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Condition: Mitochondrial Disease
Nutrition: Flavonoids

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Total 8 results found since Jan 2013.

Neuroprotective Strategies for Stroke by Natural Products: Advances and Perspectives
Curr Neuropharmacol. 2023 Jul 17. doi: 10.2174/1570159X21666230717144752. Online ahead of print.ABSTRACTCerebral ischemic stroke is a disease with high prevalence and incidence. Its management focuses on rapid reperfusion with intravenous thrombolysis and endovascular thrombectomy. Both therapeutic strategies reduce disability, but the therapy time window is short, and the risk of bleeding is high. Natural products (NPs) have played a key role in drug discovery, especially for cancer and infectious diseases. However, they have made little progress in clinical translation and pose challenges to the treatment of stroke. Rece...
Source: Current Neuropharmacology - July 17, 2023 Category: Drugs & Pharmacology Authors: Aifen Liu Jingyan Hu Tzu-Shao Yeh Chengniu Wang Jilong Tang Xiaohong Huang Bin Chen Liexiang Huangfu Weili Yu Lei Zhang Source Type: research

Molecules, Vol. 24, Pages 2323: Advances in Biosynthesis, Pharmacology, and Pharmacokinetics of Pinocembrin, a Promising Natural Small-Molecule Drug
ng Yang Pinocembrin is one of the most abundant flavonoids in propolis, and it may also be widely found in a variety of plants. In addition to natural extraction, pinocembrin can be obtained by biosynthesis. Biosynthesis efficiency can be improved by a metabolic engineering strategy and a two-phase pH fermentation strategy. Pinocembrin poses an interest for its remarkable pharmacological activities, such as neuroprotection, anti-oxidation, and anti-inflammation. Studies have shown that pinocembrin works excellently in treating ischemic stroke. Pinocembrin can reduce nerve damage in the ischemic area and reduce mitochon...
Source: Molecules - June 23, 2019 Category: Chemistry Authors: Xiaoling Shen Yeju Liu Xiaoya Luo Zhihong Yang Tags: Review Source Type: research

The Protective Effect of Liquiritin in Hypoxia/Reoxygenation-Induced Disruption on Blood Brain Barrier
Conclusions: Studies have shown that LQ can promote cell proliferation, migration as well as angiogenesis, and reduce cell apoptosis, which may be related to its inhibition of oxidative and ER stress, and then maintain the integrity of BBB. Given that five differential proteins were found by protein analysis, future studies will revolve around the five differential proteins.
Source: Frontiers in Pharmacology - July 6, 2021 Category: Drugs & Pharmacology Source Type: research

Nrf2 as a Potential Mediator of Cardiovascular Risk in Metabolic Diseases
Conclusion Activation of the Nrf2-dependent antioxidant system plays an important role in cell defense against oxidative stress damage, whereas the insufficiency of the Nrf2 system is associated with multiple aspects of the genesis and progression of metabolic diseases, posing a great risk to the cardiovascular system (Figure 1). The systemic increase of Nrf2 activity by several activators may be beneficial in the treatment of metabolic diseases. In addition, selective upregulation of Nrf2 genes may represent a potential therapy in obesity, diabetes and atherosclerosis. Looking to the future, experimental research that el...
Source: Frontiers in Pharmacology - April 11, 2019 Category: Drugs & Pharmacology Source Type: research

The Protective Effect of Quercetin on Endothelial Cells Injured by Hypoxia and Reoxygenation
Conclusions: Our experiments show that quercetin can protect HBMECs from H/R, which contains promoting cell proliferation, cell migration and angiogenesis, reducing mitochondrial membrane potential damage and inhibiting cell apoptosis. This may be related to its antioxidation and inhibition of endoplasmic reticulum stress. At the same time, quercetin can increase the level of BBB connexin, suggesting that quercetin can maintain BBB integrity.
Source: Frontiers in Pharmacology - October 20, 2021 Category: Drugs & Pharmacology Source Type: research

Mechanism of Dihydromyricetin on Inflammatory Diseases
Inflammation plays a crucial role in a variety of diseases, including diabetes, arthritis, asthma, Alzheimer’s disease (AD), acute cerebral stroke, cancer, hypertension, and myocardial ischemia. Therefore, we need to solve the problem urgently for the study of inflammation-related diseases. Dihydromyricetin (DHM) is a flavonoid mainly derived from Nekemias grossedentata (Hand.-Mazz.) J.Wen and Z.L.Nie (N.grossedentata). DHM possesses many pharmacological effects, including anti-inflammatory (NLRP-3, NF-κB, cytokines, and neuroinflammation), antioxidant, improving mitochondrial dysfunction, and regulating autophagy and s...
Source: Frontiers in Pharmacology - January 18, 2022 Category: Drugs & Pharmacology Source Type: research

Molecules, Vol. 27, Pages 7620: Quercetin & rsquo;s Effects on Glutamate Cytotoxicity
Molecules, Vol. 27, Pages 7620: Quercetin’s Effects on Glutamate Cytotoxicity Molecules doi: 10.3390/molecules27217620 Authors: Kade Riche Natalie R. Lenard The potentially therapeutic effects of the naturally abundant plant flavonoid quercetin have been extensively studied. An extensive body of literature suggests that quercetin’s powerful antioxidant effects may relate to its ability to treat disease. Glutamate excitotoxicity occurs when a neuron is overstimulated by the neurotransmitter glutamate and causes dysregulation of intracellular calcium concentrations. Quercetin has been shown ...
Source: Molecules - November 7, 2022 Category: Chemistry Authors: Kade Riche Natalie R. Lenard Tags: Review Source Type: research