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使用基于荧光共振能量转移的分子探针通过荧光寿命成像检测原位小鼠乳腺癌中的酶活性。

Detection of enzyme activity in orthotopic murine breast cancer by fluorescence lifetime imaging using a fluorescence resonance energy transfer-based molecular probe.

机构信息

Washington University, Department of Radiology, Optical Radiology Laboratory, 4525 Scott Avenue, St. Louis, Missouri 63110, USA.

出版信息

J Biomed Opt. 2011 Jun;16(6):066019. doi: 10.1117/1.3594153.

Abstract

Cancer-related enzyme activity can be detected noninvasively using activatable fluorescent molecular probes. In contrast to "always-on" fluorescent molecular probes, activatable probes are relatively nonfluorescent at the time of administration due to intramolecular fluorescence resonance energy transfer (FRET). Enzyme-mediated hydrolysis of peptide linkers results in reduced FRET and increase of fluorescence yield. Separation of signal from active and inactive probe can be difficult with conventional intensity-based fluorescence imaging. Fluorescence lifetime (FLT) measurement is an alternative method to detect changes in FRET. Thus, we investigate FLT imaging for in vivo detection of FRET-based molecular probe activation in an orthotopic breast cancer model. Indeed, the measured FLT of the enzyme-activatable molecular probe increases from 0.62 ns just after injection to 0.78 ns in tumor tissue after 4 h. A significant increase in FLT is not observed for an always-on targeted molecular probe with the same fluorescent reporter. These results show that FLT contrast is a powerful addition to preclinical imaging because it can report molecular activity in vivo due to changes in FRET. Fluorescence lifetime imaging exploits unique characteristics of fluorescent molecular probes that can be further translated into clinical applications, including noninvasive detection of cancer-related enzyme activity.

摘要

可以使用可激活的荧光分子探针非侵入性地检测与癌症相关的酶活性。与“常开”荧光分子探针相比,由于分子内荧光共振能量转移(FRET),在给予时可激活的探针相对非荧光。酶介导的肽接头的水解导致 FRET 减少和荧光产率增加。传统的基于强度的荧光成像是从活性和非活性探针中分离信号可能很困难。荧光寿命(FLT)测量是检测基于 FRET 的分子探针激活的替代方法。因此,我们研究了荧光寿命成像在原位乳腺癌模型中用于检测基于 FRET 的分子探针激活。实际上,在注射后 4 小时,酶可激活分子探针的测量 FLT 从 0.62 ns 增加到肿瘤组织中的 0.78 ns。具有相同荧光报告器的常开靶向分子探针未观察到 FLT 显着增加。这些结果表明,FLT 对比是临床前成像的有力补充,因为它可以由于 FRET 的变化而在体内报告分子活性。荧光寿命成像是利用荧光分子探针的独特特性,可以进一步转化为临床应用,包括对与癌症相关的酶活性的非侵入性检测。

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