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Gold nanoparticles in radiation research: potential applications for imaging and radiosensitization

机译:辐射研究中的金纳米颗粒:成像和放射增敏的潜在应用

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摘要

The potential of gold nanoparticles (GNPs) in therapeutic and diagnostic cancer applications is becoming increasingly recognized. These biologically compatible particles can be easily synthesized, tuned to different sizes, and functionalized by conjugation to various biologically useful materials. Efficient and specific delivery to tumor tissue can then be accomplished either by passive accumulation in leaky tumor vessels and tissue, or by directly targeting tumor-specific biomarkers. Tumor-localized GNPs can serve as both adjuvants for enhancing the efficacy of radiation therapy and also as contrast agents for various imaging modalities. In this review, we will discuss recent advancements and future potential in the application of GNP as both a radiosensitizer and an imaging contrast agent. Due to their versatility and biocompatibility, gold nanoparticles may represent a novel theranostic adjuvant for radiation applications in cancer management.
机译:金纳米颗粒(GNPs)在治疗和诊断癌症应用中的潜力正日益得到认可。这些生物相容性颗粒可以容易地合成,调节成不同的大小,并通过与各种生物有用材料结合而官能化。然后可以通过在泄漏的肿瘤血管和组织中被动积累,或通过直接靶向肿瘤特异性生物标志物来实现向肿瘤组织的有效且特异性的递送。肿瘤定位的GNP既可以用作增强放射治疗功效的佐剂,也可以用作各种成像方式的造影剂。在这篇综述中,我们将讨论将GNP用作放射增敏剂和成像造影剂的最新进展和未来潜力。由于它们的多功能性和生物相容性,金纳米颗粒可能代表了用于癌症治疗中放射应用的新型治疗学佐剂。

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