Dorsal root ganglia CSF1+ neuronal subtypes have different impact on macrophages and microglia after spared nerve injury.

IF 3.9 3区 医学 Q1 CLINICAL NEUROLOGY Journal of the Peripheral Nervous System Pub Date : 2024-12-01 Epub Date: 2024-11-24 DOI:10.1111/jns.12674
Andreea Violeta Grosu, Roxana-Olimpia Gheorghe, Alexandru Filippi, Alexandru Florian Deftu, Manon Isler, Marc Suter, Violeta Ristoiu
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Abstract

Background and aims: Colony-stimulating factor 1 (CSF1) is a growth factor secreted by dorsal root ganglia (DRG) neurons important for DRG macrophages and spinal cord (SC) microglia injury-induced proliferation and activation, specifically released after spared nerve injury (SNI). In this study, we investigated if SNI-induced CSF1 expression and perineuronal rings of macrophages around mouse DRG neurons vary between L3-L5 DRG and with the neuronal type, and if the CSF1+ neuronal projections at the SC dorsal horns were associated with an increased microglial number in the corresponding laminae.

Methods: Seven days after surgery, L3-L5 DRG as well as their corresponding segments at the SC level were collected, frozen, and cut. DRG sections were double-immunostained using antibodies against CSF1 and NF200, CGRP or IB4, while SC sections were immunostained using a fluorescent Nissl Stain and analyzed for CX3CR1-GFP microglia number and distribution by an in-house ImageJ Plug-in.

Results: Our results showed that SNI-induced CSF1 expression was common for all subtypes of mouse DRG neurons, being responsible for attracting more resident macrophages around them in a DRG-dependent manner, with L4 showing the stronger response and CSF1+/NF200+ neurons showing the highest incidence. Even though the total number of microglia in the SC ipsilateral dorsal horns increased after SNI, the increase at their specific laminar projection sites did not mirror the incidence of DRG neuronal subtypes among CSF1+ neurons.

Interpretation: Taken together, these results contribute to a more comprehensive understanding of the connection between CSF1 and macrophage/microglia response after SNI and emphasize the importance of considering L3-L5 DRG individually when investigating SNI-neuropathic pain pathogenesis in mice.

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神经损伤后,背根神经节 CSF1+ 神经元亚型对巨噬细胞和小胶质细胞的影响不同。
背景和目的:集落刺激因子1(CSF1)是一种由背根神经节(DRG)神经元分泌的生长因子,对DRG巨噬细胞和脊髓(SC)小胶质细胞损伤诱导的增殖和活化非常重要,特别是在神经损伤(SNI)后释放。在这项研究中,我们研究了SNI诱导的CSF1表达和小鼠DRG神经元周围的巨噬细胞神经元环是否在L3-L5 DRG之间和随神经元类型而变化,以及SC背角的CSF1+神经元突起是否与相应神经层的小胶质细胞数量增加有关:方法:手术七天后,收集、冷冻和切割 L3-L5 DRG 及其 SC 水平的相应节段。用 CSF1 和 NF200、CGRP 或 IB4 抗体对 DRG 切片进行双重免疫染色,用荧光 Nissl 染色法对 SC 切片进行免疫染色,并用内部 ImageJ 插件分析 CX3CR1-GFP 小胶质细胞的数量和分布:结果:我们的研究结果表明,SNI诱导的CSF1表达在小鼠DRG神经元的所有亚型中都很常见,以DRG依赖的方式吸引更多的巨噬细胞驻留在神经元周围,其中L4神经元的反应更强烈,CSF1+/NF200+神经元的发生率最高。尽管SC同侧背角的小胶质细胞总数在SNI后有所增加,但其特定板层投射部位的增加并不反映CSF1+神经元中DRG神经元亚型的发生率:综上所述,这些结果有助于更全面地了解SNI后CSF1与巨噬细胞/小胶质细胞反应之间的联系,并强调了在研究小鼠SNI-神经性疼痛发病机制时单独考虑L3-L5 DRG的重要性。
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来源期刊
CiteScore
6.10
自引率
7.90%
发文量
45
审稿时长
>12 weeks
期刊介绍: The Journal of the Peripheral Nervous System is the official journal of the Peripheral Nerve Society. Founded in 1996, it is the scientific journal of choice for clinicians, clinical scientists and basic neuroscientists interested in all aspects of biology and clinical research of peripheral nervous system disorders. The Journal of the Peripheral Nervous System is a peer-reviewed journal that publishes high quality articles on cell and molecular biology, genomics, neuropathic pain, clinical research, trials, and unique case reports on inherited and acquired peripheral neuropathies. Original articles are organized according to the topic in one of four specific areas: Mechanisms of Disease, Genetics, Clinical Research, and Clinical Trials. The journal also publishes regular review papers on hot topics and Special Issues on basic, clinical, or assembled research in the field of peripheral nervous system disorders. Authors interested in contributing a review-type article or a Special Issue should contact the Editorial Office to discuss the scope of the proposed article with the Editor-in-Chief.
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