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BMAL1基因对骨髓间充质干细胞成骨分化的调控作用 被引量:3

BMAL1 gene regulates the osteogenic differentiation of bone marrow mesenchymal stem cells
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摘要 牙周炎是以牙周组织破坏为特征的感染性疾病,作为重要的牙周组织再生种子细胞,骨髓间充质干细胞在重构牙周组织结构和功能、促进牙周病好转乃至愈合方面具有重要作用,因此骨髓间充质干细胞的特性尤其是其成骨分化的相关调控机制是目前研究热点之一。BMAL1基因与骨髓间充质干细胞成骨分化等诸多生理行为的调控关系密切,有望成为牙周疾病新的治疗靶点。本文对BMAL1基因的特性以及调控骨髓间充质干细胞成骨分化的机制作一综述。 Periodontitis is a chronic infective disease characterized as the destruction of the supporting tissues of the teeth. Bone marrow mesenchymal stem cells, which are ideal adult stem cells for the regeneration of supporting tissues, may play important roles in restoring the structure and function of the periodontium and in promoting the treatment of periodontal disease. As a consequence, the characteristics, especially osteogenic differentiation mechanism, of these stem cells have been extensively investigated. The regulation of the physiological behavior of these stem cells is associated with BMAL1 gene. This gene is a potential treatment target for periodontal disease, although the specific mechanism remains inconclusive. This study aimed to describe the characteristics of BMAL1 gene and its ability to regulate the osteogenic differentiation of stem cells.
出处 《华西口腔医学杂志》 CAS CSCD 北大核心 2016年第3期312-316,共5页 West China Journal of Stomatology
基金 国家自然科学基金(81470754)~~
关键词 BMAL1基因 骨髓间充质干细胞 成骨分化 牙周炎 BMAL1 gene bone marrow mesenchymal stem cells osteogenic differentiation periodontitis
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  • 1Zhou S, Greenberger JS, Epperly MW, et al. Age-related intrinsic changes in human bone-marrow-derived mesen- chymal stem cells and their differentiation to osteoblasts[J]. Aging Cell, 2008, 7(3):335,343.
  • 2Bouvet-Gerbettaz S, Boukhechba F, Balaguer T, et al. Adap- tive immune response inhibits ectopic mature bone forma- tion induced by BMSCs/BCP/plasma composite in immune- competent mice[J]. Tissue Eng Part A, 2014, 20(21/22): 2950-2962.
  • 3Hirai T, Tanaka K, Togari A. ]3-adrenergic receptor signaling regulates Ptgs2 by driving circadian gene expression in os- teoblasts[J]. J Cell Sci, 2014, 127(Pt 17):3711-3719.
  • 4Karring T, Nyman S, Gottlow J, et al. Development of the biological concept of guided tissue regeneration--animal and human studies[J]. Periodontol 2000, 1993, 1:26-35.
  • 5Auletta JJ, Deans RJ, Bartholomew AM. Emerging roles for multipotent, bone marrow-derived stromal cells in host defense[J]. Blood, 2012, 119(8):1801-1809.
  • 6Zhang J, Li ZG, Si YM, et al. The difference on the osteo- genie differentiation between periodontal ligament stem cells and bone marrow mesenchymal stem cells under inflam- matory microenviroments[J]. Differentiation, 2014, 88(4/ 5):97-105.
  • 7Panda S, Antoch MP, Miller BH; et al. Coordinated trans- cription of key pathways in the mouse by the circadian clock [J]. Cell, 2002, 109(3):307-320.
  • 8Fu L, Lee CC. The circadian clock: pacemaker and tumour suppressor[J]. Nat Rev Cancer, 2003, 3(5):330-361.
  • 9左晓虹,蔡彦宁,李宁,刘姝,张燕莉,陈彪.小鼠纹状体时钟基因表达的生后发育[J].中华行为医学与脑科学杂志,2009,18(5):385-387. 被引量:4
  • 10Fu L, Pelicano H, Liu J, et al. The circadian gene Period2 plays an important role in tumor suppression and DNA da- mage response in vivo[J]. Cell, 2002, 111(1):41-50.

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