Institute of Pharmacology and Toxicology, Key Laboratory of Medical Neurobiology of the Ministry of Health of China, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China.
Key Laboratory of Neuropharmacology and Translational Medicine of Zhejiang Province, School of Pharmaceutical Sciences, Zhejiang Chinese Medical University, Hangzhou 310053, China.
Proc Natl Acad Sci U S A. 2023 Apr 4;120(14):e2216231120. doi: 10.1073/pnas.2216231120. Epub 2023 Mar 28.
Histamine is a conserved neuromodulator in mammalian brains and critically involved in many physiological functions. Understanding the precise structure of the histaminergic network is the cornerstone in elucidating its function. Herein, using histidine decarboxylase (HDC)-CreERT2 mice and genetic labeling strategies, we reconstructed a whole-brain three dimensional (3D) structure of histaminergic neurons and their outputs at 0.32 × 0.32 × 2 μm pixel resolution with a cutting-edge fluorescence microoptical sectioning tomography system. We quantified the fluorescence density of all brain areas and found that histaminergic fiber density varied significantly among brain regions. The density of histaminergic fiber was positively correlated with the amount of histamine release induced by optogenetic stimulation or physiological aversive stimulation. Lastly, we reconstructed a fine morphological structure of 60 histaminergic neurons via sparse labeling and uncovered the largely heterogeneous projection pattern of individual histaminergic neurons. Collectively, this study reveals an unprecedented whole-brain quantitative analysis of histaminergic projections at the mesoscopic level, providing a foundation for future functional histaminergic study.
组胺是哺乳动物大脑中一种保守的神经调质,在许多生理功能中起着关键作用。了解组胺能网络的精确结构是阐明其功能的基石。在这里,我们使用组氨酸脱羧酶(HDC)-CreERT2 小鼠和遗传标记策略,使用最先进的荧光微光学切片层析成像系统,以 0.32×0.32×2μm 像素分辨率重建了组胺能神经元及其输出的全脑三维(3D)结构。我们量化了所有脑区的荧光密度,发现组胺能纤维密度在脑区之间差异显著。组胺能纤维的密度与光遗传刺激或生理厌恶刺激诱导的组胺释放量呈正相关。最后,我们通过稀疏标记重建了 60 个组胺能神经元的精细形态结构,揭示了单个组胺能神经元的投射模式存在很大的异质性。总的来说,这项研究揭示了在介观水平上组胺能投射的前所未有的全脑定量分析,为未来的功能性组胺能研究提供了基础。