The complex relationship between late-onset caloric restriction and synaptic plasticity in aged Wistar rats

Age-related reduction in spine density, synaptic marker expression, and synaptic efficiency are frequently reported. These changes provide the cellular and molecular basis for the cognitive decline characteristic for old age. Nevertheless, there are several approaches that have the potential to amel...

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Published inIUBMB life Vol. 76; no. 8; p. 548
Main Authors Prvulovic, Milica, Sokanovic, Srdjan, Simeunovic, Valentina, Vukojevic, Andjela, Jovic, Milena, Todorovic, Smilja, Mladenovic, Aleksandra
Format Journal Article
LanguageEnglish
Published England 01.08.2024
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Abstract Age-related reduction in spine density, synaptic marker expression, and synaptic efficiency are frequently reported. These changes provide the cellular and molecular basis for the cognitive decline characteristic for old age. Nevertheless, there are several approaches that have the potential to ameliorate these processes and improve cognition, caloric restriction being one of the most promising and widely studied. While lifelong caloric restriction is known for its numerous beneficial effects, including improved cognitive abilities and increased expression of proteins essential for synaptic structure and function, the effects of late-onset and/or short-term CR on synaptic plasticity have yet to be investigated. We have previously documented that the effects of CR are strongly dependent on whether CR is initiated in young or old subjects. With this in mind, we conducted a long-term study in aging Wistar rats to examine changes in the expression of several key synaptic markers under the regimen of CR started at different time points in life. We found a significant increase in the expression of both presynaptic and postsynaptic markers. However, taking into account previously reported changes in the behavior detected in these animals, we consider that this increase cannot represent beneficial effect of CR.
AbstractList Age-related reduction in spine density, synaptic marker expression, and synaptic efficiency are frequently reported. These changes provide the cellular and molecular basis for the cognitive decline characteristic for old age. Nevertheless, there are several approaches that have the potential to ameliorate these processes and improve cognition, caloric restriction being one of the most promising and widely studied. While lifelong caloric restriction is known for its numerous beneficial effects, including improved cognitive abilities and increased expression of proteins essential for synaptic structure and function, the effects of late-onset and/or short-term CR on synaptic plasticity have yet to be investigated. We have previously documented that the effects of CR are strongly dependent on whether CR is initiated in young or old subjects. With this in mind, we conducted a long-term study in aging Wistar rats to examine changes in the expression of several key synaptic markers under the regimen of CR started at different time points in life. We found a significant increase in the expression of both presynaptic and postsynaptic markers. However, taking into account previously reported changes in the behavior detected in these animals, we consider that this increase cannot represent beneficial effect of CR.
Author Vukojevic, Andjela
Prvulovic, Milica
Jovic, Milena
Mladenovic, Aleksandra
Sokanovic, Srdjan
Simeunovic, Valentina
Todorovic, Smilja
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Issue 8
Keywords synaptic markers
caloric restriction
aging
synaptic plasticity
brain
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Snippet Age-related reduction in spine density, synaptic marker expression, and synaptic efficiency are frequently reported. These changes provide the cellular and...
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StartPage 548
SubjectTerms Age Factors
alpha-Synuclein - genetics
alpha-Synuclein - metabolism
Animals
Cadherins - genetics
Cadherins - metabolism
Caloric Restriction
Diet
Disks Large Homolog 4 Protein - genetics
Disks Large Homolog 4 Protein - metabolism
GAP-43 Protein - genetics
GAP-43 Protein - metabolism
Gene Expression Regulation - physiology
Male
Neuronal Plasticity - physiology
Rats
Rats, Wistar
RNA, Messenger - genetics
RNA, Messenger - metabolism
Synaptophysin - genetics
Synaptophysin - metabolism
Title The complex relationship between late-onset caloric restriction and synaptic plasticity in aged Wistar rats
URI https://www.ncbi.nlm.nih.gov/pubmed/38390757
Volume 76
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