Tang Xiangwen, Deng Peng, Jiang Yizhen, Zhang Lingling, He Yuqing, Yang Hao
Translational Medicine Center, Hong Hui Hospital, Xi'an Jiaotong University, Xi'an 710054, China.
Basic Medical School Academy, Shaanxi University of Traditional Chinese Medicine, Xianyang 712046, China.
Biomedicines. 2023 Oct 24;11(11):2878. doi: 10.3390/biomedicines11112878.
The nervous system plays a leading role in the regulation of physiological functions and activities in the body. However, a variety of diseases related to the nervous system have a serious impact on human health. It is increasingly clear that neurological diseases are multifactorial pathological processes involving multiple cellular systems, and the onset of these diseases usually involves a diverse array of molecular mechanisms. Unfortunately, no effective therapy exists to slow down the progression or prevent the development of diseases only through the regulation of a single factor. To this end, it is pivotal to seek an ideal therapeutic approach for challenging the complicated pathological process to achieve effective treatment. In recent years, fisetin, a kind of flavonoid widely existing in fruits, vegetables and other plants, has shown numerous interesting biological activities with clinical potentials including anti-inflammatory, antioxidant and neurotrophic effects. In addition, fisetin has been reported to have diverse pharmacological properties and neuroprotective potentials against various neurological diseases. The neuroprotective effects were ascribed to its unique biological properties and multiple clinical pharmacological activities associated with the treatment of different neurological disorders. In this review, we summarize recent research progress regarding the neuroprotective potential of fisetin and the underlying signaling pathways of the treatment of several neurological diseases.
神经系统在调节身体的生理功能和活动中起主导作用。然而,各种与神经系统相关的疾病对人类健康有严重影响。越来越明显的是,神经疾病是涉及多个细胞系统的多因素病理过程,这些疾病的发病通常涉及各种各样的分子机制。不幸的是,仅通过调节单一因素,不存在能减缓疾病进展或预防疾病发展的有效疗法。为此,寻求一种理想的治疗方法来应对复杂的病理过程以实现有效治疗至关重要。近年来,非瑟酮,一种广泛存在于水果、蔬菜和其他植物中的类黄酮,已显示出许多具有临床潜力的有趣生物活性,包括抗炎、抗氧化和神经营养作用。此外,据报道非瑟酮具有多种药理特性和针对各种神经疾病的神经保护潜力。其神经保护作用归因于其独特的生物学特性以及与治疗不同神经疾病相关的多种临床药理活性。在这篇综述中,我们总结了关于非瑟酮神经保护潜力以及治疗几种神经疾病的潜在信号通路的最新研究进展。