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小鼠肩胛间棕色脂肪组织的交感神经支配。

Sympathetic innervation of the interscapular brown adipose tissue in mouse.

机构信息

Neurobiology of Nutrition and Metabolism Department, Pennington Biomedical Research Center, Louisiana State University System, Baton Rouge, Louisiana.

出版信息

Ann N Y Acad Sci. 2019 Oct;1454(1):3-13. doi: 10.1111/nyas.14119. Epub 2019 Jun 11.

Abstract

The recent discovery of significant brown fat depots in adult humans has revived discussion of exploiting brown fat thermogenesis in the control of energy balance and body weight. The sympathetic nervous system (SNS) has a key role in the activation of brown fat and functional mapping of its components will be crucial for the development of specific neuromodulation techniques. The mouse is an important species used for molecular genetic modulations, but its small size is not ideal for anatomical dissections, thus brown fat innervation studies are mostly available in larger rodents such as rats and hamsters. Here, we use pseudorabies virus retrograde tracing, whole tissue clearing, and confocal/light sheet microscopy to show the location of pre- and postganglionic neurons selectively innervating the interscapular brown adipose tissue (iBAT) in the mouse. Using iDISCO whole tissue clearing, we identified iBAT projecting postganglionic neurons in the caudal parts of the ipsilateral fused stellate/T1, as well as the T2-T5 sympathetic chain ganglia and preganglionic neurons between levels T2 and T6 of the ipsilateral spinal cord. The methodology enabled high-resolution imaging and 3D rendering of the specific SNS innervation of iBAT and will be helpful to discern peripheral nervous system innervation of other organs and tissues.

摘要

最近在成年人体内发现大量棕色脂肪储存,这重新引发了关于利用棕色脂肪产热来控制能量平衡和体重的讨论。交感神经系统(SNS)在激活棕色脂肪方面起着关键作用,其成分的功能映射对于开发特定的神经调节技术至关重要。小鼠是用于分子遗传调控的重要物种,但它的体积小,不适合进行解剖学解剖,因此棕色脂肪神经支配研究主要在大鼠和仓鼠等较大的啮齿动物中进行。在这里,我们使用伪狂犬病毒逆行追踪、全组织清除和共聚焦/光片显微镜来显示选择性支配肩胛间棕色脂肪组织(iBAT)的节前和节后神经元的位置。使用 iDISCO 全组织清除,我们在同侧融合星状/T1 的尾部部分以及 T2-T5 交感神经链神经节中鉴定出投射到 iBAT 的节后神经元,以及同侧脊髓 T2 和 T6 水平之间的节前神经元。该方法能够对 iBAT 的特定 SNS 神经支配进行高分辨率成像和 3D 渲染,将有助于辨别其他器官和组织的外周神经系统神经支配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/096e/6852372/e5a5370727ac/NYAS-1454-3-g001.jpg

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