New Face and Vision of Dentistry Through Revolutionized Technique-An Era of Nanotechnology

Navneet Kaur
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Abstract

With the growing demand for advances in diagnostic and treatment modalities, nanotechnology is viewed as an innovative and sustainable research topic. This technology, which deals with matter in nano-dimensions, has broadened our views of poorly understood health problems and opened up a new diagnostic and treatment possibilities. Dental Researchers and scientists have studied the potential of nanoparticles in existing therapeutic modalities with moderate success. Nanotechnology is very diverse, ranging from extensions of conventional device physics to entirely a unique approach based upon molecular self-organization that deal with developing new materials to investigate whether we can directly control matter at atomic level. The technology can be conveniently applied to the medical and dental field to categorized the terminology nanomedicine and nano-dentistry respectively. The most important implementations in the field of dentistry include local drug delivery agents, dentinal hypersensitivity, oral hygiene and mouthwashes (dentrifrobots), restorative materials and nanocomposite resins, bone replacement materials, and implant surface modifications. With the help of science and technology, there have been manufacturing of various nanoparticles which we often find and use in everyday life without knowing that it is part of the future revolution. The various nanoparticles are nano pores, nanotubes, quantum dots, nano-shells, dendrimers, liposomes, nanorods, fullerenes, nanospheres, nanowires, nanobelts, nano-rings, nano-capsules. Nanotechnology has multiple applications in dentistry, from diagnosing of pathological conditions to local anaesthesia, orthodontic tooth movement, periodontics, Prosthodontics, oral and maxillofacial surgery and endodontics. Nanotechnology is a relatively a new field, that involves manipulation of matter at the molecular level, including individual molecules and the interactions between them. It focuses on achieving positional control with a high degree of specificity, thereby achieving the desired physical and chemical properties. There has been an upsurge in interest in deciphering the property of matter at this dimension, thus making nanotechnology one of the most promising and influential areas of scientific research.
通过革命性的技术,牙科的新面貌和愿景-纳米技术时代
随着对诊断和治疗方式进步的需求不断增长,纳米技术被视为一个创新和可持续的研究课题。这项处理纳米尺度物质的技术,拓宽了我们对知之甚少的健康问题的看法,开辟了一种新的诊断和治疗可能性。牙科研究人员和科学家已经研究了纳米颗粒在现有治疗方式中的潜力,并取得了一定的成功。纳米技术是非常多样化的,从传统器件物理学的扩展到基于分子自组织的完全独特的方法,用于开发新材料,以研究我们是否可以直接控制原子水平上的物质。该技术可以方便地应用于医学和牙科领域,分别对纳米医学和纳米牙科这两个术语进行分类。在牙科领域,最重要的应用包括局部药物递送剂、牙本质过敏、口腔卫生和漱口水(牙齿机器人)、修复材料和纳米复合树脂、骨替代材料和种植体表面修饰。在科学技术的帮助下,我们已经制造出了各种各样的纳米粒子,我们经常在日常生活中发现和使用它们,却不知道它是未来革命的一部分。各种各样的纳米颗粒是纳米孔、纳米管、量子点、纳米壳、树状大分子、脂质体、纳米棒、富勒烯、纳米球、纳米线、纳米带、纳米环、纳米胶囊。纳米技术在牙科领域有多种应用,从病理诊断到局部麻醉、正畸牙齿移动、牙周病、口腔修复、口腔颌面外科和牙髓学。纳米技术是一个相对较新的领域,它涉及在分子水平上操纵物质,包括单个分子和它们之间的相互作用。它侧重于实现高度特异性的位置控制,从而实现所需的物理和化学性能。人们对在这个维度上破译物质属性的兴趣激增,从而使纳米技术成为最有前途和最有影响力的科学研究领域之一。
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