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本文引用的文献

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The meaning, the sense and the significance: translating the science of mesenchymal stem cells into medicine.意义、概念和重要性:将间充质干细胞科学转化为医学。
Nat Med. 2013 Jan;19(1):35-42. doi: 10.1038/nm.3028. Epub 2013 Jan 7.
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DNA damage drives accelerated bone aging via an NF-κB-dependent mechanism.DNA 损伤通过 NF-κB 依赖性机制导致加速的骨骼老化。
J Bone Miner Res. 2013 May;28(5):1214-28. doi: 10.1002/jbmr.1851.
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Histone demethylases KDM4B and KDM6B promotes osteogenic differentiation of human MSCs.组蛋白去甲基酶 KDM4B 和 KDM6B 促进人 MSC 的成骨分化。
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Lrp5 functions in bone to regulate bone mass.LRP5 在骨骼中发挥作用以调节骨量。
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Experimental blunt chest trauma impairs fracture healing in rats.实验性钝性胸部创伤可损害大鼠骨折愈合。
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Concise review: adipose-derived stromal cells for skeletal regenerative medicine.简明综述:脂肪源基质细胞在骨骼再生医学中的应用。
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Systemic inflammation and fracture healing.全身炎症与骨折愈合。
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Role of NF-κB in the skeleton.NF-κB 在骨骼中的作用。
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Stem cells and osteoporosis therapy.干细胞与骨质疏松症治疗。
Cell Stem Cell. 2010 Nov 5;7(5):553-4. doi: 10.1016/j.stem.2010.10.004.
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Mesenchymal and haematopoietic stem cells form a unique bone marrow niche.间充质和造血干细胞构成了独特的骨髓龛。
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NF-κB 通过促进β-catenin 降解来抑制间充质干细胞的成骨分化。

NF-κB inhibits osteogenic differentiation of mesenchymal stem cells by promoting β-catenin degradation.

机构信息

Division of Oral Biology and Medicine, School of Dentistry, University of California Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Jun 4;110(23):9469-74. doi: 10.1073/pnas.1300532110. Epub 2013 May 20.

DOI:10.1073/pnas.1300532110
PMID:23690607
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3677422/
Abstract

Mesenchymal stem cell (MSC)-based transplantation is a promising therapeutic approach for bone regeneration and repair. In the realm of therapeutic bone regeneration, the defect or injured tissues are frequently inflamed with an abnormal expression of inflammatory mediators. Growing evidence suggests that proinflammatory cytokines inhibit osteogenic differentiation and bone formation. Thus, for successful MSC-mediated repair, it is important to overcome the inflammation-mediated inhibition of tissue regeneration. In this study, using genetic and chemical approaches, we found that proinflammatory cytokines TNF and IL-17 stimulated IκB kinase (IKK)-NF-κB and impaired osteogenic differentiation of MSCs. In contrast, the inhibition of IKK-NF-κB significantly enhanced MSC-mediated bone formation. Mechanistically, we found that IKK-NF-κB activation promoted β-catenin ubiquitination and degradation through induction of Smurf1 and Smurf2. To translate our basic findings to potential clinic applications, we showed that the IKK small molecule inhibitor, IKKVI, enhanced osteogenic differentiation of MSCs. More importantly, the delivery of IKKVI promoted MSC-mediated craniofacial bone regeneration and repair in vivo. Considering the well established role of NF-κB in inflammation and infection, our results suggest that targeting IKK-NF-κB may have dual benefits in enhancing bone regeneration and repair and inhibiting inflammation, and this concept may also have applicability in many other tissue regeneration situations.

摘要

基于间充质干细胞(MSC)的移植是一种很有前途的治疗骨再生和修复的方法。在治疗性骨再生领域,缺陷或受损组织通常会因炎症介质的异常表达而发生炎症。越来越多的证据表明,促炎细胞因子抑制成骨分化和骨形成。因此,为了实现 MSC 介导的修复的成功,克服炎症介导的组织再生抑制非常重要。在这项研究中,我们使用遗传和化学方法发现,促炎细胞因子 TNF 和 IL-17 刺激 IκB 激酶(IKK)-NF-κB 并损害 MSC 的成骨分化。相比之下,抑制 IKK-NF-κB 显著增强了 MSC 介导的骨形成。从机制上讲,我们发现 IKK-NF-κB 的激活通过诱导 Smurf1 和 Smurf2 促进了 β-连环蛋白的泛素化和降解。为了将我们的基础发现转化为潜在的临床应用,我们表明 IKK 小分子抑制剂 IKKVI 增强了 MSC 的成骨分化。更重要的是,IKKVI 的递送促进了 MSC 介导的体内颅面骨再生和修复。考虑到 NF-κB 在炎症和感染中的既定作用,我们的结果表明,靶向 IKK-NF-κB 可能在增强骨再生和修复以及抑制炎症方面具有双重益处,这一概念在许多其他组织再生情况下也可能具有适用性。