Biomedical Research and Innovation Platform, South African Medical Research Council, Tygerberg, Cape Town, South Africa.
Biomedical Research and Innovation Platform, South African Medical Research Council, Tygerberg, Cape Town, South Africa; Department of Medical Physiology, Stellenbosch University, Tygerberg, Cape Town, South Africa.
Mol Metab. 2019 Sep;27:1-10. doi: 10.1016/j.molmet.2019.06.022. Epub 2019 Jun 29.
The prevalence of obesity and metabolic diseases continues to rise globally. The increased consumption of unhealthy energy-rich diets that are high in fat and sugars results in oxidative stress and inflammation leading to hypothalamic dysfunction, which has been linked with these diseases. Conversely, diets rich in polyphenols, which are phytochemicals known for their antioxidant and anti-inflammatory properties, are associated with a reduced risk for developing metabolic diseases.
This review provides an overview of the effects of polyphenols against diet-induced hypothalamic dysfunction with respect to neural inflammation and mitochondrial dysfunction. Results show that polyphenols ameliorate oxidative stress and inflammation within the hypothalamus, thereby improving leptin signaling and mitochondrial biogenesis. Furthermore, they protect against neurodegeneration by decreasing the production of reactive oxygen species and enhancing natural antioxidant defense systems.
The potential of polyphenols as nutraceuticals against hypothalamic inflammation, mitochondrial dysfunction, and neurodegeneration could hold tremendous value. With hypothalamic inflammation increasing naturally with age, the potential to modulate these processes in order to extend longevity is exciting and warrants exploration. The continued escalation of mental health disorders, which are characterized by heightened neuronal inflammation, necessitates the furthered investigation into polyphenol therapeutic usage in this regard.
肥胖和代谢性疾病的患病率在全球范围内持续上升。不健康的高能量高脂肪和高糖饮食的消费增加导致氧化应激和炎症,从而导致下丘脑功能障碍,这与这些疾病有关。相反,富含多酚的饮食与代谢性疾病的风险降低有关,多酚是具有抗氧化和抗炎特性的植物化学物质。
本文综述了多酚对饮食诱导的下丘脑功能障碍的影响,特别是在神经炎症和线粒体功能障碍方面。结果表明,多酚可改善下丘脑的氧化应激和炎症,从而改善瘦素信号和线粒体生物发生。此外,它们通过减少活性氧的产生和增强天然抗氧化防御系统来防止神经退行性变。
多酚作为针对下丘脑炎症、线粒体功能障碍和神经退行性变的营养保健品具有巨大的潜力。随着年龄的增长,下丘脑炎症自然增加,调节这些过程以延长寿命的潜力令人兴奋,值得探索。以神经元炎症加剧为特征的精神健康障碍的持续升级,需要进一步研究多酚在这方面的治疗用途。