Epigenetics in neurodegenerative disorders induced by pesticides

Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epig...

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Published inGenes and environment Vol. 43; no. 1; pp. 55 - 12
Main Authors Yu, Guangxia, Su, Qianqian, Chen, Yao, Wu, Lingyan, Wu, Siying, Li, Huangyuan
Format Journal Article
LanguageEnglish
Published England BioMed Central Ltd 10.12.2021
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Abstract Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epigenetic changes and inducing disruption of the epigenome. This review summaries studies on epigenetics alterations in nervous systems in relation to different kinds of pesticides, highlighting potential mechanism in the etiology, precision prevention and target therapy of various neurodegenerative diseases. In addition, the current gaps in research and future areas for study were also discussed.
AbstractList Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epigenetic changes and inducing disruption of the epigenome. This review summaries studies on epigenetics alterations in nervous systems in relation to different kinds of pesticides, highlighting potential mechanism in the etiology, precision prevention and target therapy of various neurodegenerative diseases. In addition, the current gaps in research and future areas for study were also discussed. Keywords: Neurodegenerative disease, Epigenetic, Nervous system, Environmental pollution, Pesticide, DNA methylation, Histone modifications, Non-coding RNA, RNA methylation, N6-methyladenosine
Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epigenetic changes and inducing disruption of the epigenome. This review summaries studies on epigenetics alterations in nervous systems in relation to different kinds of pesticides, highlighting potential mechanism in the etiology, precision prevention and target therapy of various neurodegenerative diseases. In addition, the current gaps in research and future areas for study were also discussed.
Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epigenetic changes and inducing disruption of the epigenome. This review summaries studies on epigenetics alterations in nervous systems in relation to different kinds of pesticides, highlighting potential mechanism in the etiology, precision prevention and target therapy of various neurodegenerative diseases. In addition, the current gaps in research and future areas for study were also discussed.Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epigenetic changes and inducing disruption of the epigenome. This review summaries studies on epigenetics alterations in nervous systems in relation to different kinds of pesticides, highlighting potential mechanism in the etiology, precision prevention and target therapy of various neurodegenerative diseases. In addition, the current gaps in research and future areas for study were also discussed.
Abstract Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates excess exposure to pesticides are involved in the development of various forms of neurodegenerative and neurological diseases through trigger epigenetic changes and inducing disruption of the epigenome. This review summaries studies on epigenetics alterations in nervous systems in relation to different kinds of pesticides, highlighting potential mechanism in the etiology, precision prevention and target therapy of various neurodegenerative diseases. In addition, the current gaps in research and future areas for study were also discussed.
ArticleNumber 55
Audience Academic
Author Wu, Siying
Wu, Lingyan
Yu, Guangxia
Su, Qianqian
Li, Huangyuan
Chen, Yao
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Issue 1
Keywords Environmental pollution
Pesticide
DNA methylation
Nervous system
Neurodegenerative disease
Histone modifications
N6-methyladenosine
Epigenetic
Non-coding RNA
RNA methylation
Language English
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Snippet Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence indicates...
Abstract Neurodegenerative diseases are becoming major socio-economic burdens. However, most of them still have no effective treatment. Growing evidence...
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StartPage 55
SubjectTerms Degeneration
DNA methylation
Environmental pollution
Epidemiology
Epigenetic
Epigenetic inheritance
Epigenetics
Etiology
Medical research
Medicine, Experimental
Methylation
Nervous system
Neurodegenerative disease
Neurodegenerative diseases
Neurological diseases
Parkinson's disease
Permethrin
Pesticide
Pesticides
Pyrethrins
Review
RNA
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Title Epigenetics in neurodegenerative disorders induced by pesticides
URI https://www.ncbi.nlm.nih.gov/pubmed/34893084
https://www.proquest.com/docview/2611314520
https://www.proquest.com/docview/2609456821
https://pubmed.ncbi.nlm.nih.gov/PMC8662853
https://doaj.org/article/76fbe14cc8d849909c14ebcefe87ec3f
Volume 43
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