Transcriptional profiles of non-neuronal and immune cells in mouse trigeminal ganglia

Jennifer Mecklenburg, Sergey A. Shein, Mostafa Malmir, Anahit H. Hovhannisyan, Korri Weldon, Yi Zou, Zhao Lai, Yu-Fang Jin, Shivani Ruparel, Alexei V. Tumanov, Armen N. Akopian
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Abstract

Non-neuronal cells constitute 90%–95% of sensory ganglia. These cells, especially glial and immune cells, play critical roles in the modulation of sensory neurons. This study aimed to identify, profile, and summarize the types of trigeminal ganglion (TG) non-neuronal cells in naïve male mice using published and our own data generated by single-cell RNA sequencing, flow cytometry, and immunohistochemistry. TG has five types of non-neuronal cells, namely, glial, fibroblasts, smooth muscle, endothelial, and immune cells. There is an agreement among publications for glial, fibroblasts, smooth muscle, and endothelial cells. Based on gene profiles, glial cells were classified as myelinated and non-myelinated Schwann cells and satellite glial cells. Mpz has dominant expression in Schwann cells, and Fabp7 is specific for SCG. Two types of Col1a2 + fibroblasts located throughout TG were distinguished. TG smooth muscle and endothelial cells in the blood vessels were detected using well-defined markers. Our study reported three types of macrophages (Mph) and four types of neutrophils (Neu) in TG. Mph were located in the neuronal bodies and nerve fibers and were sub-grouped by unique transcriptomic profiles with Ccr2 , Cx3cr1 , and Iba1 as markers. A comparison of databases showed that type 1 Mph is similar to choroid plexus-low (CP lo ) border-associated Mph (BAMs). Type 2 Mph has the highest prediction score with CP hi BAMs, while type 3 Mph is distinct. S100a8 + Neu were located in the dura surrounding TG and were sub-grouped by clustering and expressions of Csf3r , Ly6G , Ngp , Elane , and Mpo . Integrative analysis of published datasets indicated that Neu-1, Neu-2, and Neu-3 are similar to the brain Neu-1 group, while Neu-4 has a resemblance to the monocyte-derived cells. Overall, the generated and summarized datasets on non-neuronal TG cells showed a unique composition of myeloid cell types in TG and could provide essential and fundamental information for studies on cell plasticity, interactomic networks between neurons and non-neuronal cells, and function during a variety of pain conditions in the head and neck regions.
小鼠三叉神经节非神经元细胞和免疫细胞的转录谱
非神经元细胞占感觉神经节的90%-95%。这些细胞,尤其是神经胶质细胞和免疫细胞,在感觉神经元的调节中起着关键作用。本研究旨在利用已发表的单细胞RNA测序、流式细胞术和免疫组织化学产生的数据和我们自己的数据,鉴定、分析和总结naïve雄性小鼠三叉神经节(TG)非神经元细胞的类型。TG有五种非神经元细胞,即胶质细胞、成纤维细胞、平滑肌细胞、内皮细胞和免疫细胞。在关于神经胶质细胞、成纤维细胞、平滑肌细胞和内皮细胞的出版物中有一致的结论。根据基因谱,将神经胶质细胞分为有髓鞘雪旺细胞和无髓鞘雪旺细胞以及卫星神经胶质细胞。Mpz在雪旺细胞中占主导地位,而Fabp7对SCG具有特异性。两种类型的Col1a2 +成纤维细胞分布在TG。使用明确的标记物检测血管中的TG、平滑肌和内皮细胞。本研究报道TG中存在三种巨噬细胞(Mph)和四种中性粒细胞(Neu)。Mph位于神经元体和神经纤维中,并以Ccr2、Cx3cr1和Iba1作为标记物,通过独特的转录组谱进行亚组。数据库的比较表明,1型Mph与脉络膜丛低(CP lo)边界相关Mph (BAMs)相似。2型Mph对CP hi BAMs的预测得分最高,而3型Mph的预测得分明显。S100a8 + Neu位于TG周围硬脑膜,通过聚类和Csf3r、Ly6G、Ngp、Elane、Mpo的表达进行亚组。对已发表数据集的综合分析表明,neu1、neu2和neu3与脑neu1组相似,而neu4与单核细胞来源的细胞相似。总的来说,生成和总结的非神经元TG细胞数据集显示了TG中髓系细胞类型的独特组成,可以为研究细胞可塑性、神经元和非神经元细胞之间的相互作用网络以及头颈部各种疼痛状况下的功能提供必要和基础的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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