同轴静电纺丝抗菌促骨生成氧化镁纳米粒子-聚己内酯/甲状旁腺激素-聚己内酯复合屏障膜用于引导骨再生。

Antimicrobial and Pro-Osteogenic Coaxially Electrospun Magnesium Oxide Nanoparticles-Polycaprolactone /Parathyroid Hormone-Polycaprolactone Composite Barrier Membrane for Guided Bone Regeneration.

机构信息

School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou, People's Republic of China.

Department of Oral and Maxillofacial Surgery/Pathology, Amsterdam UMC and Academic Center for Dentistry Amsterdam (ACTA), Vrije Universiteit Amsterdam, Amsterdam Movement Science, Amsterdam, Amsterdam, the Netherlands.

出版信息

Int J Nanomedicine. 2023 Jan 19;18:369-383. doi: 10.2147/IJN.S395026. eCollection 2023.

Abstract

INTRODUCTION

An antibacterial and pro-osteogenic coaxially electrospun nanofiber guided bone regeneration (GBR) membrane was fabricated to satisfy the complicated and phased requirements of GBR process.

METHODS

In this study, we synthesize dual-functional coaxially electrospun nanofiber GBR membranes by encapsulating parathyroid hormone (PTH) in the core layer and magnesium oxide nanoparticles (MgONPs) in the shell layer (MgONPs-PCL/PTH-PCL). Herein, the physicochemical characterization of MgONPs-PCL/PTH-PCL, the release rates of MgONPs and PTH, and antibacterial efficiency of the new membrane were evaluated. Furthermore, the pro-osteogenicity of the membranes was assessed both in-vitro and in-vivo.

RESULTS

We successfully fabricated a coaxially electrospun nanofiber MgONPs-PCL/PTH-PCL membrane with the majority of nanofibers (>65%) ranged from 0.40~0.60μm in diameter. MgONPs-PCL/PTH-PCL showed outstanding antibacterial potential against (E. coli) and (S. aureus) through the release of MgONPs. We also discovered that the incorporation of MgONPs significantly prolonged the release of PTH. Furthermore, both the in-vivo and in-vitro studies demonstrated that high dosage of PTH promoted pro-osteogenicity of the membrane to improve bone regeneration efficacy with the presence of MgONPs.

CONCLUSION

The new composite membrane is a promising approach to enhance bone regeneration in periodontitis or peri-implantitis patients with large-volume bone defects.

摘要

简介

为满足引导骨再生(GBR)过程复杂且分阶段的要求,我们制备了一种具有抗菌和促骨生成功能的同轴电纺纳米纤维 GBR 膜。

方法

在这项研究中,我们通过在芯层中包裹甲状旁腺激素(PTH)和在壳层中包裹氧化镁纳米颗粒(MgONPs)来合成具有双重功能的同轴电纺纳米纤维 GBR 膜(MgONPs-PCL/PTH-PCL)。在此,我们评估了 MgONPs-PCL/PTH-PCL 的理化特性、MgONPs 和 PTH 的释放率以及新膜的抗菌效率。此外,我们还评估了膜的体外和体内的促骨生成性能。

结果

我们成功制备了一种同轴电纺纳米纤维 MgONPs-PCL/PTH-PCL 膜,其大多数纳米纤维(>65%)的直径在 0.40~0.60μm 之间。MgONPs-PCL/PTH-PCL 通过释放 MgONPs 显示出对(大肠杆菌)和(金黄色葡萄球菌)的出色抗菌潜力。我们还发现,MgONPs 的掺入显著延长了 PTH 的释放。此外,体内和体外研究均表明,高剂量的 PTH 可促进膜的促骨生成作用,提高有 MgONPs 存在时的骨再生效果。

结论

新型复合膜有望提高牙周炎或种植体周围炎患者大体积骨缺损的骨再生效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b687/9869899/c5991a96f4f6/IJN-18-369-g0001.jpg

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