利用金纳米标签的SERS光谱和荧光层析成像的组织成像特性。

IF 2.3
Andrei I Demenshin, Maria S Istomina, Lidia N Medvedeva, Elena V Solovyeva
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引用次数: 0

摘要

等离子体纳米粒子衍生的多模态显像剂在医学诊断方面具有巨大的潜力。迄今为止,基于金的双模拉曼荧光纳米标签在体内研究中仍未得到证实。为了克服这一缺陷,制备了由含有菁7的聚合物外壳包裹的金纳米棒,并制备了双峰光学响应。在实验室小鼠静脉注射纳米标签后,对其成像能力进行了研究。通过组织切片的SERS光谱、器官的荧光图像和ICP-AES法测定消化组织中的金浓度,获得标记物的自然生物分布。从三种技术获得的分布图的比较显示,荧光断层扫描给出了脾脏中被低估的标签含量,这是由于发射自猝灭引起的。SERS和ICP-AES结果的一致性为使用SERS作为评估组织中半定量金纳米颗粒分布的补充技术提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peculiarities of Tissue Imaging by SERS Spectroscopy and Fluorescence Tomography Using Gold Nanolabels.

Multimodal imaging agents derived from plasmonic nanoparticles have great potential for medical diagnostics. To date, dual-mode Raman-fluorescence gold-based nanolabels have remained outside conformed in vivo studies. To overcome this lack, gold nanorods coated by a polymer shell with incorporated cyanine 7 and a bimodal optical response were prepared. The study of nanolabels imaging capabilities was performed after their intravenous administration to laboratory mice. Natural biodistribution of the labels was obtained from SERS spectra of tissue sections, fluorescence images of organs, and gold concentrations determined in the digested tissues by ICP-AES. The comparison of distribution diagrams obtained from three techniques revealed that fluorescence tomography gives the underestimated labels content in the spleen, arising as a result of emission self-quenching. The consistency of SERS and ICP-AES results opens up the opportunity to use SERS as a complementary technique to assess semi-quantitative gold nanoparticle distribution in the tissues.

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