Department of Pharmaceutical Sciences and Technology, Maharaja Ranjit Singh Punjab Technical University (MRSPTU), Bathinda 151001, Punjab, India.
Faculty of Pharmaceutical Sciences, The ICFAI University, Baddi, Himachal Pradesh 174103, India.
Curr Pharm Des. 2024;30(19):1490-1506. doi: 10.2174/0113816128298451240404084605.
Orthodontic pain is characterized by sensations of tingling, tooth discomfort, and intolerance. According to the oral health report, over forty percent of children and adolescents have undergone orthodontic treatment. The efficacy of orthodontic treatment involving braces can be compromised by the diverse levels of discomfort and suffering experienced by patients, leading to suboptimal treatment outcomes and reduced patient adherence. Nanotechnology has entered all areas of science and technology. This review provides an overview of nanoscience, its application in orthodontics, the underlying processes of orthodontic pain, effective treatment options, and a summary of recent research in Nano-dentistry. The uses of this technology in healthcare span a wide range, including enhanced diagnostics, biosensors, and targeted drug delivery. The reason for this is that nanomaterials possess distinct qualities that depend on their size, which can greatly enhance human well-being and contribute to better health when effectively utilized. The field of dentistry has also experienced significant advancements, particularly in the past decade, especially in the utilization of nanomaterials and technology. Over time, there has been an increase in the availability of dental nanomaterials, and a diverse array of these materials have been extensively studied for both commercial and therapeutic purposes.
正畸疼痛的特点是刺痛感、牙齿不适和不耐受。根据口腔健康报告,超过 40%的儿童和青少年接受过正畸治疗。正畸治疗中使用牙套的效果可能会因患者经历的不同程度的不适和痛苦而受到影响,导致治疗效果不理想和患者的不依从性降低。纳米技术已经进入了科学技术的各个领域。这篇综述概述了纳米科学、它在正畸学中的应用、正畸疼痛的潜在过程、有效的治疗选择以及最近在纳米牙科领域的研究综述。该技术在医疗保健中的应用范围广泛,包括增强诊断、生物传感器和靶向药物输送。原因是纳米材料具有独特的性质,这取决于它们的尺寸,当它们被有效利用时,可以极大地提高人类的幸福感,有助于改善健康。牙科领域也取得了重大进展,特别是在过去十年中,特别是在纳米材料和技术的利用方面。随着时间的推移,牙科纳米材料的可用性有所增加,并且已经广泛研究了多种这些材料,无论是出于商业目的还是治疗目的。