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Molecular Signaling Mechanisms of Natural and Synthetic Retinoids for Inhibition of Pathogenesis in Alzheimer's Disease

期刊

JOURNAL OF ALZHEIMERS DISEASE
卷 50, 期 2, 页码 335-352

出版社

IOS PRESS
DOI: 10.3233/JAD-150450

关键词

Alzheimer's disease; amyloid-beta; neuroprotection; regenerative medicine; retinoids

资金

  1. University of South Carolina School of Medicine Research Development Fund (USC SOM RDF, Columbia, SC, USA)
  2. South Carolina Spinal Cord Injury Research Fund (SCIRF Columbia, SC, USA)
  3. KUMC
  4. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [P20GM103641] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Retinoids, which are vitamin A derivatives, interact through retinoic acid receptors (RARs) and retinoid X receptors (RXRs) and have profound effects on several physiological and pathological processes in the brain. The presence of retinoic acid signaling is extensively detected in the adult central nervous system, including the amygdala, cortex, hypothalamus, hippocampus, and other brain areas. Retinoids are primarily involved in neural patterning, differentiation, and axon outgrowth. Retinoids also play a key role in the preservation of the differentiated state of adult neurons. Impairment in retinoic acid signaling can result in neurodegeneration and progression of Alzheimer's disease (AD). Recent studies demonstrated severe deficiencies in spatial learning and memory in mice during retinoic acid (vitamin A) deprivation indicating its significance in preserving memory function. Defective cholinergic neurotransmission plays an important role in cognitive deficits in AD. All-trans retinoic acid is known to enhance the expression and activity of choline acetyltransferase in neuronal cell lines. Activation of RAR and RXR is also known to impede the pathogenesis of AD in mice by inhibiting accumulation of amyloids. In addition, retinoids have been shown to inhibit the expression of chemokines and pro-inflammatory cytokines in microglia and astrocytes, which are activated in AD. In this review article, we have described the chemistry and molecular signaling mechanisms of natural and synthetic retinoids and current understandings of their therapeutic potentials in prevention of AD pathology.

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