靶向 NGF 突变(R100E)对小鼠疼痛行为、关节炎症和骨侵蚀的影响与性别有关。

IF 5.9 1区 医学 Q1 ANESTHESIOLOGY
Carlos E Morado-Urbina,Jungo Kato,Katalin Sandor,Juan Antonio Vazquez-Mora,Kristina Ängeby Möller,Nils Simon,Jaira Salcido,Arisai Martinez-Martinez,Enriqueta Munoz-Islas,Juan Miguel Jimenez-Andrade,Camilla I Svensson
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引用次数: 0

摘要

神经生长因子(NGF)-R100E 是人类重组 NGF 的一种突变形式,它减少了 NGF 与其 p75NTR 受体的结合,同时保留了 NGF 与 TrkA 受体的亲和力。在这里,我们使用人类野生型 NGF 和 NGF-R100E 基因敲入小鼠来研究这种 NGF 突变对炎症诱导的疼痛相关行为和骨质流失的影响。hNGF-R100E 基因突变不会改变野生小鼠坐骨神经、踝关节滑膜和皮肤的神经纤维密度。在关节内注射完全弗氏佐剂(CFA)诱发关节炎症前后,人重组神经生长因子野生型和hNGF-R100E雌雄小鼠对机械、热和冷刺激的退缩反应相似,而负重和步态分析则显示出显著差异。耐人寻味的是,与野生型小鼠相比,hNGF-R100E 雄性和雌性小鼠仅表现出轻微的变化,表明深关节相关疼痛的程度较低。此外,micro-CT分析表明,hNGF-R100E雌性小鼠(而非雄性小鼠)可免受CFA诱导的骨质流失的影响,mRNA分析表明不同的基因调控表明NGF、炎症和骨质流失之间存在性别依赖关系。总之,我们的研究揭示了 hNGF-R100E 突变使小鼠对炎症诱导的关节负荷和步态影响不敏感,同时保留了外周痛觉神经元的发育和对皮肤点状刺激的敏感性。值得注意的是,这种突变发现了 NGF 与炎症诱导的骨质流失之间的性别依赖关系。这些发现为将 NGF 作为疼痛治疗靶点以及 NGF 与骨结构之间的相互作用提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sex-dependent effects of the targeted NGF mutation (R100E) on pain behavior, joint inflammation, and bone erosion in mice.
Nerve growth factor (NGF)-R100E is a mutated form of human recombinant NGF that reduces the binding of NGF to its p75NTR receptor while retaining its affinity toward the TrkA receptor. Here, we used human wild type NGF and NGF-R100E knock-in mice to investigate the effects of this NGF mutation on inflammation-induced pain-related behaviors and bone loss. The hNGF-R100E mutation did not alter the nerve fiber density in the sciatic nerve, ankle joint synovium, and skin of naïve mice. Withdrawal responses to mechanical, thermal, and cold stimuli before and after joint inflammation induced by intra-articular injection of complete Freund adjuvant (CFA) were similar between human recombinant nerve growth factor-wild type and hNGF-R100E male and female mice while weight bearing and gait analysis revealed significant differences. Intriguingly, hNGF-R100E male and female mice showed only mild changes, indicating lower degrees of deep joint-related pain compared to their wild type counterparts. Furthermore, micro-CT analysis demonstrated that hNGF-R100E female mice, but not males, were protected from CFA-induced bone loss, and mRNA analysis showed a different gene regulation indicating a sex-dependent relationship between NGF, inflammation, and bone loss. In conclusion, our study reveals that the hNGF-R100E mutation renders mice insensitive to inflammation-induced impact on joint loading and gait while preserving the development of the peripheral nociceptive neurons and sensitivity to punctate stimulation of the skin. Notably, the mutation uncovers a sex-dependent relationship between NGF and inflammation-induced bone loss. These findings offer valuable insights into NGF as a target for pain management and the interplay between NGF and bone architecture.
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来源期刊
PAIN®
PAIN® 医学-临床神经学
CiteScore
12.50
自引率
8.10%
发文量
242
审稿时长
9 months
期刊介绍: PAIN® is the official publication of the International Association for the Study of Pain and publishes original research on the nature,mechanisms and treatment of pain.PAIN® provides a forum for the dissemination of research in the basic and clinical sciences of multidisciplinary interest.
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