期刊文献+

苯妥英钠对大鼠牙周膜干细胞粘附于牙根面的影响 被引量:1

The effects of Phenytoin on attachment of rat periodontal ligament stem cells to root surface
下载PDF
导出
摘要 目的探索不同浓度苯妥英钠(PHT)对大鼠牙周膜干细胞(rat periodontal ligament stem cells,rPDLSCs)粘附于牙根面的影响,为PHT应用于牙周重建提供一定的实验依据,为牙周炎的治疗提供了新思路。方法提取大鼠rPDLSCs,培养并纯化。通过多项诱导分化、表面标记物鉴定后,使细胞在不同浓度PHT刺激条件下,与牙骨质片共同培养,检测粘附于牙骨质片上的细胞量并作比较。结果 20~80 mg/L浓度范围内的PHT能够促进rPDLSCs的粘附数量,40 mg/L PHT组促进粘附的效果最强。实验组与对照组有显著统计学差异。结论适合浓度的PHT可以促进rPDLSCs粘附于牙骨质表面,40 mg/L PHT组促进粘附的效果最强。 Objective To investigate the effects of PHT on attachment of rat periodontal ligament stem cells ( rP- DLSCs) to cementum chips, in order to provide a certain experimental basis for periodontal regeneration and new ideas for therapy of periodontitis. Methods To isolate rPDLSCs from SD rats, culture and purify them. To identify the cells by their apperance, induced multi-direction differentiation potential and cell surface markers. The rPDLSCs were cultured with cemen-tum chips under the action of different concentrations of PHT. Then testing and comparing the amount of cells attached on the cementum chips in different groups. Results The concentraion among 20 ?80 mg/L of PHT can increase the number of atta-ched cells. 40 mg/L PHT can promote the cells attachment mostly. Conclusion A proper concentration of PHT may pro-mote rPDLSCs to attach to cementum chips' surface, 40 mg/L PHT may promote the cell attachment mostly.
出处 《广州医药》 2017年第5期1-5,共5页 Guangzhou Medical Journal
基金 广州市医药卫生科技项目(20171A010245)
关键词 牙周炎 牙周膜干细胞 苯妥英钠 粘附 Periondontitis Phynetoin Periodontal ligament stem cells Attachment
  • 相关文献

参考文献3

二级参考文献32

  • 1Bhatia A, Prakash S. Topical phenytoin for wound healing[J]. Dermatol Online J, 2004, 10(1):5.
  • 2Vijayasingham SM, Dykes PJ, Marks R Phenytoin has little effect on in vitro models of wound healing[J]. Br J Dermatol, 1991, 125(2) : 136-139.
  • 3Nakade O, Baylink D J, Lau KH Phenytoin at micromolar concentrations is an osteogenic agent for human-mandible-derived bone cells in vitro[J]. J Dent Res, 1995, 74(1):331-337.
  • 4Kapila YL, Lancero H, Johnson PW. The response of periodontal ligament ceils to fibronectin[J]. J Periodontol, 1998, 69(9): 1008- 1019.
  • 5Sangkaew C. Distraction osteogenesis for the treatment of post traumatic complications using a conventional external fixator. A novel technique[J]. Injury, 2005, 36(1):185-193.
  • 6Zaman KU, Sugaya T, Kato H. Effect of recombinant human platelet-derived growth factor-BB and bone morphogenetic protein- 2 application to demineralized dentin on early periodontal ligament cell response[J]. J Periodontal Res, 1999, 34(5):244-250.
  • 7Takayama S, Murakami S, Shimabukuro Y, et al. Periodontal regeneration by FGF-2(bFGF) in primate models[J]. J Dent Res, 2001, 80(12) :2075-2079.
  • 8Zettetstrom O, Andersson C, Erikason L, et al. Clinical safety of enamel matrix derivative (,EMDOGAIN) in the treatment of periodontal defects[J]. J Clin Periodontol, 1997, 24(9 Pt 2):697- 704.
  • 9Pitaru S, Pritzki A, Bar-Kana I, et al. Bone morphogenetic prorein 2 induces the expression of cementum attachment protein in human periodontal ligament clones[J]. Connect Tissue Res, 2002, 43 (2/3) : 257-264.
  • 10Anstead GM, Hart LM, Sunahara JF, et al. Phenytoin in wound healing[J]. Ann Pharmacother, 1996, 30(7/8) :768-775.

共引文献13

同被引文献3

引证文献1

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