Towards Osteogenic Bioengineering of Dental Pulp Stem induced by Sodium fluoride on Hydroxyapatite Based Biodegradable Polymeric Scaffold
Towards Osteogenic Bioengineering of Dental Pulp Stem induced by Sodium fluoride on Hydroxyapatite Based Biodegradable Polymeric Scaffold
نویسندگان: مرضیه آقازاده , محمد سمیعی , عفت علیزاده , رویا صالحی قره ورن
کلمات کلیدی: Tissue engineering, Nanofibrous scaffold, Dental pulp stem cells, Hydroxyapatite, Sodium fluoride
نشریه: 11790 , No.8 , 18 , 2017
| نویسنده ثبت کننده مقاله |
رویا صالحی قره ورن |
| مرحله جاری مقاله |
تایید نهایی |
| دانشکده/مرکز مربوطه |
دانشکده علوم نوین پزشکی |
| کد مقاله |
64302 |
| عنوان فارسی مقاله |
Towards Osteogenic Bioengineering of Dental Pulp Stem induced by Sodium fluoride on Hydroxyapatite Based Biodegradable Polymeric Scaffold |
| عنوان لاتین مقاله |
Towards Osteogenic Bioengineering of Dental Pulp Stem induced by Sodium fluoride on Hydroxyapatite Based Biodegradable Polymeric Scaffold |
| ناشر |
6 |
| آیا مقاله از طرح تحقیقاتی و یا منتورشیپ استخراج شده است؟ |
خیر |
| عنوان نشریه (خارج از لیست فوق) |
Fibers and Polymers |
| نوع مقاله |
Original Article |
| نحوه ایندکس شدن مقاله |
ایندکس شده سطح یک – ISI - Web of Science |
| آدرس لینک مقاله/ همایش در شبکه اینترنت |
|
| Hydroxylapatite (HA) and sodium fluoride (NaF) are expected to have enhanced osteoblast proliferation and
differentiation ability and as a result gained much attention in tissue-engineering applications. The aim of this study is to
investigate the effect of NaFand/or HA addition to three-dimensional (3D) nanofibrous poly(ε-caprolactone) (PCL)/poly
lactic acide (PLA) scaffolds on Human dental pulp stem cells (DPSCs) proliferation, osteoblast differentiation and
mineralization. For this purpose, PCL and PLA homopolymers and HA nanoparticles were synthesized. Then a 3D
nanofibrous composite scaffold of PCL/PLA/HA was prepared by electrospinning method with fiber diameter in the range of
around 120-300 nm. NaF was added to media during DPSCs culturing step. Cell proliferation was assessed over a 14 days
period. Reverse transcription polymerase chain reaction (RT-PCR) was used to evaluate the osteogenic induction. The in vitro
biocompatibility tests performed with DPSCs showed excellent cell attachment (SEM), proliferation (MTT assay), and
mineralization (Alizarin Red). QRT-PCR results, demonstrated significantly superior osteogenesis markers in group of
DPSCs bioengineered in PCL/PLA/HA and PCL/PLA/HA/NaF. Simultaneous application of HA in nanofibrous PCL/PLA
scaffolds and NaF in the media showed synergistic effects on the growth and differentiation of DPSCs, and consequently
seems to be a promising scaffold for tissue regeneration in the oral cavity. |
| نام فایل |
تاریخ درج فایل |
اندازه فایل |
دانلود |
| 53-FIPO, 2017.pdf | 1397/08/01 | 4556866 | دانلود |