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克林霉素修饰的三联抗生素纳米纤维:一种无染色的抗菌根管内药物输送系统。

Clindamycin-modified Triple Antibiotic Nanofibers: A Stain-free Antimicrobial Intracanal Drug Delivery System.

机构信息

Department of Biomedical and Applied Sciences, Indiana University School of Dentistry, Indianapolis, Indiana.

Department of Endodontics, Indiana University School of Dentistry, Indianapolis, Indiana.

出版信息

J Endod. 2018 Jan;44(1):155-162. doi: 10.1016/j.joen.2017.08.024. Epub 2017 Oct 20.

Abstract

INTRODUCTION

A biocompatible strategy to promote bacterial eradication within the root canal system after pulpal necrosis of immature permanent teeth is critical to the success of regenerative endodontic procedures. This study sought to synthesize clindamycin-modified triple antibiotic (metronidazole, ciprofloxacin, and clindamycin [CLIN]) polymer (polydioxanone [PDS]) nanofibers and determine in vitro their antimicrobial properties, cell compatibility, and dentin discoloration.

METHODS

CLIN-only and triple antibiotic CLIN-modified (CLIN-m, minocycline-free) nanofibers were processed via electrospinning. Scanning electron microscopy, Fourier-transform infrared spectroscopy (FTIR), and tensile testing were performed to investigate fiber morphology, antibiotic incorporation, and mechanical strength, respectively. Antimicrobial properties of CLIN-only and CLIN-m nanofibers were assessed against several bacterial species by direct nanofiber/bacteria contact and over time based on aliquot collection up to 21 days. Cytocompatibility was measured against human dental pulp stem cells. Dentin discoloration upon nanofiber exposure was qualitatively recorded over time. The data were statistically analyzed (P < .05).

RESULTS

The mean fiber diameter of CLIN-containing nanofibers ranged between 352 ± 128 nm and 349 ± 128 nm and was significantly smaller than PDS fibers. FTIR analysis confirmed the presence of antibiotics in the nanofibers. Hydrated CLIN-m nanofibers showed similar tensile strength to antibiotic-free (PDS) nanofibers. All CLIN-containing nanofibers and aliquots demonstrated pronounced antimicrobial activity against all bacteria. Antibiotic-containing aliquots led to a slight reduction in dental pulp stem cell viability but were not considered toxic. No visible dentin discoloration upon CLIN-containing nanofiber exposure was observed.

CONCLUSIONS

Collectively, based on the remarkable antimicrobial effects, cell-friendly, and stain-free properties, our data suggest that CLIN-m triple antibiotic nanofibers might be a viable alternative to minocycline-based antibiotic pastes.

摘要

简介

对于未成熟恒牙牙髓坏死的再生牙髓治疗程序的成功而言,在根管系统中促进细菌清除的生物相容性策略至关重要。本研究旨在合成克林霉素修饰的三联抗生素(甲硝唑、环丙沙星和克林霉素[CLIN])聚合物(聚二恶烷酮[PDS])纳米纤维,并确定其体外抗菌性能、细胞相容性和牙本质变色。

方法

通过静电纺丝制备 CLIN 单一药物和三联抗生素 CLIN 修饰(无米诺环素的 CLIN-m)纳米纤维。扫描电子显微镜、傅里叶变换红外光谱(FTIR)和拉伸试验分别用于研究纤维形态、抗生素掺入和机械强度。通过直接纳米纤维/细菌接触和长达 21 天的间隔收集等分试样,评估 CLIN 单一药物和 CLIN-m 纳米纤维对几种细菌的抗菌性能。测量对人牙髓干细胞的细胞相容性。随时间记录纳米纤维暴露后牙本质变色的情况。对数据进行了统计学分析(P <.05)。

结果

含 CLIN 的纳米纤维的平均纤维直径为 352 ± 128nm 至 349 ± 128nm,明显小于 PDS 纤维。FTIR 分析证实了纳米纤维中存在抗生素。水合的 CLIN-m 纳米纤维的拉伸强度与无抗生素(PDS)纳米纤维相似。所有含 CLIN 的纳米纤维和等分试样对所有细菌均表现出明显的抗菌活性。含抗生素的等分试样导致牙髓干细胞活力略有下降,但不被认为具有毒性。在暴露于含 CLIN 的纳米纤维时,未见牙本质明显变色。

结论

综合来看,基于显著的抗菌效果、对细胞友好和无染色特性,我们的数据表明,CLIN-m 三联抗生素纳米纤维可能是替代米诺环素抗生素糊剂的可行选择。

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