Literature DB >> 30529426

Calcium signalling: A common target in neurological disorders and neurogenesis.

Talita Glaser1, Vanessa Fernandes Arnaud Sampaio1, Claudiana Lameu1, Henning Ulrich2.   

Abstract

Calcium is an ubiquitous second messenger used by any living cell. The fine-tuning of intracellular free calcium concentration ([Ca2+]i) homeostasis and signalling pathways is crucial for the maintenance of the healthy organism. Many alterations in the homeostasis can be compensated by robust mechanisms; however, cells that already present some debility in those mechanisms, or that are over stimulated cannot compensate the stress and die. Many neurological diseases show [Ca2+] disbalance as trigger of apoptotic response resulting in massive neuronal loss and the neurodegeneration. In this review, we focus on presenting similarities and differences of neurological disorders like Huntington's, Parkinson's, Alzheimer's disease and schizophrenia and the current clinical trial status. Moreover, we describe the importance of Ca2+ signalling in neurogenesis, showing that interference of this signalling could go along with stem cell therapy in the central nervous system.
Copyright © 2018. Published by Elsevier Ltd.

Entities:  

Keywords:  Alzheimer’s disease; Cell therapy; Endoplasmic reticulum; Kinases; Neural stem cells; Parkinson’s disease

Mesh:

Year:  2018        PMID: 30529426     DOI: 10.1016/j.semcdb.2018.12.002

Source DB:  PubMed          Journal:  Semin Cell Dev Biol        ISSN: 1084-9521            Impact factor:   7.727


  17 in total

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Review 6.  Endoplasmic reticulum stress: New insights into the pathogenesis and treatment of retinal degenerative diseases.

Authors:  Marina S Gorbatyuk; Christopher R Starr; Oleg S Gorbatyuk
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8.  The Eighth ECS Workshop on "Calcium Signaling in Aging and Neurodegenerative Diseases".

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Review 9.  Adult Hippocampal Neurogenesis and Alzheimer's Disease: Novel Application of Mesenchymal Stem Cells and their Role in Hippocampal Neurogenesis.

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Review 10.  The Role of Ca2+ Signaling in Aging and Neurodegeneration: Insights from Caenorhabditis elegans Models.

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