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多酚与神经退行性疾病:神经保护的潜在作用和机制。

Polyphenols and Neurodegenerative Diseases: Potential Effects and Mechanisms of Neuroprotection.

机构信息

Laboratorio de Glicobiología y Farmacognosia, División de Estudios de Posgrado, Facultad de Ciencias Médicas y Biológicas "Dr. Ignacio Chávez", Universidad Michoacana de San Nicolás de Hidalgo (UMSNH), Morelia 58020, Mexico.

Centro de Investigaciones Biomédicas de Michoacán, Instituto Mexicano del Seguro Social, Morelia 58341, Mexico.

出版信息

Molecules. 2023 Jul 14;28(14):5415. doi: 10.3390/molecules28145415.

Abstract

The increase in people's longevity has, consequently, led to more brain involvement and neurodegenerative diseases, which can become complicated and lead to chronic degenerative diseases, thereby presenting greater public health problems. Medicinal plants have been used since ancient times and contain high concentrations of molecules, including polyphenols. It has been proven that polyphenols, which are present in various natural sources can provide curative effects against various diseases and brain disorders through neuroprotective effects. These neuroprotective effects are mainly attributed to their ability to cross the blood-brain barrier, eliminate reactive oxygen species, and cause the chelation of metal ions. Polyphenols increase the concentration of neurotrophic factors and bind directly to the membrane receptors of these neurotrophic factors, to modulate and activate the signaling cascades that allow the plasticity, survival, proliferation, and growth of neuronal cells, thereby allowing for better learning, memory, and cognition. Moreover, polyphenols have no serious adverse side effects resulting from their consumption.

摘要

人们寿命的延长,导致大脑的参与和神经退行性疾病的增加,这些疾病可能变得复杂,并导致慢性退行性疾病,从而带来更大的公共卫生问题。药用植物自古以来就被使用,并且含有高浓度的分子,包括多酚。已经证明,存在于各种天然来源中的多酚可以通过神经保护作用提供对各种疾病和大脑紊乱的治疗效果。这些神经保护作用主要归因于它们穿过血脑屏障、消除活性氧和螯合金属离子的能力。多酚增加神经营养因子的浓度,并直接与这些神经营养因子的膜受体结合,调节和激活信号级联,从而使神经元细胞的可塑性、存活、增殖和生长,从而改善学习、记忆和认知。此外,多酚的消费不会产生严重的不良副作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76bd/10385962/6f6e3dbe0de4/molecules-28-05415-g001.jpg

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