期刊文献+

microRNA在间充质干细胞成骨分化中的调节作用 被引量:6

下载PDF
导出
摘要 间充质干细胞分化为成骨细胞的过程中受到基因表达的精确调控。近年来诸多研究表明microRNA(miRNA)在间充质干细胞的成骨分化过程中发挥着重要的调节作用。miRNA是一类小分子非编码RNA,主要通过与靶基因mRNA的碱基配对导致其降解或翻译阻遏,对基因进行转录后的调控。本文就不同miRNA分子对间充质干细胞成骨分化过程的双向调节功能及环境因素对其影响等方面做一综述。
出处 《中华老年口腔医学杂志》 2012年第1期40-44,共5页 Chinese Journal of Geriatric Dentistry
基金 全军医学科技"十二五"重大项目(编号:AWS11J012-04)
  • 相关文献

参考文献10

  • 1Cheng AM, Byrom MW, Shelton J, Ford LP. Antisense inhibition ol human miRNAs and indications for an involvement of miRNA in cell growth and apoptosis [J]. Nucleic Acids Res, 2005,33(4): 1290-1297.
  • 2Oskowitz AZ, Lu J, Penfomis P, Ylostalo J, McBride J, Flemington EK, et al. Human multipotent stromal cells from bone marrow and microRNA: regulation of differentiation and leukemia inhibitory factor expression[J]. Proc Natl Acad Sci U S A,2008,105(47): 18372-18377.
  • 3Itoh T, Nozawa Y, Akao Y. MicroRNA-141 and -200a are involved in bone morphogenetic protein-2-induced mouse pre-osteoblast differentiation by targeting distal-less homeobox 5[J]. J Biol them, 2009,284(29). 19272-19279.
  • 4李裕明,邓波,李丽华,邓丽萍,高海波,陈璐璐.葡萄糖、胰岛素对大鼠骨髓间充质干细胞向成骨细胞分化的影响[J].中华医学杂志,2009,89(36):2583-2585. 被引量:9
  • 5Tome M, Lopez-Romero P, Albo C, Sepulveda JC, Ferna- ndez-Gutierrez B, Dopazo A, et al. miR-335 orchestrates cell proliferation, migration and differentiation in human mesenchymal stem cells[J]. Cell Death Differ, 2011, 18: 98~-995.
  • 6Gao J, Yang T, Han J, Yan K, Qiu X, Zhou Y, et al. Mic- roRNA expression during osteogenic differ entiation of human multipotent mesenchymal stromal cells from bone marrow[J]. J Cell Biochem, 2011,112(7). 1844-1856.
  • 7Poy MN, Eliasson L, Krutzfeldt J, Kuwajiina S, Ma X, Macdonald PE, et al. A pancreatic islet-specific microRNA regulates insulin secretion [J]. Nature, 2004,432(7014): 226-230.
  • 8Schoolmeesters A, Eklund T, Leake D, Vermeulen A, Smith Q, Force Aldred S, et al. Functional profiling reveals critical role for miRNA in differentiation of human mesenchymal stem celNJ]. PLoS One, 2009, 4(5):e5605.
  • 9Johnston R J, Hobert O. A InicroRNA controUing left/right neuronal asymmetry in Caenorhabditis elegans[J]. Nature, 2003,426(6968): 845-849.
  • 10吴璇,刘洪臣,马卫东,鄂玲玲,王东胜.糖尿病大鼠下颌骨成骨细胞体外特性的研究[J].中华老年口腔医学杂志,2008,6(2):97-100. 被引量:14

