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   Composition of mineral produced by dental mesenchymal stem cells  
   
نویسنده volponi a.a. ,gentleman e. ,fatscher r. ,pang y.w.y. ,gentleman m.m. ,sharpe p.t.
منبع journal of dental research - 2015 - دوره : 94 - شماره : 11 - صفحه:1568 -1574
چکیده    Mesenchymal stem cells isolated from different dental tissues have been described to have osteogenic/odontogenic-like differentiation capacity,but little attention has been paid to the biochemical composition of the material that each produces. here,we used raman spectroscopy to analyze the mineralized materials produced in vitro by different dental cell populations,and we compared them with the biochemical composition of native dental tissues. we show that different dental stem cell populations produce materials that differ in their mineral and matrix composition and that these differ from those of native dental tissues. in vitro,bcmp (bone chip mass population),scap (stem cells from apical papilla),and shed (stem cells from human-exfoliated deciduous teeth) cells produce a more highly mineralized matrix when compared with that produced by pdl (periodontal ligament),dpa (dental pulp adult),and gf (gingival fibroblast) cells. principal component analyses of raman spectra further demonstrated that the crystallinity and carbonate substitution environments in the material produced by each cell type varied,with dpa cells,for example,producing a more carbonate-substituted mineral and with scap,shed,and gf cells creating a less crystalline material when compared with other dental stem cells and native tissues. these variations in mineral composition reveal intrinsic differences in the various cell populations,which may in turn affect their specific clinical applications. © 2015 international & american associations for dental research.
کلیدواژه cementum; dental stem cells; dentine; mineralization; MSCs; Raman spectroscopy
آدرس craniofacial development and stem cell biology,dental institute,kings college london,guy's hospital,london, United Kingdom, craniofacial development and stem cell biology,dental institute,kings college london,guy's hospital,london, United Kingdom, materials science and engineering department,state university of new york,heavy engineering building,stony brook,ny, United States, craniofacial development and stem cell biology,dental institute,kings college london,guy's hospital,london, United Kingdom, materials science and engineering department,state university of new york,heavy engineering building,stony brook,ny, United States, craniofacial development and stem cell biology,dental institute,kings college london,guy's hospital,london, United Kingdom
 
     
   
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