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首页> 外文期刊>Nanoscale >Advanced sensing, imaging, and therapy nanoplatforms based on Nd3+-doped nanoparticle composites exhibiting upconversion induced by 808 nm near-infrared light
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Advanced sensing, imaging, and therapy nanoplatforms based on Nd3+-doped nanoparticle composites exhibiting upconversion induced by 808 nm near-infrared light

机译:先进的传感、成像和治疗基于Nd3 nanoplatforms再版纳米颗粒复合材料表现出上转换引起的808纳米近红外光

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Malignant tumors are currently the leading cause of death worldwide, followed by cardiovascular and cerebrovascular diseases. Although various methods, such as blood examination, tissue biopsy, and radiography, for tumor detection, exist, these techniques still require further refinement. Researchers have recently explored the use of novel adjuvant methods, specifically luminescence imaging detection, for the detection of tumors. The light-triggered approach is less invasive and induces fewer side effects than traditional detection methods. This paper highlights recent advances in the design, property tuning, and applications of nanoparticles that exhibit upconversion under 808 nm excitation. When doped with neodymium ions, upconverted nanoparticles gain the ability to absorb 808 nm light. The advantageous unique features of 808 nm light include deep tissue penetration and limited thermal side effects. The 808 nm-excited upconverted nanoparticles exhibit superior potential for use in biosensing, bioimaging, therapy, and three-dimensional display. Thus, innovative theranostic nanoplatforms can be developed by incorporating 808 nm-excited upconverted nanoparticles with phototherapy agents. Such a composite technique is expected to possess the individual advantages of each material.
机译:恶性肿瘤是目前的主要原因死亡的世界,其次是心血管疾病和脑血管疾病。方法,如血液检查,组织活组织检查和放射学,肿瘤检测,仍然存在,这些技术需要进一步细化。新型佐剂的使用方法,特别发光成像检测,检测的肿瘤。侵入性和产生更少的副作用传统的检测方法。设计突出了最新进展,产权优化和应用程序上转换纳米粒子,展览在808年纳米激发。upconverted纳米粒子获得的能力吸收808纳米的光。808纳米光的特性包括深层组织渗透和有限的热的副作用。808年nm-excited upconverted纳米粒子展览优越的使用潜力,若bioimaging,治疗,和三维显示。nanoplatforms可以由合并808年nm-excited upconverted纳米颗粒光疗代理。预计将有个人优势每一个材料。

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