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NF-κB 的激活持续到肌腱愈合的重塑阶段,并促进肌成纤维细胞的存活。

NF-κB activation persists into the remodeling phase of tendon healing and promotes myofibroblast survival.

机构信息

Center for Musculoskeletal Research, Department of Orthopaedics and Rehabilitation, University of Rochester Medical Center, Rochester, NY 14642, USA.

Department of Biomedical Engineering, University of Rochester, Rochester, NY 14627, USA.

出版信息

Sci Signal. 2020 Nov 17;13(658):eabb7209. doi: 10.1126/scisignal.abb7209.


DOI:10.1126/scisignal.abb7209
PMID:33203721
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7717665/
Abstract

Although inflammation is necessary during the early phases of tissue repair, persistent inflammation contributes to fibrosis. Acute tendon injuries often heal through a fibrotic mechanism, which impedes regeneration and functional recovery. Because inflammation mediated by nuclear factor κB (NF-κB) signaling is implicated in this process, we examined the spatial, temporal, and cell type-specific activation profile of canonical NF-κB signaling during tendon healing. NF-κB signaling was maintained through all phases of tendon healing in mice, including the remodeling phase, and tenocytes and myofibroblasts from the () lineage were the predominant populations that retained NF-κB activation into the late stages of repair. We confirmed persistent NF-κB activation in myofibroblasts in human tendon scar tissue. Deleting the canonical NF-κB kinase, IKKβ, in -lineage cells in mice increased apoptosis and the deposition of the matrix protein periostin during the late stages of tendon repair, suggesting that persistent NF-κB signaling may facilitate myofibroblast survival and fibrotic progression. Consistent with this, myofibroblasts in human tendon scar samples displayed enhanced prosurvival signaling compared to control tissue. Together, these data suggest that NF-κB may contribute to fibrotic tendon healing through both inflammation-dependent and inflammation-independent functions, such as NF-κB-mediated cell survival.

摘要

尽管在组织修复的早期阶段炎症是必要的,但持续的炎症会导致纤维化。急性肌腱损伤通常通过纤维化机制愈合,这会阻碍再生和功能恢复。由于核因子 κB(NF-κB)信号介导的炎症与此过程有关,因此我们研究了 NF-κB 信号在肌腱愈合过程中的空间、时间和细胞类型特异性激活谱。在包括重塑阶段在内的整个肌腱愈合过程中,NF-κB 信号在小鼠中得以维持,肌腱细胞和成肌纤维细胞是保留 NF-κB 激活至修复后期的主要细胞群体。我们在人肌腱瘢痕组织中的成肌纤维细胞中证实了持续的 NF-κB 激活。在小鼠中,在 -细胞谱系中删除经典 NF-κB 激酶 IKKβ 会增加晚期肌腱修复过程中的细胞凋亡和基质蛋白骨粘连蛋白的沉积,表明持续的 NF-κB 信号可能促进成肌纤维细胞的存活和纤维化进展。与此一致的是,与对照组织相比,人肌腱瘢痕样本中的成肌纤维细胞显示出增强的生存信号。总之,这些数据表明,NF-κB 可能通过炎症依赖和非依赖的功能(例如 NF-κB 介导的细胞存活)促进纤维性肌腱愈合。

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NF-κB activation persists into the remodeling phase of tendon healing and promotes myofibroblast survival.

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[4]
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[5]
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[6]
PI3K-Akt signalling regulates Scx-lineage tenocytes and Tppp3-lineage paratenon sheath cells in neonatal tendon regeneration.

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[7]
Achilles tendinopathy.

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[8]
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[9]
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[10]
[Study on anti-adhesion effect and mechanism of dynamic and static stress stimulation during early healing process of rat Achilles tendon injury].

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本文引用的文献

[1]
Multi-omic single cell analysis resolves novel stromal cell populations in healthy and diseased human tendon.

Sci Rep. 2020-9-3

[2]
Evasion of apoptosis by myofibroblasts: a hallmark of fibrotic diseases.

Nat Rev Rheumatol. 2019-12-2

[3]
Tenophages: a novel macrophage-like tendon cell population expressing CX3CL1 and CX3CR1.

Dis Model Mech. 2019-12-16

[4]
Requirement for scleraxis in the recruitment of mesenchymal progenitors during embryonic tendon elongation.

Development. 2019-10-4

[5]
Transcriptomic Analysis of Cellular Pathways in Healing Flexor Tendons of Plasminogen Activator Inhibitor 1 (PAI-1/Serpine1) Null Mice.

J Orthop Res. 2019-9-1

[6]
Deletion of NFKB1 enhances canonical NF-κB signaling and increases macrophage and myofibroblast content during tendon healing.

Sci Rep. 2019-7-29

[7]
Cell non-autonomous functions of S100a4 drive fibrotic tendon healing.

Elife. 2019-5-24

[8]
Scleraxis lineage cells contribute to organized bridging tissue during tendon healing and identify a subpopulation of resident tendon cells.

FASEB J. 2019-4-5

[9]
Targeting the NF-κB signaling pathway in chronic tendon disease.

Sci Transl Med. 2019-2-27

[10]
The cellular basis of fibrotic tendon healing: challenges and opportunities.

Transl Res. 2019-2-8

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