Therapeutic potentials of natural products for post-traumatic stress disorder: A focus on epigenetics
- PMID: 40256720
- PMCID: PMC12009077
- DOI: 10.1016/j.chmed.2024.07.004
Therapeutic potentials of natural products for post-traumatic stress disorder: A focus on epigenetics
Abstract
Post-traumatic stress disorder (PTSD) is a relatively common but complex mental illness with a range of diverse risk factors. Typical symptoms include the re-experience or avoidance of traumatic events, cognitive impairment, and hypervigilance. While the exact pathogenesis of PTSD is unclear, many studies indicate that epigenetic regulation plays a key role in its development. Specifically, numerous studies have indicated that the levels of histone acetylation and methylation, DNA methylation, and noncoding RNA are altered in PTSD patients. Further to this, natural products have been found to achieve epigenetic regulation of PTSD by regulating the expression of epigenetic enzymes, long noncoding RNA (lncRNA), and miRNA, thereby playing a role in improving PTSD symptoms. To date, however, no epigenetic regulation related drugs have been used in the treatment of PTSD. Furthermore, while natural products that can epigenetically regulate PTSD have received increasing levels of attention, there have not yet been any systematic reports on the topic. Here, we summarized the roles and mechanisms of natural products in the epigenetic regulation of PTSD, providing a novel and unique perspective that will help to guide the development and application of new PTSD treatments.
Keywords: DNA methylation; epigenetic regulation; histone modification; natural products; noncoding RNA; post-traumatic stress disorder.
© 2024 Tianjin Press of Chinese Herbal Medicines. Published by ELSEVIER B.V.
Conflict of interest statement
The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
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                References
- 
    - Ahn J., Lee H., Jung C.H., Ha T. Lycopene inhibits hepatic steatosis via microRNA-21-induced downregulation of fatty acid-binding protein 7 in mice fed a high-fat diet. Molecular Nutrition Food Research. 2012;56(11):1665–1674. - PubMed
 
- 
    - Alzoubi K.H., Al Subeh Z.Y., Khabour O.F. Molecular targets for the interactive effect of etazolate during post-traumatic stress disorder: Role of oxidative stress, BDNF and histones. Behavioural Brain Research. 2019;369 - PubMed
 
- 
    - Bam M., Yang X., Busbee B.P., Aiello A.E., Uddin M., Ginsberg J.P.…Nagarkatti M. Increased H3K4me3 methylation and decreased miR-7113-5p expression lead to enhanced Wnt/beta-catenin signaling in immune cells from PTSD patients leading to inflammatory phenotype. Molecular Medicine. 2020;26(1):110. - PMC - PubMed
 
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