed Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels
title_short Morus alba Prevented the Cyclophosphamide Induced Somatic and Germinal Cell Damage in Male Rats by Ameliorating the Antioxidant Enzyme Levels
title_sort morus alba prevented the cyclophosphamide induced somatic and germinal cell damage in male rats by ameliorating the antioxidant enzyme levels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7956634/
https://www.ncbi.nlm.nih.gov/pubmed/33652778
http://dx.doi.org/10.3390/molecules26051266
work_keys_str_mv AT ghoshabhijit morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT rabbanisyedimam morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT asdaqsyedmohammedbasheeruddin morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT mohzariyahya morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT alrashedahmed morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT najibalajamihamdan morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT othmanaljohaniawad morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT alialmushtawiabdullah morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT sultanalenazymajed morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT fahadalamerrakan morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels
AT khalidalanaziabdulmajead morusalbapreventedthecyclophosphamideinducedsomaticandgerminalcelldamageinmaleratsbyamelioratingtheantioxidantenzymelevels