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载银和载铜纳米药物的玻璃离子水门汀抗龋微生物的比较及先进抗菌策略

Comparison and Advanced Antimicrobial Strategies of Silver and Copper Nanodrug-Loaded Glass Ionomer Cement against Dental Caries Microbes.

作者信息

Ashour Amal Adnan, Felemban Mohammed Fareed, Felemban Nayef H, Enan Enas T, Basha Sakeenabi, Hassan Mohamed M, Gad El-Rab Sanaa M F

机构信息

Department of Oral and Maxillofacial Surgery and Diagnostic Sciences, Oral Pathology Division, Faculty of Dentistry, Taif University, Taif 26571, Saudi Arabia.

Department of Oral and Maxillofacial Surgery and Diagnostic Sciences, Periodontics Division, Faculty of Dentistry, Taif University, Taif 26571, Saudi Arabia.

出版信息

Antibiotics (Basel). 2022 Jun 2;11(6):756. doi: 10.3390/antibiotics11060756.

Abstract

Caries lesions during cement repairs are a severe issue, and developing a unique antimicrobial restorative biomaterial can help to reduce necrotic lesion recurrence. As a result, extract was used to biosynthesize copper nanoparticles (TVE-CuNPs) exhibiting different characteristics (TVE). Along with TVE-CuNPs, commercial silver nanoparticles (AgNPs) and metronidazole were combined with glass ionomer cement (GIC) to test its antibacterial efficacy and compressive strength. FTIR, XRD, UV-Vis spectrophotometry, and TEM were applied to characterize the TVE-CuNPs. Additionally, AgNPs and TVE-CuNPs were also combined with metronidazole and GIC. The modified GIC samples were divided into six groups, where groups 1 and 2 included conventional GIC and GIC with 1.5% metromidazole, respectively; group 3 had GIC with 0.5% TVE-CuNPs, while group 4 had 0.5% TVE-CuNPs with metronidazole in 1.5%; group 5 had GIC with 0.5% AgNPs, and group 6 had 0.5% AgNPs with metronidazole at 1.5%. An antimicrobial test was performed against () and () by the disc diffusion method and the modified direct contact test (MDCT). GIC groups 4 and 6 demonstrated a greater antimicrobial efficiency against the two tested strains than the other groups. In GIC groups 4 and 6, the combination of GIC with two antimicrobial agents, 1.5% metronidazole and 0.5% TVE-CuNPs or AgNPs, enhanced the antimicrobial efficiency when compared to that of the other groups with or without a single agent. GIC group specimens combined with nanosilver and nanocopper had similar mean compressive strengths when compared to the other GIC groups. Finally, the better antimicrobial efficacy of GIC boosted by metronidazole and the tested nanoparticles against the tested strains may be relevant for the future creation of more efficient and modified restorations to reduce dental caries lesions.

摘要

粘结修复过程中的龋损是一个严重问题,开发一种独特的抗菌修复生物材料有助于减少坏死性病变的复发。因此,利用提取物生物合成了具有不同特性的铜纳米颗粒(TVE-CuNPs)。将TVE-CuNPs与市售银纳米颗粒(AgNPs)和甲硝唑与玻璃离子水门汀(GIC)相结合,测试其抗菌效果和抗压强度。采用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、紫外可见分光光度法和透射电子显微镜(TEM)对TVE-CuNPs进行表征。此外,AgNPs和TVE-CuNPs也与甲硝唑和GIC相结合。将改性GIC样品分为六组,其中第1组和第2组分别为传统GIC和含1.5%甲硝唑的GIC;第3组为含0.5%TVE-CuNPs的GIC,第4组为含0.5%TVE-CuNPs和1.5%甲硝唑的GIC;第5组为含0.5%AgNPs的GIC,第6组为含0.5%AgNPs和1.5%甲硝唑的GIC。采用纸片扩散法和改良直接接触试验(MDCT)对()和()进行抗菌试验。GIC第4组和第6组对两种受试菌株的抗菌效率高于其他组。在GIC第4组和第6组中,GIC与两种抗菌剂(1.5%甲硝唑和0.5%TVE-CuNPs或AgNPs)的组合,与其他含或不含单一抗菌剂的组相比,提高了抗菌效率。与其他GIC组相比,纳米银和纳米铜复合的GIC组样品的平均抗压强度相似。最后,甲硝唑和受试纳米颗粒增强的GIC对受试菌株的更好抗菌效果可能与未来创建更高效的改性修复体以减少龋齿病变有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1d8/9220143/f2183a098fbf/antibiotics-11-00756-sch001.jpg

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