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利用新型Nefh基因敲入小鼠对有髓初级传入神经元进行基因靶向

Genetic targeting of myelinated primary afferent neurons using a new Nefh knock-in mouse.

作者信息

Chen John Cy, Kaczmarczyk Lech, de-Faria Felipe Meira, Szczot Marcin, Jackson Walker S, Larsson Max

机构信息

Division of Cell- and Neurobiology, Department of Biomedical and Clinical Sciences, Linköping University, 581 85, Linköping, Sweden.

Department of Biomedical and Clinical Sciences, Center for Social and Affective Neuroscience, Linköping University, 581 85, Linköping, Sweden.

出版信息

Sci Rep. 2025 Mar 29;15(1):10890. doi: 10.1038/s41598-025-95874-2.

Abstract

Primary afferent neurons that convey somatosensory modalities comprise two large, heterogeneous populations: small-diameter neurons that give rise to slowly conducting unmyelinated axonal C fibers and medium-to-large diameter neurons with fast myelinated A fibers. Despite these two major groupings, tools to differentiate between unmyelinated and myelinated primary afferent fibers by genetic targeting have not been available; in particular, whereas numerous mouse driver lines exist to target different C fiber populations, genetic tools that target myelinated primary afferent populations are scarce. Here we describe a knock-in mouse line expressing tamoxifen-dependent CreERT2 under control of the Nefh gene, which encodes neurofilament heavy chain (NFH or NF200), a protein that is highly enriched in myelinated fibers. This mouse enables highly selective and efficient recombination of Cre-dependent reporters for functional and anatomical interrogation of myelinated fibers while excluding unmyelinated C fibers. In combination with other recombinase-expressing mouse lines, this genetic tool will be valuable for intersectional targeting of subpopulations of myelinated primary afferent fibers.

摘要

传递躯体感觉模式的初级传入神经元包括两个大的、异质性的群体:产生传导缓慢的无髓轴突C纤维的小直径神经元,以及具有快速有髓A纤维的中到大直径神经元。尽管有这两个主要类别,但通过基因靶向区分无髓和有髓初级传入纤维的工具尚未可用;特别是,虽然存在许多针对不同C纤维群体的小鼠驱动系,但针对有髓初级传入群体的基因工具却很稀少。在这里,我们描述了一种敲入小鼠品系,该品系在Nefh基因的控制下表达他莫昔芬依赖性CreERT2,Nefh基因编码神经丝重链(NFH或NF200),一种在有髓纤维中高度富集的蛋白质。这种小鼠能够对Cre依赖性报告基因进行高度选择性和高效的重组,用于对有髓纤维进行功能和解剖学研究,同时排除无髓C纤维。与其他表达重组酶的小鼠品系相结合,这种基因工具对于有髓初级传入纤维亚群的交叉靶向将具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d15/11954935/7764fbf2424d/41598_2025_95874_Fig1_HTML.jpg

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