Recent Advances in Noble Metal Nanoparticles for Cancer Nanotheranostics

Dhiraj Kumar, I. Mutreja, A. Kaushik
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引用次数: 2

Abstract

The limitations of current treatment strategies for cancer management have prompted a significant shift in the research and development of new effective strategies exhibiting higher efficacy and acceptable side effects. In this direction, nanotheranostics has gained significant interest in recent years, combining the diagnostic and therapeutic capabilities of nanostructures for efficient disease diagnosis, treatment, and management. Such nano-assisted platforms permit the site-specific release of bioactive cargo in a controlled fashion while permitting non-invasive real-time in situ monitoring. A plethora of materials has been developed as pharmacologically relevant nanoformulations for theranostic applications ranging from metallic to lipid and polymer-based composite systems, with each offering potential opportunities and its own limitations. To improve advancements with better clarity, the main focus of this review is to highlight the recent developments focusing on using different noble metal nanoparticles (noble MNPs) as cancer nanotheranostic agents, highlighting their properties, advantages, and potential modifications for their successful utilization in personalized medicine. The advantage of using noble metals (not all, but those with an atomic number ≥76) over metal NPs is their tendency to provide additional properties, such as X-ray attenuation and near-infrared activity. The combination of these properties translates to noble MNPs for therapeutic and diagnostic applications, independent of the need for additional active molecules. Through this review, we highlighted the potential application of all noble MNPs and the limited use of osmium, iridium, palladium, rhodium, and ruthenium metal NSs, even though they express similar physicochemical characteristics. The literature search was limited by PubMed, full-text availability, and studies including both in vitro and in vivo models.
用于癌症纳米管的贵金属纳米粒子的最新进展
目前癌症治疗策略的局限性促使研究和开发具有更高疗效和可接受副作用的新的有效策略发生了重大转变。在这个方向上,纳米治疗学近年来获得了极大的兴趣,将纳米结构的诊断和治疗能力相结合,用于有效的疾病诊断、治疗和管理。这种纳米辅助平台允许以可控的方式在特定地点释放生物活性货物,同时允许非侵入性实时原位监测。已经开发了大量材料作为药理学相关的纳米制剂,用于从金属到脂质和聚合物基复合系统的治疗应用,每种材料都提供了潜在的机会和自身的局限性。为了更清楚地改进进展,本综述的主要重点是强调最近的发展,重点是使用不同的贵金属纳米颗粒(贵MNP)作为癌症纳米治疗剂,强调它们的性质、优势和潜在的修饰,以成功地在个性化医疗中使用。与金属NP相比,使用贵金属(不是全部,而是原子序数≥76的贵金属)的优势在于它们倾向于提供额外的性能,如X射线衰减和近红外活性。这些特性的结合转化为用于治疗和诊断应用的惰性MNP,而不需要额外的活性分子。通过这篇综述,我们强调了所有贵金属NP的潜在应用,以及锇、铱、钯、铑和钌金属NSs的有限用途,尽管它们表现出相似的物理化学特性。文献检索受到PubMed、全文可用性以及包括体外和体内模型在内的研究的限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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