Acteoside (ACT), a compound extracted from Cistanche tubulosa, was found to exert neuroprotective effects in dopaminergic neurons and improved the synucleinopathy in a mouse PD model, providing evidence that ACT could be a potential therapeutic agent for PD.
Abstract
Parkinson's disease (PD) is a major neurodegenerative disorder. However, current therapeutic strategies do not provide prevention or recovery of neuronal damage. Risk factors, including aging, exogenous toxins, and genetic factors, are strongly related to the development and prognosis of PD. Emerging evidence demonstrates that N6-methyladenosine (m6A) contributes to neurodegeneration in PD. In our study, we found the dysregulation of m6A in PD patients and mouse models, which disrupts the antioxidant mechanism, particularly the expression of Nrf2. In the current study, acteoside (ACT), a compound extracted from Cistanche tubulosa, was found to exert neuroprotective effects in dopaminergic neurons and improved the synucleinopathy in a mouse PD model. ACT significantly improved mitochondria function and alleviated oxidative stress in the PD mice. Moreover, the dysregulated m6A modification was improved by treatment of ACT. ACT treatment was associated with restored METTL3/FTO balance and increased m6A modification of Nrf2 mRNA with elevated Nrf2 mRNA stability and expression. These results provided evidence that ACT could be a potential therapeutic agent for PD.
The natural flavonoid Astragalin concurrently addresses three core pathological processes in PD, namely dopaminergic neuron degeneration, α-synucleinopathy, and neuroinflammation, through coordinated modulation of interconnected molecular pathways.
Jun Wang, Jie-Yu He, Qin Huang et al.· Free Radical Biology & Medic...· 0 citations
It is indicated that ginsenoside Rh1 exerts neuroprotective effects against AD in vivo and in vitro, at least partly through SIRT1-related signaling, which subsequently attenuates oxidative stress and ameliorates mitochondrial dysfunction.
Shi-Lu Li, Tao Lin, Wan-Chen Zou et al.· Phytotherapy Research· 0 citations
Combined in silico and experimental findings highlight hesperidin’s strong binding to key molecular targets, whereas experimental evidence also confirms its antioxidant, anti-inflammatory, and anti-apoptotic effects, supporting its potential as a disease-modifying candidate in PD therapy.
Seyawash Ghani, Diksha Dalal, Anish Singh et al.· Current Behavioral Neuroscie...· 0 citations
Results demonstrate that SLE exerts neuroprotective effects through coordinated regulation of the AMPK -Nrf2 signaling axis and mitochondrial quality control pathways, and suggest that SLE influences mitochondrial homeostasis under oxidative stress conditions.
Chiharu Ueda, Tamaki Tokumatsu, Fuka Sogame et al.· Frontiers in Nutrition· 0 citations
Alzheimer's disease (AD) is a prevalent neurodegenerative disorder worldwide lacking effective treatments. Protocatechuic acid (PCA), a natural polyphenol found in various foods and medicinal herbs, exhibits diverse bioactivities; but its role in AD remains unclear. This study investigated the neuroprotective effects a...
Jia-Xin Wang, Xin-Ming Tu, Rui-Wen Yang et al.· Journal of Nutritional Bioch...· 0 citations
Parkinson’s disease (PD) is a progressive neurodegenerative disorder characterized by both motor and non-motor symptoms. Oxidative stress is involved in disease pathogenesis, with the consequent damage to DNA. Nowadays, phytocompounds attract much interest for their capacity to modulate some of the pathogenic mechanism...
A. Gugliandolo, Claudia Muscarà, Alessia Floramo et al.· International Journal of Mol...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.