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聚苯胺与脉冲电磁场协同作用对聚偏氟乙烯支架上干细胞成骨分化的影响。

Synergistic effects of polyaniline and pulsed electromagnetic field to stem cells osteogenic differentiation on polyvinylidene fluoride scaffold.

机构信息

a Cellular and Molecular Research Center, Yasuj University of Medical Sciences , Yasuj , Iran.

b Medicinal Plants Research Center, Yasuj University of Medical Sciences , Yasuj , Iran.

出版信息

Artif Cells Nanomed Biotechnol. 2019 Dec;47(1):3058-3066. doi: 10.1080/21691401.2019.1645154.

Abstract

Repairing the lost or damaged mandible is very difficult and time-consuming, so there is a great hope for tissue engineering to accelerate it. At the present study, electrospinning was applied to fabricate polyvinylidene fluoride (PVDF) and PVDF-polyaniline (PANI) composite scaffolds. In addition, extremely low frequency pulsed electromagnetic field (PEMF) was applied for treating the stem cells derived from dental pulp (DPSCs) when cultured on the nanofibrous scaffolds. Osteoinductive property of the fabricated PVDF, PVDF-PANI scaffold at the presence and absence of the PEMF was investigated by evaluating the common osteogenic differentiation markers in seeded-DPSCs on the scaffold. Results demonstrated that cell attachment, protein adsorption and cells viability were increased when PEMF was applied. In addition, ALP activity, calcium content, osteogenic genes and protein evaluations confirmed that PEMF could significantly increase osteoinductivity of the PVDF while composite with PANI. According to the results, the use of polymers with piezoelectricity and conductivity features plus PEMF exposure has a promising potential to improve the current treatment methods in bone and mandibular defects.

摘要

修复缺失或受损的下颌骨非常困难且耗时,因此人们对组织工程学寄予厚望,希望它能加速这一过程。在本研究中,应用静电纺丝技术制备聚偏二氟乙烯(PVDF)和聚偏二氟乙烯-聚苯胺(PANI)复合支架。此外,当将牙髓干细胞(DPSCs)培养在纳米纤维支架上时,应用极低频脉冲电磁场(PEMF)对其进行处理。通过评估支架上接种的 DPSCs 的常见成骨分化标志物,研究了所制备的 PVDF、PVDF-PANI 支架在存在和不存在 PEMF 时的成骨性能。结果表明,应用 PEMF 可增加细胞黏附、蛋白吸附和细胞活力。此外,碱性磷酸酶(ALP)活性、钙含量、成骨基因和蛋白评估证实,PEMF 可显著提高 PVDF 的成骨诱导能力,同时与 PANI 复合使用。根据这些结果,使用具有压电性和导电性特征的聚合物并结合 PEMF 照射,有望改善目前治疗骨和下颌骨缺损的方法。

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