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Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers

BACKGROUND: Workers in cement warehouses of Kerala are enduring long-standing exposure to cement dust, which is considered genotoxic. OBJECTIVE: To evaluate the extent of genotoxicity and cytotoxicity caused due to exposure of cement dust among those working in cement warehouses. METHODS: The study...

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Autores principales: Krishna, Lalu, Sampson, Ursula, Annamala, Panthapulaykal Theru, Unni, Kumudam M, Binukumar, Bhaskarapillai, George, Alex, Sreedharan, Ranjith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shiraz: NIOC Health Organization 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7024590/
https://www.ncbi.nlm.nih.gov/pubmed/31905193
http://dx.doi.org/10.15171/ijoem.2020.1744
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author Krishna, Lalu
Sampson, Ursula
Annamala, Panthapulaykal Theru
Unni, Kumudam M
Binukumar, Bhaskarapillai
George, Alex
Sreedharan, Ranjith
author_facet Krishna, Lalu
Sampson, Ursula
Annamala, Panthapulaykal Theru
Unni, Kumudam M
Binukumar, Bhaskarapillai
George, Alex
Sreedharan, Ranjith
author_sort Krishna, Lalu
collection PubMed
description BACKGROUND: Workers in cement warehouses of Kerala are enduring long-standing exposure to cement dust, which is considered genotoxic. OBJECTIVE: To evaluate the extent of genotoxicity and cytotoxicity caused due to exposure of cement dust among those working in cement warehouses. METHODS: The study included 82 cement warehouse workers and 82 age-matched individuals with no exposure to cement dust. Exfoliated buccal micronucleus cytome assay (BMCyt) was performed to analyze the genotoxic and cytotoxic effects caused by inhalation of cement dust. RESULTS: The frequency of various genotoxic and cytotoxic end markers (micronucleated cells [2-fold increase, p<0.001], nuclear buds [4-fold increase, p<0.001], binucleated cells [4-fold increase, p<0.001], karyorrhectic cells [2-fold increase, p<0.001], pyknotic cells [3- fold increase, p<0.001], and karyolytic cells [2-fold increase, p<0.001]) were higher in the exposed workers compared with unexposed group. Increase of these parameters represented an increased level of chromosomal damage, nuclear disintegration and increased cell death among exposed group compared with unexposed group. CONCLUSION: Continuous exposure to cement dust results in increased frequency of nuclear aberrations and cellular apoptosis. This may lead to defects in genome maintenance, accelerated ageing, increased chance of oral cancer and neurodegenerative disorders in those occupationally exposed to cement dust.
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spelling pubmed-70245902020-02-18 Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers Krishna, Lalu Sampson, Ursula Annamala, Panthapulaykal Theru Unni, Kumudam M Binukumar, Bhaskarapillai George, Alex Sreedharan, Ranjith Int J Occup Environ Med Original Article BACKGROUND: Workers in cement warehouses of Kerala are enduring long-standing exposure to cement dust, which is considered genotoxic. OBJECTIVE: To evaluate the extent of genotoxicity and cytotoxicity caused due to exposure of cement dust among those working in cement warehouses. METHODS: The study included 82 cement warehouse workers and 82 age-matched individuals with no exposure to cement dust. Exfoliated buccal micronucleus cytome assay (BMCyt) was performed to analyze the genotoxic and cytotoxic effects caused by inhalation of cement dust. RESULTS: The frequency of various genotoxic and cytotoxic end markers (micronucleated cells [2-fold increase, p<0.001], nuclear buds [4-fold increase, p<0.001], binucleated cells [4-fold increase, p<0.001], karyorrhectic cells [2-fold increase, p<0.001], pyknotic cells [3- fold increase, p<0.001], and karyolytic cells [2-fold increase, p<0.001]) were higher in the exposed workers compared with unexposed group. Increase of these parameters represented an increased level of chromosomal damage, nuclear disintegration and increased cell death among exposed group compared with unexposed group. CONCLUSION: Continuous exposure to cement dust results in increased frequency of nuclear aberrations and cellular apoptosis. This may lead to defects in genome maintenance, accelerated ageing, increased chance of oral cancer and neurodegenerative disorders in those occupationally exposed to cement dust. Shiraz: NIOC Health Organization 2020-01-01 /pmc/articles/PMC7024590/ /pubmed/31905193 http://dx.doi.org/10.15171/ijoem.2020.1744 Text en This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License (https://creativecommons.org/licenses/by-nc-sa/4.0/) .
spellingShingle Original Article
Krishna, Lalu
Sampson, Ursula
Annamala, Panthapulaykal Theru
Unni, Kumudam M
Binukumar, Bhaskarapillai
George, Alex
Sreedharan, Ranjith
Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers
title Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers
title_full Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers
title_fullStr Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers
title_full_unstemmed Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers
title_short Genomic Instability in Exfoliated Buccal Cells among Cement Warehouse Workers
title_sort genomic instability in exfoliated buccal cells among cement warehouse workers
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7024590/
https://www.ncbi.nlm.nih.gov/pubmed/31905193
http://dx.doi.org/10.15171/ijoem.2020.1744
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