Vitamin D, a Secosteroid Hormone and Its Multifunctional Receptor, Vitamin D Receptor, in Alzheimer's Type Neurodegeneration
Overview
Neurology
Authors
Affiliations
Vitamin D is a secosteroid hormone exerting neurosteroid-like properties. Its well-known nuclear hormone receptor, and recently proposed as a mitochondrial transcription factor, vitamin D receptor, acts for its primary functions. The second receptor is an endoplasmic reticulum protein, protein disulfide isomerase A3 (PDIA3), suggested to act as a rapid response. Vitamin D has effects on various systems, particularly through calcium metabolism. Among them, the nervous system has an important place in the context of our subject. Recent studies have shown that vitamin D and its receptors have numerous effects on the nervous system. Neurodegeneration is a long-term process. Throughout a human life span, so is vitamin D deficiency. Our previous studies and others have suggested that the out-come of long-term vitamin D deficiency (hypovitaminosis D or inefficient utilization of vitamin D), may lead neurons to be vulnerable to aging and neurodegeneration. We suggest that keeping vitamin D levels at adequate levels at all stages of life, considering new approaches such as agonists that can activate vitamin D receptors, and utilizing other derivatives produced in the synthesis process with UVB are crucial when considering vitamin D-based intervention studies. Given most aspects of vitamin D, this review outlines how vitamin D and its receptors work and are involved in neurodegeneration, emphasizing Alzheimer's disease.
Vitamin D: Evidence-Based Health Benefits and Recommendations for Population Guidelines.
Grant W, Wimalawansa S, Pludowski P, Cheng R Nutrients. 2025; 17(2).
PMID: 39861407 PMC: 11767646. DOI: 10.3390/nu17020277.
No association between genetically predicted vitamin D levels and Parkinson's disease.
Wang Z, Xia H, Ding Y, Lu R, Yang X PLoS One. 2024; 19(11):e0313631.
PMID: 39546446 PMC: 11567546. DOI: 10.1371/journal.pone.0313631.
Grant W Nutrients. 2024; 16(18).
PMID: 39339811 PMC: 11435265. DOI: 10.3390/nu16183211.
Xuan A, Dolnikowski G, Booth S, Shea M, Schneider J, Fu X Curr Dev Nutr. 2024; 8(8):104418.
PMID: 39224141 PMC: 11367554. DOI: 10.1016/j.cdnut.2024.104418.
Grant W J Alzheimers Dis. 2024; 100(s1):S165-S178.
PMID: 39121130 PMC: 11380269. DOI: 10.3233/JAD-240658.