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Molecular insights into the pathogenic impact of vitamin D deficiency in neurological disorders.

Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie
June 1, 2023
Md Jamir Anwar et al. (3 authors)
Journal ArticleReviewHuman Study
Study Details

Study Goal

The researchers aimed to review the role of vitamin D in neurological disorders, including its neuroprotective effects through mechanisms such as influencing antioxidants.

Results Summary

The study found that vitamin D plays a critical role in neuronal development and neuroprotection by affecting neurotrophins, antioxidants, and intracellular calcium balance, with implications for disorders like Alzheimer's and Parkinson's disease.

Population

Individuals with or at risk of neurological disorders (e.g., Alzheimer's, Parkinson's, epilepsy, multiple sclerosis).

Effective Dosage

Not specified

Duration

Not specified

Interactions

None mentioned

Extracted Claims (10)
InterventionDirectionEndpointPopulationDosageImpactClaim #
Vitamin D
neutral
several brain functions
-
-
is implicated in the regulation of
#1
Vitamin D
neutral
neuronal structures
-
-
preserving
#2
Vitamin D
neutral
several neurological disorders
-
-
exerts a regulatory role in the pathophysiology of
#3
Vitamin D
neutral
neuronal development
-
-
is critical in
#4
Vitamin D
neutral
neuroprotective effects
-
-
shows
#5
Vitamin D
neutral
the production and release of neurotrophins
-
-
influencing
#6
Vitamin D
neutral
antioxidants
-
-
influencing
#7
Vitamin D
neutral
immunomodulatory
-
-
influencing
#8
Vitamin D
neutral
intracellular calcium balance
-
-
regulation of
#9
Vitamin D
neutral
the growth and differentiation of nerve cells
-
-
direct effect on
#10
Abstract

Neurological disorders are the major cause of disability, leading to a decrease in quality of life by impairing cognitive, sensorimotor, and motor functioning. Several factors have been proposed in the pathogenesis of neurobehavioral changes, including nutritional, environmental, and genetic predisposition. Vitamin D (VD) is an environmental and nutritional factor that is widely distributed in the central nervous system's subcortical grey matter, neurons of the substantia nigra, hippocampus, thalamus, and hypothalamus. It is implicated in the regulation of several brain functions by preserving neuronal structures. It is a hormone rather than a nutritional vitamin that exerts a regulatory role in the pathophysiology of several neurological disorders, including Alzheimer's disease, Parkinson's disease, epilepsy, and multiple sclerosis. A growing body of epidemiological evidence suggests that VD is critical in neuronal development and shows neuroprotective effects by influencing the production and release of neurotrophins, antioxidants, immunomodulatory, regulation of intracellular calcium balance, and direct effect on the growth and differentiation of nerve cells. This review provides up-to-date and comprehensive information on vitamin D deficiency, risk factors, and clinical and preclinical evidence on its relationship with neurological disorders. Furthermore, this review provides mechanistic insight into the implications of vitamin D and its deficiency on the pathogenesis of neurological disorders. Thus, an understanding of the crucial role of vitamin D in the neurobiology of neurodegenerative disorders can assist in the better management of vitamin D-deficient individuals.

Medical Subject Headings (MeSH)
HumansQuality of LifeVitamin D DeficiencyVitamin DAlzheimer DiseaseVitaminsNeurodegenerative Diseases
Study Links
Quality Scores
SafetyNot Assessed
Efficacy75/10
Quality85/10
Citation Metrics
Total Citations23
Citations/Year11.5
Relative Citation Ratio6.55
NIH Percentile95.5%
Research Impact Scores
APT Score0.75
Weight Score3.11
Normalized Score0.67
Related Supplements
Molecular insights into the pathogenic impact of vitamin D d... | Panacea Index