Cargando…

Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats

The proposed deep space exploration to the moon and later to Mars will result in astronauts receiving significant chronic exposures to space radiation (SR). SR exposure results in multiple neurocognitive impairments. Recently, our cross-species (mouse/rat) studies reported impaired associative memor...

Descripción completa

Detalles Bibliográficos
Autores principales: Krishnan, Balaji, Natarajan, Chandramouli, Bourne, Krystyn Z., Alikhani, Leila, Wang, Juan, Sowa, Allison, Groen, Katherine, Perry, Bayley, Dickstein, Dara L., Baulch, Janet E., Limoli, Charles L., Britten, Richard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036585/
https://www.ncbi.nlm.nih.gov/pubmed/33915974
http://dx.doi.org/10.3390/ijms22073668
_version_ 1783676944823353344
author Krishnan, Balaji
Natarajan, Chandramouli
Bourne, Krystyn Z.
Alikhani, Leila
Wang, Juan
Sowa, Allison
Groen, Katherine
Perry, Bayley
Dickstein, Dara L.
Baulch, Janet E.
Limoli, Charles L.
Britten, Richard A.
author_facet Krishnan, Balaji
Natarajan, Chandramouli
Bourne, Krystyn Z.
Alikhani, Leila
Wang, Juan
Sowa, Allison
Groen, Katherine
Perry, Bayley
Dickstein, Dara L.
Baulch, Janet E.
Limoli, Charles L.
Britten, Richard A.
author_sort Krishnan, Balaji
collection PubMed
description The proposed deep space exploration to the moon and later to Mars will result in astronauts receiving significant chronic exposures to space radiation (SR). SR exposure results in multiple neurocognitive impairments. Recently, our cross-species (mouse/rat) studies reported impaired associative memory formation in both species following a chronic 6-month low dose exposure to a mixed field of neutrons (1 mGy/day for a total dose pf 18 cGy). In the present study, we report neutron exposure induced synaptic plasticity in the medial prefrontal cortex, accompanied by microglial activation and significant synaptic loss in the hippocampus. In a parallel study, neutron exposure was also found to alter fluorescence assisted single synaptosome LTP (FASS-LTP) in the hippocampus of rats, that may be related to a reduced ability to insert AMPAR into the post-synaptic membrane, which may arise from increased phosphorylation of the serine 845 residue of the GluA1 subunit. Thus, we demonstrate for the first time, that low dose chronic neutron irradiation impacts homeostatic synaptic plasticity in the hippocampal-cortical circuit in two rodent species, and that the ability to successfully encode associative recognition memory is a dynamic, multicircuit process, possibly involving compensatory changes in AMPAR density on the synaptic surface.
format Online
Article
Text
id pubmed-8036585
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80365852021-04-12 Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats Krishnan, Balaji Natarajan, Chandramouli Bourne, Krystyn Z. Alikhani, Leila Wang, Juan Sowa, Allison Groen, Katherine Perry, Bayley Dickstein, Dara L. Baulch, Janet E. Limoli, Charles L. Britten, Richard A. Int J Mol Sci Article The proposed deep space exploration to the moon and later to Mars will result in astronauts receiving significant chronic exposures to space radiation (SR). SR exposure results in multiple neurocognitive impairments. Recently, our cross-species (mouse/rat) studies reported impaired associative memory formation in both species following a chronic 6-month low dose exposure to a mixed field of neutrons (1 mGy/day for a total dose pf 18 cGy). In the present study, we report neutron exposure induced synaptic plasticity in the medial prefrontal cortex, accompanied by microglial activation and significant synaptic loss in the hippocampus. In a parallel study, neutron exposure was also found to alter fluorescence assisted single synaptosome LTP (FASS-LTP) in the hippocampus of rats, that may be related to a reduced ability to insert AMPAR into the post-synaptic membrane, which may arise from increased phosphorylation of the serine 845 residue of the GluA1 subunit. Thus, we demonstrate for the first time, that low dose chronic neutron irradiation impacts homeostatic synaptic plasticity in the hippocampal-cortical circuit in two rodent species, and that the ability to successfully encode associative recognition memory is a dynamic, multicircuit process, possibly involving compensatory changes in AMPAR density on the synaptic surface. MDPI 2021-04-01 /pmc/articles/PMC8036585/ /pubmed/33915974 http://dx.doi.org/10.3390/ijms22073668 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Krishnan, Balaji
Natarajan, Chandramouli
Bourne, Krystyn Z.
Alikhani, Leila
Wang, Juan
Sowa, Allison
Groen, Katherine
Perry, Bayley
Dickstein, Dara L.
Baulch, Janet E.
Limoli, Charles L.
Britten, Richard A.
Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats
title Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats
title_full Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats
title_fullStr Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats
title_full_unstemmed Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats
title_short Chronic Low Dose Neutron Exposure Results in Altered Neurotransmission Properties of the Hippocampus-Prefrontal Cortex Axis in Both Mice and Rats
title_sort chronic low dose neutron exposure results in altered neurotransmission properties of the hippocampus-prefrontal cortex axis in both mice and rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036585/
https://www.ncbi.nlm.nih.gov/pubmed/33915974
http://dx.doi.org/10.3390/ijms22073668
work_keys_str_mv AT krishnanbalaji chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT natarajanchandramouli chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT bournekrystynz chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT alikhanileila chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT wangjuan chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT sowaallison chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT groenkatherine chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT perrybayley chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT dicksteindaral chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT baulchjanete chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT limolicharlesl chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats
AT brittenricharda chroniclowdoseneutronexposureresultsinalteredneurotransmissionpropertiesofthehippocampusprefrontalcortexaxisinbothmiceandrats