The invisible Threat: Assessing the reproductive and transgenerational impacts of micro- and nanoplastics on fish

[Display omitted] •MNPs affect fish reproduction under isolated and combined pollution exposures.•The risk of MNPs causing heritable toxic effects in fish offspring is highlighted.•Gonadal damage and hormonal disruption are two biological pathways affected by MNPs.•Points out research gaps in unders...

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Published inEnvironment international Vol. 183; p. 108432
Main Authors Yi, Jia, Ma, Yilei, Ruan, Jing, You, Si, Ma, Jiahui, Yu, Haiyang, Zhao, Jing, Zhang, Kun, Yang, Qinsi, Jin, Libo, Zeng, Guoming, Sun, Da
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier Ltd 01.01.2024
Elsevier
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Abstract [Display omitted] •MNPs affect fish reproduction under isolated and combined pollution exposures.•The risk of MNPs causing heritable toxic effects in fish offspring is highlighted.•Gonadal damage and hormonal disruption are two biological pathways affected by MNPs.•Points out research gaps in understanding MNPs' size-specific and long-term effects.•Assessing MNP ecological risks is crucial to protecting aquatic life. Micro- and nanoplastics (MNPs), emerging as pervasive environmental pollutants, present multifaceted threats to diverse ecosystems. This review critically examines the ability of MNPs to traverse biological barriers in fish, leading to their accumulation in gonadal tissues and subsequent reproductive toxicity. A focal concern is the potential transgenerational harm, where offspring not directly exposed to MNPs exhibit toxic effects. Characterized by extensive specific surface areas and marked surface hydrophobicity, MNPs readily adsorb and concentrate other environmental contaminants, potentially intensifying reproductive and transgenerational toxicity. This comprehensive analysis aims to provide profound insights into the repercussions of MNPs on fish reproductive health and progeny, highlighting the intricate interplay between MNPs and other pollutants. We delve into the mechanisms of MNPs-induced reproductive toxicity, including gonadal histopathologic alterations, oxidative stress, and disruptions in the hypothalamic-pituitary–gonadal axis. The review also underscores the urgency for future research to explore the size-specific toxic dynamics of MNPs and the long-term implications of chronic exposure. Understanding these aspects is crucial for assessing the ecological risks posed by MNPs and formulating strategies to safeguard aquatic life.
AbstractList Micro- and nanoplastics (MNPs), emerging as pervasive environmental pollutants, present multifaceted threats to diverse ecosystems. This review critically examines the ability of MNPs to traverse biological barriers in fish, leading to their accumulation in gonadal tissues and subsequent reproductive toxicity. A focal concern is the potential transgenerational harm, where offspring not directly exposed to MNPs exhibit toxic effects. Characterized by extensive specific surface areas and marked surface hydrophobicity, MNPs readily adsorb and concentrate other environmental contaminants, potentially intensifying reproductive and transgenerational toxicity. This comprehensive analysis aims to provide profound insights into the repercussions of MNPs on fish reproductive health and progeny, highlighting the intricate interplay between MNPs and other pollutants. We delve into the mechanisms of MNPs-induced reproductive toxicity, including gonadal histopathologic alterations, oxidative stress, and disruptions in the hypothalamic-pituitary–gonadal axis. The review also underscores the urgency for future research to explore the size-specific toxic dynamics of MNPs and the long-term implications of chronic exposure. Understanding these aspects is crucial for assessing the ecological risks posed by MNPs and formulating strategies to safeguard aquatic life.
