可调金纳米结构在癌症纳米治疗中的作用:合成、毒性、临床应用及其相关的机遇和挑战

Akash Kumar, Nabojit Das, R. Rayavarapu
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引用次数: 5

摘要

现有的诊断和治疗方式在其准确性和理解疾病发展的几个阶段的能力方面存在重大局限性。一个优秀的治疗系统包括一个多功能的方法,在疾病的早期诊断,同时逐步治愈,使用精确的医疗方法对复杂的治疗。这些挑战可以通过纳米治疗来解决,并探索改善卫生保健的合适方法。纳米技术与治疗学相结合,作为一个非常规的平台,为开发新的战略和模式铺平了道路,从而对从急性到慢性的复杂疾病进行诊断和治疗。在金属纳米颗粒中,金纳米颗粒由于其固有的无毒性质和等离子体的特性而被广泛应用于治疗学。等离子体金属纳米颗粒独特的光学和化学特性以及治疗学已经引领了一个有希望的早期疾病检测时代,它们可以通过增强的非侵入性或微创成像对几种疾病进行实时监测。本文综述了近十年来金纳米颗粒在纳米治疗领域的应用进展。本文解释了金属纳米颗粒在纳米诊断学中的临床应用,以及未来在诊断和治疗方面的应用前景。详细讨论了金纳米颗粒的范围及其设计复杂治疗系统的现实潜力,以及它们在临床进步中的意义,这是当前的需要。综述总结了纳米金纳米颗粒在纳米治疗中的应用所面临的挑战、机遇和转化潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Tunable Gold Nanostructures in Cancer Nanotheranostics: Implications on Synthesis, Toxicity, Clinical Applications and Their Associated Opportunities and Challenges
The existing diagnosis and treatment modalities have major limitations related to their precision and capability to understand several stages of disease development. A superior therapeutic system consists of a multifunctional approach in early diagnosis of the disease with a simultaneous progressive cure, using a precise medical approach towards complex treatment. These challenges can be addressed via nanotheranostics and explore suitable approaches to improve health care. Nanotechnology in combination with theranostics as an unconventional platform paved the way for developing novel strategies and modalities leading to diagnosis and therapy for complex disease conditions, ranging from acute to chronic levels. Among the metal nanoparticles, gold nanoparticles are being widely used for theranostics due to their inherent non-toxic nature and plasmonic properties. The unique optical and chemical properties of plasmonic metal nanoparticles along with theranostics have led to a promising era of plausible early detection of disease conditions, and they enable real-time monitoring with enhanced non-invasive or minimally invasive imaging of several ailments. This review aims to highlight the improvement and advancement brought to nanotheranostics by gold nanoparticles in the past decade. The clinical use of the metal nanoparticles in nanotheranostics is explained, along with the future perspectives on addressing the key applications related to diagnostics and therapeutics, respectively. The scope of gold nanoparticles and their realistic potential to design a sophisticated theranostic system is discussed in detail, along with their implications in clinical advancements which are the needs of the hour. The review concluded with the challenges, opportunities, and implications on translational potential of using gold nanoparticles in nanotheranostics.
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