Investigation on the antimicrobial activity of chitosan-modified zinc oxide-eugenol cement.

Biomaterial investigations in dentistry Pub Date : 2019-12-12 eCollection Date: 2019-01-01 DOI:10.1080/26415275.2019.1697621
Inger Sofie Dragland, Hanne Wellendorf, Hilde Kopperud, Ida Stenhagen, Håkon Valen
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引用次数: 14

Abstract

Introduction: Coronal leakage and reinfection after root canal therapy is an important reason for endodontic failure. Zinc oxide-eugenol (ZOE) -based materials are often used as a coronal seal to prevent secondary infection. The antibacterial effect of ZOE cement is mainly due to leaching of eugenol from the material, but the effect is reported to decrease over time. Chitosan (CH) is a natural polymer with antibacterial properties. The aim of the study was to investigate if incorporation of (CH) and chitosan oligosaccharide (COS) in a ZOE-based material improved both the immediate and sustained antibacterial properties of the material. Methods: Enterococcus faecalis, Streptococcus mutans and Staphylococcus epidermidis was used to investigate the antibacterial effect of the materials in a modified direct contact test (MDCT) immediately after setting and after storage for 18 weeks in water. Leaching per week of eugenol from the materials was quantified using gas chromatography-mass spectrometry (GC-MS). The effect of eugenol on growth of bacteria was measured by reading of optical density at 600 nm after 18 h growth. Mechanical properties were investigated in a compressive strength test according to ISO 3107. Results: The present study showed that a ZOE-based material has antibacterial activity both as freshly prepared and after immersion in water for 18 weeks. Incorporating CH or COS may increase the antibacterial effect depending on the bacterial species investigated. The amount of leached eugenol did not differ between materials or during or after storage. S. mutans showed the highest susceptibility to eugenol of the three species investigated. Modification of the materials with CH or COS reduced the compressive strength, but the requirements in ISO 3017 were still met.

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壳聚糖改性氧化锌-丁香酚水泥的抗菌性能研究。
根管治疗后冠状渗漏和再感染是导致根管治疗失败的重要原因。氧化锌-丁香酚(ZOE)基材料常被用作冠状密封,以防止继发感染。ZOE水泥的抗菌作用主要是由于从材料中浸出了丁香酚,但据报道,随着时间的推移,效果会降低。壳聚糖(CH)是一种具有抗菌性能的天然高分子材料。本研究的目的是研究(CH)和壳寡糖(COS)的掺入是否提高了zoe基材料的即时和持续抗菌性能。方法:采用改良直接接触试验(改良直接接触试验,MDCT)检测材料凝固后即刻和水中保存18周后的粪肠球菌、变形链球菌和表皮葡萄球菌的抑菌效果。采用气相色谱-质谱联用(GC-MS)定量分析了每周从材料中浸出的丁香酚。生长18 h后,通过600 nm光密度读数测定丁香酚对细菌生长的影响。根据ISO 3107进行抗压强度试验,考察其力学性能。结果:本研究表明,zoi基材料在新鲜制备和水中浸泡18周后均具有抗菌活性。根据所调查的细菌种类,加入CH或COS可能会增加抗菌效果。丁香酚的浸出量在不同的材料之间、储存期间和储存后没有差异。变形链球菌对丁香酚的敏感性最高。用CH或COS改性的材料降低了抗压强度,但仍然满足ISO 3017的要求。
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Recipient of Biomaterial Investigations in Dentistry's Young Author Award 2023. Reliability and agreement of root length measurements during orthodontic treatment in images from different CBCT machines using multiplanar reconstruction. The sealing ability of different endodontic biomaterials as an intra-orifice barrier: evaluation with high-performance liquid chromatography. An in vitro study on the influence of laser-activated irrigation on infiltration and leakage of a dual curing-resin cement as an endodontic sealer Accumulation and removal of Streptococcus mutans biofilm on enamel and root surfaces in vitro
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