Instituto de Neurociencias de Alicante, CSIC-UMH, 03550 San Juan de Alicante, Spain.
School of Medicine, Medical Sciences and Nutrition, Institute of Medical Sciences, University of Aberdeen, Aberdeen, Scotland, UK.
Semin Cell Dev Biol. 2019 Jan;85:48-59. doi: 10.1016/j.semcdb.2017.11.027. Epub 2017 Nov 26.
In order to navigate through the surrounding environment many mammals, including humans, primarily rely on vision. The eye, composed of the choroid, sclera, retinal pigmented epithelium, cornea, lens, iris and retina, is the structure that receives the light and converts it into electrical impulses. The retina contains six major types of neurons involving in receiving and modifying visual information and passing it onto higher visual processing centres in the brain. Visual information is relayed to the brain via the axons of retinal ganglion cells (RGCs), a projection known as the optic pathway. The proper formation of this pathway during development is essential for normal vision in the adult individual. Along this pathway there are several points where visual axons face 'choices' in their direction of growth. Understanding how these choices are made has advanced significantly our knowledge of axon guidance mechanisms. Thus, the development of the visual pathway has served as an extremely useful model to reveal general principles of axon pathfinding throughout the nervous system. However, due to its particularities, some cellular and molecular mechanisms are specific for the visual circuit. Here we review both general and specific mechanisms involved in the guidance of mammalian RGC axons when they are traveling from the retina to the brain to establish precise and stereotyped connections that will sustain vision.
为了在周围环境中导航,许多哺乳动物,包括人类,主要依赖于视觉。眼睛由脉络膜、巩膜、视网膜色素上皮、角膜、晶状体、虹膜和视网膜组成,是接收光线并将其转化为电脉冲的结构。视网膜包含六种主要类型的神经元,涉及接收和修饰视觉信息,并将其传递到大脑中的高级视觉处理中心。视觉信息通过视网膜神经节细胞(RGC)的轴突传递到大脑,这一投射被称为视神经通路。在发育过程中,这条通路的正确形成对于成年个体的正常视力至关重要。在这条通路上,有几个视觉轴突在生长方向上面临“选择”的点。了解这些选择是如何做出的,极大地提高了我们对轴突导向机制的认识。因此,视觉通路的发育为揭示整个神经系统中轴突寻路的一般原则提供了一个非常有用的模型。然而,由于其特殊性,一些细胞和分子机制是视觉回路所特有的。在这里,我们综述了哺乳动物 RGC 轴突从视网膜向大脑行进时引导其精确和刻板连接以维持视觉的一般性和特异性机制。