Institute of Clinical Neuroanatomy, Dr. Senckenberg Anatomy, Neuroscience Center, Goethe University, Theodor-Stern-Kai 7, 60590, Frankfurt/M, Germany.
Cell Tissue Res. 2020 Nov;382(2):201-231. doi: 10.1007/s00441-020-03279-6. Epub 2020 Sep 15.
Selective sympathetic and parasympathetic pathways that act on target organs represent the terminal actors in the neurobiology of homeostasis and often become compromised during a range of neurodegenerative and traumatic disorders. Here, we delineate several neurotransmitter and neuromodulator phenotypes found in diverse parasympathetic and sympathetic ganglia in humans and rodent species. The comparative approach reveals evolutionarily conserved and non-conserved phenotypic marker constellations. A developmental analysis examining the acquisition of selected neurotransmitter properties has provided a detailed, but still incomplete, understanding of the origins of a set of noradrenergic and cholinergic sympathetic neuron populations, found in the cervical and trunk region. A corresponding analysis examining cholinergic and nitrergic parasympathetic neurons in the head, and a range of pelvic neuron populations, with noradrenergic, cholinergic, nitrergic, and mixed transmitter phenotypes, remains open. Of particular interest are the molecular mechanisms and nuclear processes that are responsible for the correlated expression of the various genes required to achieve the noradrenergic phenotype, the segregation of cholinergic locus gene expression, and the regulation of genes that are necessary to generate a nitrergic phenotype. Unraveling the neuron population-specific expression of adhesion molecules, which are involved in axonal outgrowth, pathway selection, and synaptic organization, will advance the study of target-selective autonomic pathway generation.
选择性作用于靶器官的交感和副交感神经通路代表了体内平衡神经生物学的终末效应器,在一系列神经退行性和创伤性疾病中常常受损。在这里,我们描述了在人类和啮齿动物的各种副交感和交感神经节中发现的几种神经递质和神经调质表型。比较方法揭示了进化保守和非保守的表型标记组合。对选定神经递质特性获得的发育分析提供了对一组位于颈部和躯干区域的去甲肾上腺素能和胆碱能交感神经元群体起源的详细但仍不完整的理解。对头部的胆碱能和硝化能副交感神经元以及一系列具有去甲肾上腺素能、胆碱能、硝化能和混合递质表型的骨盆神经元群体进行相应的分析仍然是开放的。特别有趣的是负责实现去甲肾上腺素能表型所需的各种基因的相关表达、胆碱能基因表达的分离以及产生硝化能表型所必需的基因的调节的分子机制和核过程。阐明参与轴突生长、途径选择和突触组织的黏附分子的神经元群体特异性表达将推进对靶选择性自主途径生成的研究。