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Imaging intracellular and systemic in vivo gold nanoparticles to enhance radiotherapy

机译:成像细胞内和全身体内金纳米颗粒以增强放射治疗

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摘要

Nanoparticles offer alternative options in cancer therapy both as drug delivery carriers and as direct therapeutic agents for cancer cell inactivation. More recently, gold nanoparticles (AuNPs) have emerged as promising radiosensitizers achieving significantly elevated radiation dose enhancement factors when irradiated with both kilo-electron-volt and mega-electron-volt X-rays. Use of AuNPs in radiobiology is now being intensely driven by the desire to achieve precise energy deposition in tumours. As a consequence, there is a growing demand for efficient and simple techniques for detection, imaging and characterization of AuNPs in both biological and tumour samples. Spatially accurate imaging on the nanoscale poses a serious challenge requiring high- or super-resolution imaging techniques. In this mini review, we discuss the challenges in using AuNPs as radiosensitizers as well as various current and novel imaging techniques designed to validate the uptake, distribution and localization in mammalian cells. In our own work, we have used multiphoton excited plasmon resonance imaging to map the AuNP intracellular distribution. The benefits and limitations of this approach will also be discussed in some detail. In some cases, the same “excitation” mechanism as is used in an imaging modality can be harnessed to make it also a part of therapy modality (e.g. phototherapy)—such examples are discussed in passing as extensions to the imaging modality concerned.
机译:纳米颗粒作为药物输送载体和癌细胞灭活的直接治疗剂,在癌症治疗中提供了替代选择。最近,金纳米颗粒(AuNPs)成为有前途的放射增敏剂,当用千伏电子伏特和兆伏电子伏特X射线照射时,它们可以显着提高辐射剂量增强因子。为了在肿瘤中实现精确的能量沉积,现在正强烈要求在放射生物学中使用AuNP。结果,对于用于生物学和肿瘤样品中的AuNP的检测,成像和表征的高效和简单技术的需求日益增长。纳米级的空间精确成像带来了严峻的挑战,需要高分辨率或超分辨率成像技术。在这个小型综述中,我们讨论了使用AuNPs作为放射增敏剂以及设计用于验证哺乳动物细胞中摄取,分布和定位的各种当前和新颖的成像技术所面临的挑战。在我们自己的工作中,我们使用了多光子激发等离子体共振成像来绘制AuNP细胞内分布图。此方法的优点和局限性也将进行详细讨论。在某些情况下,可以利用与成像模态相同的“激励”机制,使其也成为治疗模态(例如光疗)的一部分-通过对相关成像模态的扩展来讨论此类示例。

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