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Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice

INTRODUCTION: Lead (Pb) exposure yielding blood lead levels (BLL) as low as 2 µg/dl in children is an international problem. More common in US low‐income neighborhoods, childhood Pb exposure can cause behavioral and cognitive deficits, including working memory impairments, which can persist into adu...

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Autores principales: Tena, Anahis, Peru, Eduardo, Martinetti, Luis E., Cano, Jose C., Loyola Baltazar, Carla D., Wagler, Amy E., Skouta, Rachid, Fenelon, Karine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6710227/
https://www.ncbi.nlm.nih.gov/pubmed/31268249
http://dx.doi.org/10.1002/brb3.1307
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author Tena, Anahis
Peru, Eduardo
Martinetti, Luis E.
Cano, Jose C.
Loyola Baltazar, Carla D.
Wagler, Amy E.
Skouta, Rachid
Fenelon, Karine
author_facet Tena, Anahis
Peru, Eduardo
Martinetti, Luis E.
Cano, Jose C.
Loyola Baltazar, Carla D.
Wagler, Amy E.
Skouta, Rachid
Fenelon, Karine
author_sort Tena, Anahis
collection PubMed
description INTRODUCTION: Lead (Pb) exposure yielding blood lead levels (BLL) as low as 2 µg/dl in children is an international problem. More common in US low‐income neighborhoods, childhood Pb exposure can cause behavioral and cognitive deficits, including working memory impairments, which can persist into adulthood. So far, studies characterized short‐term effects of high Pb exposure on neuronal structure and function. However, long‐term consequences of early chronic Pb exposure on neuronal activity are poorly documented. METHODS: Here, we exposed male and female mice (PND [postnatal day] 0 to PND 28) to one of three Pb treatments: 0 ppm (sodium‐treated water, control), 30 ppm (low dose), and 330 ppm (high dose) lead acetate. Once the male and female mice were 9–12 months old, extracellular field recordings on hippocampal slices were performed. RESULTS: We show that at CA3 to CA1 synapses, synaptic transmission was decreased and neuronal fiber activity was increased in males exposed to lowest level Pb. In contrast, both synaptic transmission and neuronal fiber activity were increased in females exposed to high Pb. The ventral hippocampus–medial prefrontal cortex (vHPC–mPFC) synapses are crucial for working memory in rodents. The lowest level Pb decreased vHPC–mPFC synaptic transmission, whereas high Pb decreased short‐term synaptic depression. CONCLUSIONS: Overall, we show for the first time that early exposure to either high or lowest level Pb has long‐term consequences on different synaptic properties of at least two hippocampal synapses. Such consequences of early Pb exposure might worsen the cognitive decline observed in aging men and women. Our results suggest that additional efforts should focus on the consequences of early Pb exposure especially in at‐risk communities.
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spelling pubmed-67102272019-08-28 Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice Tena, Anahis Peru, Eduardo Martinetti, Luis E. Cano, Jose C. Loyola Baltazar, Carla D. Wagler, Amy E. Skouta, Rachid Fenelon, Karine Brain Behav Original Research INTRODUCTION: Lead (Pb) exposure yielding blood lead levels (BLL) as low as 2 µg/dl in children is an international problem. More common in US low‐income neighborhoods, childhood Pb exposure can cause behavioral and cognitive deficits, including working memory impairments, which can persist into adulthood. So far, studies characterized short‐term effects of high Pb exposure on neuronal structure and function. However, long‐term consequences of early chronic Pb exposure on neuronal activity are poorly documented. METHODS: Here, we exposed male and female mice (PND [postnatal day] 0 to PND 28) to one of three Pb treatments: 0 ppm (sodium‐treated water, control), 30 ppm (low dose), and 330 ppm (high dose) lead acetate. Once the male and female mice were 9–12 months old, extracellular field recordings on hippocampal slices were performed. RESULTS: We show that at CA3 to CA1 synapses, synaptic transmission was decreased and neuronal fiber activity was increased in males exposed to lowest level Pb. In contrast, both synaptic transmission and neuronal fiber activity were increased in females exposed to high Pb. The ventral hippocampus–medial prefrontal cortex (vHPC–mPFC) synapses are crucial for working memory in rodents. The lowest level Pb decreased vHPC–mPFC synaptic transmission, whereas high Pb decreased short‐term synaptic depression. CONCLUSIONS: Overall, we show for the first time that early exposure to either high or lowest level Pb has long‐term consequences on different synaptic properties of at least two hippocampal synapses. Such consequences of early Pb exposure might worsen the cognitive decline observed in aging men and women. Our results suggest that additional efforts should focus on the consequences of early Pb exposure especially in at‐risk communities. John Wiley and Sons Inc. 2019-07-03 /pmc/articles/PMC6710227/ /pubmed/31268249 http://dx.doi.org/10.1002/brb3.1307 Text en © 2019 The Authors. Brain and Behavior published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Tena, Anahis
Peru, Eduardo
Martinetti, Luis E.
Cano, Jose C.
Loyola Baltazar, Carla D.
Wagler, Amy E.
Skouta, Rachid
Fenelon, Karine
Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
title Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
title_full Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
title_fullStr Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
title_full_unstemmed Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
title_short Long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
title_sort long‐term consequences of early postnatal lead exposure on hippocampal synaptic activity in adult mice
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6710227/
https://www.ncbi.nlm.nih.gov/pubmed/31268249
http://dx.doi.org/10.1002/brb3.1307
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