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正畸复合弓丝上溶菌酶涂层的耐腐蚀性、细胞毒性和抗菌性能。

The corrosion resistance, cytotoxicity, and antibacterial properties of lysozyme coatings on orthodontic composite arch wires.

作者信息

He Longwen, Cui Ye, Zhang Chao

机构信息

Orthodontic Department, Stomatological Hospital, Southern Medical University Guangzhou 510280 China

出版信息

RSC Adv. 2020 May 12;10(31):18131-18137. doi: 10.1039/d0ra02988b. eCollection 2020 May 10.

Abstract

: The corrosion resistance of new orthodontic composite arch wires (CAWs), which have excellent mechanical properties in a simulated oral environment, must be improved. This study explored the susceptibility to corrosion, cytotoxicity, and antibacterial properties of lysozyme-coated CAWs. : Lysozyme coating of laser-welded CAW surfaces was prepared by liquid phase deposition. Four groups of CAW specimens were prepared: uncoated CAWs and CAWs coated with 20, 40, and 60 g L lysozyme. The surface morphology of the lysozyme coatings was characterized by atomic force microscopy. The samples were immersed in artificial saliva (AS) for 2 weeks, and corrosion morphology was then observed by scanning electron microscopy. Corrosion behavior was characterized according to weight loss and electrochemical properties. The cytotoxicity and antibacterial properties of lysozyme-coated CAWs were assessed by cell counting kit-8 assay and a live/dead bacterial test, respectively. : Surfaces in the three lysozyme coating groups exhibited film-like deposition, the thickness of which increased with the lysozyme concentration. Surface pitting and copper ion precipitation decreased with increasing lysozyme concentration in coatings. The corrosion tendency declined as the corrosion and pitting potentials decreased. The corrosion morphology and electrochemical parameters together indicated that lysozyme coatings increased corrosion resistance. The coatings also reduced cytotoxicity to L-929 cells and increased anti- ability. : Lysozyme coating of CAW surfaces by liquid phase deposition improved the corrosion resistance of CAWs. The protective coatings improved biocompatibility and endowed the CAW surfaces with certain degrees of anti- activity. Different lysozyme concentrations had different protective effects, with 40 g L maybe being the ideal lysozyme concentration for CAW coatings.

摘要

新型正畸复合弓丝(CAWs)在模拟口腔环境中具有优异的力学性能,但其耐腐蚀性仍需提高。本研究探讨了溶菌酶涂层CAWs的腐蚀敏感性、细胞毒性和抗菌性能。:通过液相沉积法在激光焊接的CAW表面制备溶菌酶涂层。制备了四组CAW样本:未涂层的CAWs以及涂覆有20、40和60 g/L溶菌酶的CAWs。用原子力显微镜表征溶菌酶涂层的表面形貌。将样本浸入人工唾液(AS)中2周,然后用扫描电子显微镜观察腐蚀形貌。根据失重和电化学性能表征腐蚀行为。分别通过细胞计数试剂盒-8法和活菌/死菌测试评估溶菌酶涂层CAWs的细胞毒性和抗菌性能。:三个溶菌酶涂层组的表面均呈现出膜状沉积,其厚度随溶菌酶浓度增加而增加。涂层中溶菌酶浓度增加,表面点蚀和铜离子沉淀减少。随着腐蚀电位和点蚀电位降低,腐蚀倾向下降。腐蚀形貌和电化学参数共同表明溶菌酶涂层提高了耐腐蚀性。涂层还降低了对L-929细胞的细胞毒性并增强了抗菌能力。:通过液相沉积法在CAW表面涂覆溶菌酶提高了CAWs的耐腐蚀性。这些保护涂层改善了生物相容性,并赋予CAW表面一定程度的抗菌活性。不同的溶菌酶浓度具有不同的保护效果,40 g/L可能是CAW涂层的理想溶菌酶浓度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d9c/9053745/77f29d16aad8/d0ra02988b-f1.jpg

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