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   assessment of cytotoxicity and odontogenic/osteogenic differentiation potential of nano-dentine cement against stem cells from apical papilla  
   
نویسنده saberi eshagh ali ,farhad mollashahi narges ,ejeian fatemeh ,nematollahi marzieh ,shahraki omolbanin ,pirhaji arezou ,nasr esfahani mohammad hossein
منبع cell journal (yakhteh) - 2022 - دوره : 24 - شماره : 11 - صفحه:637 -646
چکیده    Objective: assessment of the cytotoxicity of novel calcium silicate-based cement is imperative in endodontics. this experimental study aimed to assess the cytotoxicity and odontogenic/osteogenic differentiation potential of a new calcium silicate/pectin cement called nano-dentine against stem cells from the apical papilla (scaps). materials and methods: in this experimental study, the cement powder was synthesized by the sol-gel technique. zirconium oxide was added as opacifier and pectin, a plant-based polymer, and calcium chloride as the liquid to prepare the nano-based dental cement. thirty-six root canal dentin blocks of human extracted single-canal premolars with 2 mm height, flared with #1, 2 and 3 gates-glidden drills were used to prepare the cement specimens. the cement, namely mineral trioxide aggregate (mta), biodentine, and the nano-dentine were mixed according to the manufacturers’ instructions and applied to the roots of canal dentin blocks. the cytotoxicity and odontogenic/osteogenic potential of the cement were evaluated by using scaps. results: scaps were characterized by the expression of routine mesenchymal cell markers and differentiation potential to adipocytes, osteoblasts, and chondrocytes. cement displayed no significant differences in cytotoxicity or calcified nodules formation. gene expression analysis showed that all three types of cement induced significant downregulation of cola1; however, the new cement induced significant up-regulation of runx2 and spp1 compared to the control group and mta. the new cement also induced significant up-regulation of tgfb1 and inducible nitric oxide synthase (inos) compared with biodentine and mta. conclusion: the new nano-dentin cement has higher odontogenic/osteogenic potential compared to biodentine and mta for differentiation of scaps to adipocytes, osteoblasts, and chondrocytes.
کلیدواژه biodentine ,calcium silicate ,mineral trioxide aggregate ,stem cells
آدرس zahedan university of medical sciences, faculty of dentistry, oral and dental diseases research center, department of endodontics, iran, zahedan university of medical sciences, faculty of dentistry, oral and dental diseases research center, department of endodontics, iran, royan institute for biotechnology, cell science research center, department of animal biotechnology, iran, royan institute for biotechnology, cell science research center, department of animal biotechnology, iran, zahedan university of medical sciences, pharmacology research center, iran, zahedan university of medical sciences, faculty of dentistry, department of endodontics, iran, royan institute for biotechnology, cell science research center, department of animal biotechnology, iran
پست الکترونیکی mh.nasr-esfahani@royaninstitute.org
 
     
   
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