Bergado-Rosado J A, Almaguer-Melian W
Centro Internacional de Restauración Neurológica (CIREN), Ave. 25, #15.805, Playa, CP 12100 Ciudad de La Habana, Cuba.
Rev Neurol. 2000;31(11):1074-95.
To present a unified vision of the principal known mechanisms of neuroplasticity, emphasizing their universality.
The concept of the central nervous system as an immutable entity has been considerably modified during the second half of the 20th century. Neuroplasticity, that is the ability of the brain regarding change and repair is expressed in different ways, from functional modifications of existing structures to the formation, by growth and proliferation, of new structures and neurons. This study considers the molecular and cellular mechanisms of neuroplastic phenomena and classifies them into two main groups: plasticity due to growth, including the mechanisms of axonal regeneration, collateralization and reactive synaptogenesis; and functional plasticity, which includes changes in the efficacy of synaptic transmission such as long-term potentiation and the activation of silent synapses. We also describe some of the relations of neuroplastic phenomena with disease of the central nervous system, together with examples of physiological, physical and pharmacological factors which may be used in future as therapeutic tools to stimulate and modulate neuroplasticity.
Neuroplastic mechanisms show a high degree of phylogenetic and ontogenetic conservation. They are important both in the genesis of disorders and disease of the nervous system and for its repair after different types of damage and trauma. Modulation of neuroplastic mechanisms by physical and chemical agents would appear to be one of the most powerful therapeutic tools of restorative neurology.
呈现关于神经可塑性主要已知机制的统一观点,强调其普遍性。
将中枢神经系统视为一个不可改变实体的概念在20世纪后半叶有了相当大的修正。神经可塑性,即大脑进行改变和修复的能力,以不同方式表现出来,从现有结构的功能改变到通过生长和增殖形成新的结构和神经元。本研究探讨神经可塑性现象的分子和细胞机制,并将其分为两大类:生长所致的可塑性,包括轴突再生、侧支化和反应性突触形成的机制;以及功能可塑性,包括突触传递效能的变化,如长时程增强和沉默突触的激活。我们还描述了神经可塑性现象与中枢神经系统疾病的一些关系,以及一些生理、物理和药理因素的例子,这些因素未来可能用作刺激和调节神经可塑性的治疗工具。
神经可塑性机制在系统发生和个体发生上具有高度保守性。它们在神经系统疾病和病症的发生以及不同类型损伤和创伤后的修复中都很重要。通过物理和化学因素调节神经可塑性机制似乎是修复性神经学最有力的治疗工具之一。