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走向牙/骨生成生物工程的优化:辛伐他汀、氟化钠、促黑素细胞激素的体外比较

Towards optimization of odonto/osteogenic bioengineering: in vitro comparison of simvastatin, sodium fluoride, melanocyte-stimulating hormone.

作者信息

Zijah Vahid, Salehi Roya, Aghazadeh Marziyeh, Samiei Mohammad, Alizadeh Effat, Davaran Soodabeh

机构信息

Dental Department, Behbood Hospital, Tabriz, Iran.

Drug Applied Research Center and Department of Medical Nanotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

In Vitro Cell Dev Biol Anim. 2017 Jun;53(6):502-512. doi: 10.1007/s11626-017-0141-6. Epub 2017 Mar 25.

Abstract

Tissue engineering has emerged as a potential therapeutic option for dental problems in recent years. One of the policies in tissue engineering is to use both scaffolds and additive factors for enhancing cell responses. This study aims to evaluate and compare the effect of three types of biofactors on poly-caprolactone-poly-ethylene glycol-poly caprolactone (PCL-PEG-PCL) nanofibrous scaffold on human dental pulp stem cell (hDPSCs) engineering. The PCL-PEG-PCL copolymer was synthesized with ring opening polymerization method, and its nanofiber scaffold was prepared by electrospinning method. Nanofibrous scaffold-seeded hDPSCs were treated with sodium fluoride (NaF), melanocyte-stimulating hormone (MSH), or simvastatin (SIM). Non-treated nanofiber seeded cells were utilized as control. The viability, biocompatibility, adhesion, proliferation rate, morphology, osteo/odontogenic potential, and the expression of tissue-specific genes were studied. The results showed that significant higher results demonstrated significant higher adhesive behavior, viability, alizarin red activity, and dentin specific gene expression in MSH- and SIM-treated cells (p < 0.05). This study is unique; in that, it compares the effects of different treatments for optimization of dental tissue engineering.

摘要

近年来,组织工程已成为治疗牙齿问题的一种潜在选择。组织工程的策略之一是使用支架和添加因子来增强细胞反应。本研究旨在评估和比较三种生物因子对聚己内酯-聚乙二醇-聚己内酯(PCL-PEG-PCL)纳米纤维支架在人牙髓干细胞(hDPSCs)工程中的作用。采用开环聚合法合成PCL-PEG-PCL共聚物,并通过静电纺丝法制备其纳米纤维支架。用氟化钠(NaF)、促黑素(MSH)或辛伐他汀(SIM)处理接种在纳米纤维支架上的hDPSCs。未处理的接种在纳米纤维上的细胞用作对照。研究了细胞活力、生物相容性、粘附、增殖率、形态、成骨/成牙潜能以及组织特异性基因的表达。结果表明,在MSH和SIM处理的细胞中,显著更高的结果表明其具有显著更高的粘附行为、活力、茜素红活性和牙本质特异性基因表达(p<0.05)。本研究具有独特性,因为它比较了不同处理对优化牙齿组织工程的效果。

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