Sleep Deprivation and Neurological Disorders

Депривация сна и неврологические расстройства
Muhammed Bishir, Abid Bhat, Musthafa Mohamed Essa, Okobi E. Ekpo, Amadi O. Ihunwo, Vishnu Priya Veeraraghavan, Krishna Mohan Surapaneni, Arehally M. Mahalakshmi, Bipul Ray, Sunanda Tuladhar, Sulie L. Chang, Saravana Babu Chidambaram, Meena Kishore Sakharkar, Gilles J. Guillemin, M. Walid Qoronfleh, David M. Ojcius
2020-01-01

glymphatic systemneurodegenerative diseasesneuroinflammationoxidative stresssleep deprivation
Sleep plays an important role in maintaining neuronal circuitry, signalling and helps maintain overall health and wellbeing. Sleep deprivation (SD) disturbs the circadian physiology and exerts a negative impact on brain and behavioural functions. SD impairs the cellular clearance of misfolded neurotoxin proteins like α‐synuclein, amyloid‐β, and tau which are involved in major neurodegenerative diseases like Alzheimer’s disease and Parkinson’s disease. In addition, SD is also shown to affect the glymphatic system, a glial‐dependent metabolic waste clearance pathway, causing accumulation of misfolded faulty proteins in synaptic compartments resulting in cognitive decline. Also, SD affects the immunological and redox system resulting in neuroinflammation and oxidative stress. Hence, it is important to understand the molecular and biochemical alterations that are the causative factors leading to these pathophysiological effects on the neuronal system. This review is an attempt in this direction. It provides up‐to‐date information on the alterations in the key processes, pathways, and proteins that are negatively affected by SD and become reasons for neurological disorders over a prolonged period of time, if left unattended.
1
Prolonged, unattended sleep deprivation may drive molecular and biochemical changes that contribute to neurological disorders.
2
Sleep deprivation alters immune and redox systems, promoting neuroinflammation and oxidative stress.
3
Sleep deprivation disrupts circadian physiology and negatively affects neuronal circuitry, signalling, brain function, and behavior.
4
Sleep deprivation disrupts the glymphatic waste-clearance system, promoting accumulation of faulty proteins in synaptic compartments and contributing to cognitive decline.
5
Sleep deprivation impairs clearance of misfolded neurotoxic proteins, including α-synuclein, amyloid-β, and tau, implicated in Alzheimer’s and Parkinson’s diseases.

sleep deprivation and the neuronal system

molecular and biochemical alterations in cellular clearance, glymphatic function, immune and redox processes, and neuronal signaling that contribute to neuroinflammation, oxidative stress, protein accumulation, cognitive decline, and neurological disorders

Publication Details
Publication Date
2020-01-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Muhammed Bishir
Abid Bhat
Musthafa Mohamed Essa
Okobi E. Ekpo
Amadi O. Ihunwo
Vishnu Priya Veeraraghavan
Krishna Mohan Surapaneni
Arehally M. Mahalakshmi
Bipul Ray
Sunanda Tuladhar
Sulie L. Chang
Saravana Babu Chidambaram
Meena Kishore Sakharkar
Gilles J. Guillemin
M. Walid Qoronfleh
David M. Ojcius
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%