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用于引导牙周组织和骨再生且具有增强抗菌活性的新型基于纳米纤维内包裹可生物降解纳米颗粒的膜。

New biodegradable nanoparticles-in-nanofibers based membranes for guided periodontal tissue and bone regeneration with enhanced antibacterial activity.

作者信息

Abdelaziz Dina, Hefnawy Amr, Al-Wakeel Essam, El-Fallal Abeer, El-Sherbiny Ibrahim M

机构信息

Center for Materials Science (CMS), Zewail City of Science and Technology, 6th of October, Giza 12578, Egypt.

Department of Dental Biomaterials, Faculty of Dentistry, Mansoura University, Egypt.

出版信息

J Adv Res. 2020 Jun 20;28:51-62. doi: 10.1016/j.jare.2020.06.014. eCollection 2021 Feb.

Abstract

INTRODUCTION

Guided tissue regeneration (GTR) and guided bone regeneration (GBR) are commonly used surgical procedures for the repair of damaged periodontal tissues. These procedures include the use of a membrane as barrier to prevent soft tissue ingrowth and to create space for slowly regenerating periodontium and bone. Recent approaches involve the use of membranes/scaffolds based on resorbable materials. These materials provide the advantage of dissolving by time without the need of surgical intervention to remove the scaffolds.

OBJECTIVES

This study aimed at preparing a new series of nanofibrous scaffolds for GTR/GBR applications with enhanced mechanical properties, cell adhesion, biocompatibility and antibacterial properties.

METHODS

Electrospun nanofibrous scaffolds based on polylactic acid/cellulose acetate (PLA/CA) or poly(caprolactone) (PCL) polymers were prepared and characterized. Different concentrations of green-synthesized silver nanoparticles, AgNPs (1-2% w/v) and hydroxyapatite nanoparticles, HANPs (10-20% w/v) were incorporated into the scaffolds to enhance the antibacterial and bone regeneration activity.

RESULTS

studies showed that addition of HANPs improved the cell viability by around 50% for both types of nanofibrous scaffolds. The tensile properties were also improved through addition of 10% HANPs but deteriorated upon increasing the concentration to 20%. AgNPs significantly improved the antibacterial activity with 40 mm inhibition zone after 32 days. Additionally, the nanofibrous scaffolds showed a desirable degradation profile with losing around 40-70% of its mass in 8 weeks.

CONCLUSIONS

The obtained results show that the developed nanofibrous membranes are promising scaffolds for both GTR and GBR applications.

摘要

引言

引导组织再生(GTR)和引导骨再生(GBR)是修复受损牙周组织常用的外科手术。这些手术包括使用膜作为屏障,以防止软组织向内生长,并为缓慢再生的牙周组织和骨创造空间。最近的方法涉及使用基于可吸收材料的膜/支架。这些材料的优点是会随时间溶解,无需手术干预来移除支架。

目的

本研究旨在制备一系列用于GTR/GBR应用的新型纳米纤维支架,具有增强的机械性能、细胞粘附性、生物相容性和抗菌性能。

方法

制备并表征了基于聚乳酸/醋酸纤维素(PLA/CA)或聚己内酯(PCL)聚合物的电纺纳米纤维支架。将不同浓度的绿色合成银纳米颗粒(AgNPs,1-2% w/v)和羟基磷灰石纳米颗粒(HANPs,10-20% w/v)掺入支架中,以增强抗菌和骨再生活性。

结果

研究表明,添加HANPs可使两种类型的纳米纤维支架的细胞活力提高约50%。添加10%的HANPs可改善拉伸性能,但浓度增加到20%时性能会下降。AgNPs显著提高了抗菌活性,32天后抑菌圈为40 mm。此外,纳米纤维支架显示出理想的降解曲线,在8周内质量损失约40-70%。

结论

所得结果表明,所开发的纳米纤维膜是用于GTR和GBR应用的有前景的支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92c8/7753955/fd58095123c3/ga1.jpg

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