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使用小分子铂探针和磷光寿命成像显微镜对黑色素瘤球体进行氧映射。

Oxygen Mapping of Melanoma Spheroids using Small Molecule Platinum Probe and Phosphorescence Lifetime Imaging Microscopy.

机构信息

Materials Science & Engineering, University of Sheffield, Sheffield, S3 7HQ, UK.

School of Clinical Dentistry, University of Sheffield, Sheffield, S10 2TA, UK.

出版信息

Sci Rep. 2017 Sep 6;7(1):10743. doi: 10.1038/s41598-017-11153-9.

Abstract

Solid tumours display varied oxygen levels and this characteristic can be exploited to develop new diagnostic tools to determine and exploit these variations. Oxygen is an efficient quencher of emission of many phosphorescent compounds, thus oxygen concentration could in many cases be derived directly from relative emission intensity and lifetime. In this study, we extend our previous work on phosphorescent, low molecular weight platinum(II) complex as an oxygen sensing probe to study the variation in oxygen concentration in a viable multicellular 3D human tumour model. The data shows one of the first examples of non-invasive, real-time oxygen mapping across a melanoma tumour spheroid using one-photon phosphorescence lifetime imaging microscopy (PLIM) and a small molecule oxygen sensitive probe. These measurements were quantitative and enabled real time oxygen mapping with high spatial resolution. This combination presents as a valuable tool for optical detection of both physiological and pathological oxygen levels in a live tissue mass and we suggest has the potential for broader clinical application.

摘要

实体瘤显示出不同的氧气水平,这一特征可以被利用来开发新的诊断工具,以确定和利用这些变化。氧气是许多磷光化合物发射的有效猝灭剂,因此在许多情况下,氧浓度可以直接从相对发射强度和寿命中得出。在这项研究中,我们扩展了之前关于磷光、低分子量铂(II)配合物作为氧传感探针的研究,以研究在可行的多细胞 3D 人肿瘤模型中氧浓度的变化。数据显示了首例使用单光子磷光寿命成像显微镜(PLIM)和小分子氧敏感探针对黑素瘤肿瘤球体进行非侵入性、实时氧映射的实例之一。这些测量是定量的,并能够以高空间分辨率进行实时氧映射。这种组合为在活体组织中光学检测生理和病理氧水平提供了一种有价值的工具,我们认为它有可能得到更广泛的临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bac2/5587740/bacb5739a24a/41598_2017_11153_Fig1_HTML.jpg

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