In Vivo Flow Cytometry of Circulating Tumor-Associated Exosomes

Jacqueline Nolan, M. Sarimollaoglu, D. Nedosekin, Azemat Jamshidi‐Parsian, E. Galanzha, R. Kore, R. Griffin, V. Zharov
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引用次数: 24

Abstract

Circulating tumor cells (CTCs) demonstrated the potential as prognostic markers of metastatic development. However, the incurable metastasis can already be developed at the time of initial diagnosis with the existing CTC assays. Alternatively, tumor-associated particles (CTPs) including exosomes can be a more valuable prognostic marker because they can be released from the primary tumor long before CTCs and in larger amount. However, little progress has been made in high sensitivity detection of CTPs, especially in vivo. We show here that in vivo integrated photoacoustic (PA) and fluorescence flow cytometry (PAFFC) platform can provide the detection of melanoma and breast-cancer-associated single CTPs with endogenously expressed melanin and genetically engineered proteins or exogenous dyes as PA and fluorescent contrast agents. The two-beam, time-of-light PAFFC can measure the sizes of CTCs and CTPs and identify bulk and rolling CTCs and CTC clusters, with no influence on blood flow instability. This technique revealed a higher concentration of CTPs than CTCs at an early cancer stage. Because a single tumor cell can release many CTPs and in vivo PAFFC can examine the whole blood volume, PAFFC diagnostic platform has the potential to dramatically improve (up to 105-fold) the sensitivity of cancer diagnosis.
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循环肿瘤相关外泌体的体内流式细胞术
循环肿瘤细胞(ctc)显示了作为转移发展的预后标志物的潜力。然而,现有的CTC检测方法在最初诊断时已经可以发现无法治愈的转移。另外,包括外泌体在内的肿瘤相关颗粒(ctp)可能是一个更有价值的预后标志物,因为它们可以早于ctc从原发肿瘤中释放出来,并且数量更大。然而,在ctp的高灵敏度检测方面,特别是体内检测方面进展甚微。我们在这里展示了体内集成光声(PA)和荧光流式细胞术(PAFFC)平台可以检测黑色素瘤和乳腺癌相关的单一ctp,内源性表达黑色素和基因工程蛋白或外源性染料作为PA和荧光造影剂。双光束,光时PAFFC可以测量CTC和ctp的大小,识别散装和滚动CTC和CTC簇,对血流不稳定性没有影响。该技术显示,在早期癌症阶段,ctp的浓度高于ctc。由于单个肿瘤细胞可以释放许多ctp,并且在体内PAFFC可以检测全血容量,因此PAFFC诊断平台具有显着提高(高达105倍)癌症诊断敏感性的潜力。
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