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胚胎脑脊液成分与调节的进化发展:一个对脑发育和功能有影响的开放研究领域。

Evolutionary development of embryonic cerebrospinal fluid composition and regulation: an open research field with implications for brain development and function.

作者信息

Bueno David, Garcia-Fernàndez Jordi

机构信息

Department of Genetics, Microbiology and Statistics, Unit of Biomedical, Evolutionary and Developmental Genetics, Faculty of Biological Sciences, University of Barcelona, Av. Diagonal 643, 08028, Barcelona, Catalonia, Spain.

出版信息

Fluids Barriers CNS. 2016 Mar 15;13:5. doi: 10.1186/s12987-016-0029-y.

Abstract

Within the consolidated field of evolutionary development, there is emerging research on evolutionary aspects of central nervous system development and its implications for adult brain structure and function, including behaviour. The central nervous system is one of the most intriguing systems in complex metazoans, as it controls all body and mind functions. Its failure is responsible for a number of severe and largely incurable diseases, including neurological and neurodegenerative ones. Moreover, the evolution of the nervous system is thought to be a critical step in the adaptive radiation of vertebrates. Brain formation is initiated early during development. Most embryological, genetic and evolutionary studies have focused on brain neurogenesis and regionalisation, including the formation and function of organising centres, and the comparison of homolog gene expression and function among model organisms from different taxa. The architecture of the vertebrate brain primordium also reveals the existence of connected internal cavities, the cephalic vesicles, which in fetuses and adults become the ventricular system of the brain. During embryonic and fetal development, brain cavities and ventricles are filled with a complex, protein-rich fluid called cerebrospinal fluid (CSF). However, CSF has not been widely analysed from either an embryological or evolutionary perspective. Recently, it has been demonstrated in higher vertebrates that embryonic cerebrospinal fluid has key functions in delivering diffusible signals and nutrients to the developing brain, thus contributing to the proliferation, differentiation and survival of neural progenitor cells, and to the expansion and patterning of the brain. Moreover, it has been shown that the composition and homeostasis of CSF are tightly controlled in a time-dependent manner from the closure of the anterior neuropore, just before the initiation of primary neurogenesis, up to the formation of functional choroid plexuses. In this review, we draw together existing literature about the formation, function and homeostatic regulation of embryonic cerebrospinal fluid, from the closure of the anterior neuropore to the formation of functional fetal choroid plexuses, from an evolutionary perspective. The relevance of these processes to the normal functions and diseases of adult brain will also be discussed.

摘要

在进化发育这一综合领域内,关于中枢神经系统发育的进化方面及其对成人大脑结构和功能(包括行为)的影响的研究正在兴起。中枢神经系统是复杂后生动物中最引人入胜的系统之一,因为它控制着所有的身体和心理功能。其功能障碍会导致许多严重且大多无法治愈的疾病,包括神经和神经退行性疾病。此外,神经系统的进化被认为是脊椎动物适应性辐射中的关键一步。大脑形成在发育早期就开始了。大多数胚胎学、遗传学和进化研究都集中在脑神经元发生和区域化,包括组织中心的形成和功能,以及来自不同分类群的模式生物之间同源基因表达和功能的比较。脊椎动物脑原基的结构还揭示了相连的内部腔室即脑泡的存在,这些脑泡在胎儿和成人阶段会变成脑的脑室系统。在胚胎和胎儿发育过程中,脑腔和脑室充满了一种复杂的、富含蛋白质的液体,称为脑脊液(CSF)。然而,从胚胎学或进化的角度来看,脑脊液尚未得到广泛分析。最近,在高等脊椎动物中已经证明,胚胎脑脊液在向发育中的大脑传递可扩散信号和营养物质方面具有关键功能,从而有助于神经祖细胞的增殖、分化和存活,以及大脑的扩展和模式形成。此外,已经表明,从初级神经发生开始前前神经孔闭合到功能性脉络丛形成,脑脊液的组成和稳态以时间依赖性方式受到严格控制。在这篇综述中,我们从进化的角度汇集了关于胚胎脑脊液从前神经孔闭合到功能性胎儿脉络丛形成的形成、功能和稳态调节的现有文献。还将讨论这些过程与成人大脑正常功能和疾病的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/320a/4793645/e9200252c59d/12987_2016_29_Fig1_HTML.jpg

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