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Calcium Signaling Pathway in Neurodegeneration

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Calcium Signaling Pathway in Neurodegeneration

Calcium (Ca²⁺) is a critical second messenger that regulates virtually every aspect of neuronal function, from synaptic transmission to gene transcription. The calcium signaling pathway represents a fundamental mechanism by which neurons communicate, process information, and maintain cellular homeostasis. However, dysregulated calcium signaling has emerged as a central pathological feature in neurodegenerative diseases, including Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD), amyotrophic lateral sclerosis (ALS), and frontotemporal dementia (FTD). This page provides a comprehensive overview of calcium signaling mechanisms in neurons, the pathways governing calcium homeostasis, and how dysregulation contributes to neurodegeneration.

Overview

Calcium serves as a key signaling molecule in neurons through precise spatial and temporal patterns of concentration changes[@surmeier2022]. The resting cytosolic calcium concentration in neurons is approximately 100 nM, while extracellular calcium is around 1-2 mM, and the endoplasmic reticulum (ER) stores can reach concentrations exceeding 100 μM. This enormous gradient drives calcium influx through various channels and is tightly controlled by numerous buffering systems, pumps, and exchangers[@bezprozvanny2023].

Physiological Roles of Calcium in Neurons

In healthy neurons, calcium signaling regulates:

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