P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX

Calretinin (CR) is a calcium binding protein of the EF-hand family. CR and Calbindin D28k present 58% of identical amino acids residues. CR is widely expressed in the neuronal cell bodies and processes and form asymmetrical and symmetrical synaptic specializations. CR is a modulator neuronal excita...

Full description

Saved in:
Bibliographic Details
Format: Article
Language:English
Published: PAGEPress Publications 2025-08-01
Series:European Journal of Histochemistry
Subjects:
-
Online Access:https://www.ejh.it/ejh/article/view/4343
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849227389062610944
collection DOAJ
description Calretinin (CR) is a calcium binding protein of the EF-hand family. CR and Calbindin D28k present 58% of identical amino acids residues. CR is widely expressed in the neuronal cell bodies and processes and form asymmetrical and symmetrical synaptic specializations. CR is a modulator neuronal excitability. Although several studies suggest a role of the CR and of the cerebellum in neurological and psychiatric disorders (e.g. Alzheimer’s disease, Parkinson’s disease, schizophrenia, spinocerebellar ataxias). In the cerebellar cortex, few studies suggest CR expression in the granules and in two non-traditional large neuron types (unipolar brush neuron, Lugaro neuron). Currently, in the granular layer of the human cerebellum does not exist a detailed morphofunctional description of CR immunoreactive non-traditional large neuron types. Therefore, the aim of this study is to carry out, using an immunohistochemical approach, a detailed analysis of CR in the non-traditional large neurons of the human cerebellar granular layer1-3. The study was carried out on postmortem fragments of human cerebellar cortex fixed in neutral buffered formalin, embedded in paraffin, cut into 5 μm sections and subjected to light microscopic immunohistochemistry with mouse polyclonal antibody for CR. In the granular layer of the cerebellar cortex the CR immunoreactivity (ir) in cell bodies and processes of different nontraditional large neuron types (e.g. perivascular neurons, synarmotic neurons) and in the sites of cerebellar glomeruli have been detected. These results indicate in the cerebellar granular layer a widely presence of CR-ir in different non-traditional large neuron types and suggest in these neurons a role of CR in calcium homeostasis and in neurotransmission mechanisms. Although, further research is needed, CR dysregulation and non-traditional large neuron types may be impaired in brain psychiatric and neurologic diseases in which the cerebellum is involved, and in specific cerebellar diseases.
format Article
id doaj-art-c8e51c8fef6f464e8184e619b71c6466
institution Kabale University
issn 1121-760X
2038-8306
language English
publishDate 2025-08-01
publisher PAGEPress Publications
record_format Article
series European Journal of Histochemistry
spelling doaj-art-c8e51c8fef6f464e8184e619b71c64662025-08-23T11:19:06ZengPAGEPress PublicationsEuropean Journal of Histochemistry1121-760X2038-83062025-08-0169s210.4081/ejh.2025.4343P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX Calretinin (CR) is a calcium binding protein of the EF-hand family. CR and Calbindin D28k present 58% of identical amino acids residues. CR is widely expressed in the neuronal cell bodies and processes and form asymmetrical and symmetrical synaptic specializations. CR is a modulator neuronal excitability. Although several studies suggest a role of the CR and of the cerebellum in neurological and psychiatric disorders (e.g. Alzheimer’s disease, Parkinson’s disease, schizophrenia, spinocerebellar ataxias). In the cerebellar cortex, few studies suggest CR expression in the granules and in two non-traditional large neuron types (unipolar brush neuron, Lugaro neuron). Currently, in the granular layer of the human cerebellum does not exist a detailed morphofunctional description of CR immunoreactive non-traditional large neuron types. Therefore, the aim of this study is to carry out, using an immunohistochemical approach, a detailed analysis of CR in the non-traditional large neurons of the human cerebellar granular layer1-3. The study was carried out on postmortem fragments of human cerebellar cortex fixed in neutral buffered formalin, embedded in paraffin, cut into 5 μm sections and subjected to light microscopic immunohistochemistry with mouse polyclonal antibody for CR. In the granular layer of the cerebellar cortex the CR immunoreactivity (ir) in cell bodies and processes of different nontraditional large neuron types (e.g. perivascular neurons, synarmotic neurons) and in the sites of cerebellar glomeruli have been detected. These results indicate in the cerebellar granular layer a widely presence of CR-ir in different non-traditional large neuron types and suggest in these neurons a role of CR in calcium homeostasis and in neurotransmission mechanisms. Although, further research is needed, CR dysregulation and non-traditional large neuron types may be impaired in brain psychiatric and neurologic diseases in which the cerebellum is involved, and in specific cerebellar diseases. https://www.ejh.it/ejh/article/view/4343-
spellingShingle P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX
European Journal of Histochemistry
-
title P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX
title_full P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX
title_fullStr P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX
title_full_unstemmed P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX
title_short P23 | CALRETININ IMMUNOREACTIVE NON-TRADITIONAL LARGE NEURONS IN THE GRANULAR LAYER OF THE HUMAN CEREBELLAR CORTEX
title_sort p23 calretinin immunoreactive non traditional large neurons in the granular layer of the human cerebellar cortex
topic -
url https://www.ejh.it/ejh/article/view/4343