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首页> 外文期刊>Orthodontic Journal of Nepal >Evaluation of Antibacterial Effect of Silver Nanoparticle Coated Stainless Steel Band Material – An In vitro Study
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Evaluation of Antibacterial Effect of Silver Nanoparticle Coated Stainless Steel Band Material – An In vitro Study

机译:纳米银涂层不锈钢带材的抗菌效果评价-体外研究

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Correction: On 23 rd April 2020, corrections were made to page 16: The caption of Figure 6 (p.16) was changed FROM Figure 4: Petridishes showing Lactobacillus colonies of control samples at (a) 24 hours, (b) 48 hours and (c) 1 week TO Figure 6: Petridishes showing streptococcus mutans colonies of control group at (a) 24 hours, (b) 48 hours and (c) 1 week. The caption of Figure 7 (p.16) was changed FROM Figure 5: Petridishes showing Lactobacillus colonies of test samples at (a) 24 hours, (b) 48 hours and (c) 1 week TO Figure 7: Petridishes showing Streptococcus mutans colonies of test samples at (a) 24 hours (b) 48 hours and (c) 1 week. Abstract Introduction: Decalcification, caries, inflammatory periodontal disease are the most common iatrogenic effects of orthodontic treatment because of failure to maintain proper oral hygiene. Although various methods have been tried to minimize the incidence of white spot lesions, none of them proved to be effective. The purpose of this study was to develop a hard coating of silver nanoparticles on stainless steel band material and to evaluate the antibacterial efficacy against most common cariogenic pathogens. Materials & Method: Stainless steel band material was cut into 45 pieces of about 0.5 x 1 cm in dimension, of these 25 band material strips were coated with silver nanoparticles using thermal evaporation technology in a Vacuum coating unit (Indovision, India) at a vacuum of 4.5 ×10 ?5 millibar at 961°C for 5 minutes and remaining strips served as control. Scanning electron microscopy (SEM) study of coated band material showed a uniform deposition of silver nanoparticles of about 18.63 percent by weight. Five coated and five uncoated band material strips were utilized for each test to evaluate the antibacterial effect of the coated band material against Streptococcus mutans, Lactobacillus acidophilus using zone of inhibition and direct contact test. In zone of inhibition test, the bacterial growth inhibition zone was measured after a period of 24-48 hours, where as in direct contact test, the number of bacterial colonies were counted after 24 hours, 48 hours and 1 week. Five coated band materials were immersed separately in a container having 5 ml of artificial saliva and the amount of silver nanoparticles released from coated samples was evaluated after 24 hrs, 48 hrs, and 1 week using atomic absorption spectrophotometer. Result: A stable uniform coating of silver nanoparticles on the band material was obtained by physical vapor deposition. The coated band material showed a potent antibacterial activity against L.acidophilus and S.mutans. The maximum amount of silver nanoparticles released from the silver nanoparticle coated band material was 0.0236 ± 0.0067 ppm, which is below the maximum permissible level set by WHO [0.1 mg /l], proving it as biocompatible. Conclusion: Silver nanoparticle coating on orthodontic band surfaces can provide suitable antimicrobial activity during active orthodontic treatment.
机译:纠正:2020年4月23日,对第16页进行了纠正:图6的标题(第16页)从图4更改:(a)24小时,(b)48小时显示对照样品的乳杆菌菌落的矮小孢子虫和(c)1周TO图6:在(a)24小时,(b)48小时和(c)1周时,对照组显示变异链球菌菌落的花序排列。图7(p.16)的标题从图5更改:在(a)24小时,(b)48小时和(c)1周时显示测试样品的乳杆菌菌落的培养皿到图7:显示变形链球菌菌落的培养皿(a)24小时(b)48小时和(c)1周。摘要简介:由于无法维持适当的口腔卫生,脱钙,龋齿,炎性牙周疾病是正畸治疗的最常见医源性作用。尽管已经尝试了各种方法来最小化白斑病变的发生,但是没有一种方法被证明是有效的。这项研究的目的是在不锈钢带材上开发银纳米颗粒的硬涂层,并评估其对大多数常见的致龋性病原体的抗菌效果。材料和方法:将不锈钢带材切成45块,尺寸约为0.5 x 1厘米,在25个带材中,在真空镀膜装置(印度Indovision)中采用热蒸发技术,用银纳米颗粒镀银在961℃下,以4.5×10 5毫巴的压力处理5分钟,其余的条用作对照。涂覆带材料的扫描电子显微镜(SEM)研究显示出约18.63重量%的银纳米颗粒的均匀沉积。每个测试使用五个带涂层的带状材料带和五个未带涂层的带状材料带,使用抑制区和直接接触测试来评估带涂层的带状材料对变形链球菌,嗜酸乳杆菌的抗菌作用。在抑制试验区中,在24-48小时后测量细菌生长抑制区,与直接接触试验中一样,在24小时,48小时和1周后计数细菌菌落的数量。将五种涂覆的条带材料分别浸入具有5 ml人造唾液的容器中,并在24小时,48小时和1周后使用原子吸收分光光度计评估从涂覆的样品释放的银纳米颗粒的量。结果:通过物理气相沉积获得了银纳米颗粒在带状材料上的稳定均匀涂层。涂覆的条带材料显示出对嗜酸乳杆菌和变形链球菌的有效抗菌活性。从涂覆有银纳米颗粒的带状材料释放的银纳米颗粒的最大量为0.0236±0.0067 ppm,低于WHO设定的最大允许水平[0.1 mg / l],证明其具有生物相容性。结论:在正畸带表面上的银纳米颗粒涂层可在主动正畸治疗期间提供合适的抗菌活性。

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