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Chlorhexidine Salt-Loaded Polyurethane Orthodontic Chains: In Vitro Release and Antibacterial Activity Studies

机译:载有氯己定盐的聚氨酯正畸链:体外释放和抗菌活性研究

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摘要

The widespread use of indwelling medical devices has enormously increased the interest in materials incorporating antibiotics and antimicrobial agents as a means to prevent dangerous device-related infections. Recently, chlorhexidine-loaded polyurethane has been proposed as a material suitable for the production of devices which are able to resist microbial contamination. The aim of the present study was to characterize the in vitro release of chlorhexidine from new polymeric orthodontic chains realized with polyurethane loaded with two different chlorhexidine salts: chlorhexidine diacetate or chlorhexidine digluconate. The orthodontic chains constituted of three layers: a middle polyurethane layer loaded with chlorhexidine salt inserted between two layers of unloaded polymer. In vitro release of chlorhexidine diacetate and digluconate from orthodontic chains loaded with 10% or 20% (w/w) chlorhexidine salt was sustained for 42 days and followed Fickian diffusion. The drug diffusion through the polyurethane was found to be dependent not only on chlorhexidine loading, but also on the type of chlorhexidine salt. The antibacterial activity of 0.2% (w/w) chlorhexidine diacetate-loaded orthodontic chain was successfully tested towards clinically isolated biofilm forming ica-positive Staphylococcus epidermidis via agar diffusion test. In conclusion, the chlorhexidine salt-loaded chains could provide an innovative approach in the prevention of oral infections related to the use of orthodontic devices.
机译:留置医疗设备的广泛使用极大地提高了人们对掺入抗生素和抗菌剂作为预防危险设备相关感染的手段的兴趣。最近,已提出加载氯己定的聚氨酯作为适合于生产能够抵抗微生物污染的装置的材料。本研究的目的是表征氯己定从新的聚合物正畸链的体外释放,该链由负载有两种不同的氯己定盐:双乙酸氯己定或双葡萄糖酸氯己定的聚氨酯实现。正畸链由三层组成:聚氨酯中间层,在两层未加载的聚合物之间插入了洗必泰盐。从负载10%或20%(w / w)洗必泰盐的正畸链中体外释放洗必泰二乙酸盐和二葡萄糖酸酯持续42天,然后进行Fickian扩散。发现药物通过聚氨酯的扩散不仅取决于洗必泰的负载量,而且还取决于洗必泰盐的类型。通过琼脂扩散测试,成功地测试了0.2%(w / w)含氯己定双乙酸盐正畸链的抗菌活性对临床分离的形成ica阳性表皮葡萄球菌的生物膜的分离。总之,载有洗必泰盐的链可为预防与使用正畸器械有关的口腔感染提供一种创新方法。

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