二级参考文献21

  • 1刘洪臣.人工种植牙全身给药系统的设计[J].口腔颌面修复学杂志,2006,7(4):291-292. 被引量:53
  • 2Komori T. Regulation of skeletal development by the RUNX family of transcription factors. J Cell Biochem, 2005, 95 : 445-453.
  • 3Lee KS, Kim HJ, Li QL, et al. Runx2 is a common target of transformation growth factor β1 and bone morphogenetic protein 2, and cooperation between Runx2 and Smads5 induces osteoblast- specific gene expression in the pluripotent mesenchymal precursor cell line C1 C12. Mol Cell Biol,2000,20:8783-8792.
  • 4Pei Y. Expression of core binding factor alphal up-regulated by IGF2I, GM2CSF, and EGF through MAPK pathway in MC3T32E1 and C2C12 ceils. Acta Pharmacol Sin,2003,24:975-978.
  • 5Stolzing A,Coleman N, Scutt A. Glucose-induced rephcative senescence in mesenchymal stem cells. Rejuvenation Res ,2006,9:31-35.
  • 6Iu MF, Kaji H, Naito J,et al. Low-dose parathyroid hormone and estrogen reverse alkaline phosphatase activity suppressed by dexamethasone in mouse osteoblastic cells. J Bone Miner Metab, 2005, 23:450-455.
  • 7Brixen K, Kassem M, Nielsen HK, et al. Short-termtreatment with growth hormone stimulates osteoblastic and osteoclastic activity in osteopenic postmenopausal women: a dose response study. J Bone Miner Res, 1995,10 : 1865-1874.
  • 8Lee KS, Hong SH, Bae SC. Both the Smad and p38 MAPK pathways play a crucial role in Runx 2 expression following induction by transforming growth factor-beta and bone morphogenetie protein. Oncogene,2002,21:7156-7163.
  • 9Furtado LM,Somwar R, Sweeney G, et al. Activation of the glucose transporter GLUT4 by INsulin. Biochem Cell Biol,2002,80:569-578.
  • 10[1]Graves D.T.,Liu R.,Alikhani M.et al.Diabetes-enhanced Inflammation and Apoptosis-Impact on Pefiodontal Pathology[J].J Dent Res,2006,85(1):15-21

共引文献21

同被引文献138

  • 1Gronthos S, Gronthos M, Brahim J, et al. Postnatal human dental pulp stem cells (DPSCs) in vivo[J]. Natl Acad Sci USA, 2000, 97(25): 13625-13630.
  • 2Gronthos S, Brahim J, Li W, et al. Stem cells properties of human dental pulp stem cells[J]. Dent Res, 2002, 81 (8): 531-535.
  • 3Iohara K, Zheng L, Ito M, et al. Side population cells isolat- ed from porcine dental pulp tissue with self-renewal and muttipotency for dentinogenesis, chondrogenesis, adipogen- esis, and neurogenesis[J]. Stem Cells, 2006, 24(11): 2493- 2503.
  • 4Stokowski A, Shi S, Sun T, et al. EphB/ephrin-B interac- tion mediates adult stem cell attachment, spreading, and mi- gration: implications for dental tissue repair[J]. Stem Cells, 2007, 25(1): 156-164.
  • 5Duailibi MT, Duailibi SE, Duailibi Nero EF, et al. Tooth tissue engineering: optimal dental stem cell harvest based on tooth development[J]. ArifOrgans, 2011, 35(7): E129-135.
  • 6Laino G, D ' Aquino R, Graziano A, et al. A new population of human adult dental pulp stem cells: a useful source ol liv- ing autologous fibrous bone tissue [J]. J Bone Miner Res, 2005, 20:1394-1402.
  • 7Scadden DT. The stem-cell niche as an entity of action[J]. Nature, 2006, 441(7097): 1075-1079.
  • 8Wilson A, Trumpp A. Bone-marrow haematopoietic-stem cellniches[J]. Nature Reviews, 2006, 6(2): 93-106.
  • 9Bianco P, Riminucci M, Gronthos S, et al. Bone marrow stromal stem cells: Nature, biology, and potential applica- tionsapplications[J]. Stem Cells, 2001, 19(3): 180-192.
  • 10Kaneko T, Arayatrakoollikit U, Yamanaka Y, et al. Im- munohistochemical and gene expression analysis of stem-cell-associated markers in rat dental pulp[J]. Cell Tis- sueRes, 2013, 351(3): 425-432.

引证文献6

二级引证文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部