Thermometry on the nanometre-scale for biomedical applications using NMR spectroscopy

A. Wolter, R. Klingeler, B. Büchner
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引用次数: 1

Abstract

Accurate temperature control with high spatial resolution is a challenging research topic in nano- and biotechnology. Due to their extraordinary physical and chemical properties carbon nanotubes reveal a promising potential as biomedical agents for temperature sensoring on the cellular level. Filling carbon nanotubes with tailored materials realises nanoscaled containers in which the active content is encapsulated by a protecting carbon shell. In particular, the filling with NMR active substances allows the usage as markers and temperature sensors. Their potential for biomedical applications is highlighted by temperature dependent NMR studies giving a proof-of-concept for a non-invasive temperature control on the cellular level.
利用核磁共振波谱在纳米尺度上进行生物医学应用的测温
高空间分辨率的精确温度控制是纳米和生物技术领域一个具有挑战性的研究课题。由于其特殊的物理和化学性质,碳纳米管作为生物医学试剂在细胞水平上的温度传感显示出巨大的潜力。用定制的材料填充碳纳米管实现了纳米级容器,其中的活性成分被一个保护碳壳封装。特别是,核磁共振活性物质的填充允许用作标记和温度传感器。温度相关的核磁共振研究强调了它们在生物医学应用方面的潜力,为细胞水平上的非侵入性温度控制提供了概念验证。
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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