Nikolenko Vladimir N, Oganesyan Marine V, Rizaeva Negoriya A, Kudryashova Valentina A, Nikitina Arina T, Pavliv Maria P, Shchedrina Marina A, Giller Dmitry B, Buligin Kirill V, Sinelnikov Mikhail Y
Department of Human Anatomy, Sechenov University, 119991 Moscow, Russia.
International School "Medicine of Future", Sechenov University, 119991 Moscow, Russia.
Brain Sci. 2020 Jul 31;10(8):502. doi: 10.3390/brainsci10080502.
The amygdala is one of the most discussed structures of the brain. Correlations between its level of activity, size, biochemical organization, and various pathologies are the subject of many studies, and can serve as a marker of existing or future disease. It is hypothesized that the amygdala is not just a structural unit, but includes many other regions in the brain. In this review, we present the updated neuroanatomical and physiological aspects of the amygdala, discussing its involvement in neurodegenerative and neurological diseases. The amygdala plays an important role in the processing of input signals and behavioral synthesis. Lesions in the amygdala have been shown to cause neurological disfunction of ranging severity. Abnormality in the amygdala leads to conditions such as depression, anxiety, autism, and also promotes biochemical and physiological imbalance. The amygdala collects pathological proteins, and this fact can be considered to play a big role in the progression and diagnosis of many degenerative diseases, such as Alzheimer's disease, chronic traumatic encephalopathy, Lewy body diseases, and hippocampal sclerosis. The amygdala has shown to play a crucial role as a central communication system in the brain, therefore understanding its neuroanatomical and physiological features can open a channel for targeted therapy of neurodegenerative diseases.
杏仁核是大脑中讨论最多的结构之一。其活动水平、大小、生化组织与各种病理状况之间的相关性是许多研究的主题,并且可以作为现有或未来疾病的一个标志物。据推测,杏仁核不仅仅是一个结构单元,还包括大脑中的许多其他区域。在这篇综述中,我们介绍了杏仁核最新的神经解剖学和生理学方面的内容,讨论了其在神经退行性疾病和神经系统疾病中的作用。杏仁核在输入信号处理和行为整合中起重要作用。杏仁核损伤已被证明会导致不同严重程度的神经功能障碍。杏仁核异常会导致诸如抑郁、焦虑、自闭症等状况,还会促进生化和生理失衡。杏仁核会收集病理性蛋白质,这一事实在许多退行性疾病(如阿尔茨海默病、慢性创伤性脑病、路易体病和海马硬化)的进展和诊断中可能起着重要作用。杏仁核已被证明在大脑中作为一个中央通信系统发挥着关键作用,因此了解其神经解剖学和生理学特征可为神经退行性疾病的靶向治疗开辟一条途径。