Micro- and nanoplastics (MNPs), emerging as pervasive environmental pollutants, present multifaceted threats to diverse ecosystems. This review critically examines the ability of MNPs to traverse biological barriers in fish, leading to their accumulation in gonadal tissues and subsequent reproductive toxicity. A focal concern is the potential transgenerational harm, where offspring not directly exposed to MNPs exhibit toxic effects. Characterized by extensive specific surface areas and marked surface hydrophobicity, MNPs readily adsorb and concentrate other environmental contaminants, potentially intensifying reproductive and transgenerational toxicity. This comprehensive analysis aims to provide profound insights into the repercussions of MNPs on fish reproductive health and progeny, highlighting the intricate interplay between MNPs and other pollutants. We delve into the mechanisms of MNPs-induced reproductive toxicity, including gonadal histopathologic alterations, oxidative stress, and disruptions in the hypothalamic-pituitary-gonadal axis. The review also underscores the urgency for future research to explore the size-specific toxic dynamics of MNPs and the long-term implications of chronic exposure. Understanding these aspects is crucial for assessing the ecological risks posed by MNPs and formulating strategies to safeguard aquatic life.Micro- and nanoplastics (MNPs), emerging as pervasive environmental pollutants, present multifaceted threats to diverse ecosystems. This review critically examines the ability of MNPs to traverse biological barriers in fish, leading to their accumulation in gonadal tissues and subsequent reproductive toxicity. A focal concern is the potential transgenerational harm, where offspring not directly exposed to MNPs exhibit toxic effects. Characterized by extensive specific surface areas and marked surface hydrophobicity, MNPs readily adsorb and concentrate other environmental contaminants, potentially intensifying reproductive and transgenerational toxicity. This comprehensive analysis aims to provide profound insights into the repercussions of MNPs on fish reproductive health and progeny, highlighting the intricate interplay between MNPs and other pollutants. We delve into the mechanisms of MNPs-induced reproductive toxicity, including gonadal histopathologic alterations, oxidative stress, and disruptions in the hypothalamic-pituitary-gonadal axis. The review also underscores the urgency for future research to explore the size-specific toxic dynamics of MNPs and the long-term implications of chronic exposure. Understanding these aspects is crucial for assessing the ecological risks posed by MNPs and formulating strategies to safeguard aquatic life.
[Display omitted] •MNPs affect fish reproduction under isolated and combined pollution exposures.•The risk of MNPs causing heritable toxic effects in fish offspring is highlighted.•Gonadal damage and hormonal disruption are two biological pathways affected by MNPs.•Points out research gaps in understanding MNPs' size-specific and long-term effects.•Assessing MNP ecological risks is crucial to protecting aquatic life. Micro- and nanoplastics (MNPs), emerging as pervasive environmental pollutants, present multifaceted threats to diverse ecosystems. This review critically examines the ability of MNPs to traverse biological barriers in fish, leading to their accumulation in gonadal tissues and subsequent reproductive toxicity. A focal concern is the potential transgenerational harm, where offspring not directly exposed to MNPs exhibit toxic effects. Characterized by extensive specific surface areas and marked surface hydrophobicity, MNPs readily adsorb and concentrate other environmental contaminants, potentially intensifying reproductive and transgenerational toxicity. This comprehensive analysis aims to provide profound insights into the repercussions of MNPs on fish reproductive health and progeny, highlighting the intricate interplay between MNPs and other pollutants. We delve into the mechanisms of MNPs-induced reproductive toxicity, including gonadal histopathologic alterations, oxidative stress, and disruptions in the hypothalamic-pituitary–gonadal axis. The review also underscores the urgency for future research to explore the size-specific toxic dynamics of MNPs and the long-term implications of chronic exposure. Understanding these aspects is crucial for assessing the ecological risks posed by MNPs and formulating strategies to safeguard aquatic life.
ArticleNumber 108432
Author You, Si
Jin, Libo
Yu, Haiyang
Sun, Da
Ma, Yilei
Zhao, Jing
Zhang, Kun
Ruan, Jing
Yi, Jia
Yang, Qinsi
Ma, Jiahui
Zeng, Guoming
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Keywords CHG
MDA
E2
GPX
EHS
Transgenerational effects
17βHSD
Nanoplastics
MNPs
BP3
3βHSD
ER
AR
MPs
FSHR
PS MPs
CAT
GTHα
LHβ
ROS
11βHSD
Microplastics
HPG
20βHSD
MC-LR
TPhP
VTG
CNS
mGnRH
Phe
HPT
Parental transfer
BaP
T
StAR
Reproductive toxicity
FSHβ
LHR
GSH
T3
T4
TDCIPP
GST
SOD
GnRHR
NPs
DES
GH/IGF-I
PVC
PFOS
Language English
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References_xml – volume: 29
  start-page: 107
  year: 2021
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Snippet [Display omitted] •MNPs affect fish reproduction under isolated and combined pollution exposures.•The risk of MNPs causing heritable toxic effects in fish...
Micro- and nanoplastics (MNPs), emerging as pervasive environmental pollutants, present multifaceted threats to diverse ecosystems. This review critically...
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SubjectTerms Animals
chronic exposure
Ecosystem
environment
Environmental Pollutants
fish
Fishes
Gonads
histopathology
hydrophobicity
Microplastics
Nanoplastics
oxidative stress
Parental transfer
Plastics
pollution
progeny
Reproductive toxicity
reproductive toxicology
toxicity
Transgenerational effects
Water Pollutants, Chemical
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Title The invisible Threat: Assessing the reproductive and transgenerational impacts of micro- and nanoplastics on fish
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