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Linear-array-based photoacoustic tomography for label-free high-throughput detection and quantification of circulating melanoma tumor cell clusters

机译:基于线性阵列的光声层析成像技术用于无标记的高通量检测和定量循环黑素瘤肿瘤细胞簇

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Circulating tumor cell (CTC) clusters arise from multicellular grouping in the primary tumor and elevate the metastatic potential by 23 to 50 fold compared to single CTCs. High throughout detection and quantification of CTC clusters is critical for understanding the tumor metastasis process and improving cancer therapy. In this work, we report a linear-array-based photoacoustic tomography (LA-PAT) system capable of label-free high-throughput CTC cluster detection and quantification in vivo. LA-PAT detects CTC clusters and quantifies the number of cells in them based on the contrast-to-noise ratios (CNRs) of photoacoustic signals. The feasibility of LA-PAT was first demonstrated by imaging CTC clusters ex vivo. LA-PAT detected CTC clusters in the blood-filled microtubes and computed the number of cells in the clusters. The size distribution of the CTC clusters measured by LA-PAT agreed well with that obtained by optical microscopy. We demonstrated the ability of LA-PAT to detect and quantify CTC clusters in vivo by imaging injected CTC clusters in rat tail veins. LA-PAT detected CTC clusters immediately after injection as well as when they were circulating in the rat bloodstreams. Similarly, the numbers of cells in the clusters were computed based on the CNRs of the photoacoustic signals. The data showed that larger CTC clusters disappear faster than the smaller ones. The results prove the potential of LA-PAT as a promising tool for both preclinical tumor metastasis studies and clinical cancer therapy evaluation.
机译:循环肿瘤细胞(CTC)簇源于原发肿瘤中的多细胞分组,与单个CTC相比,转移潜力提高了23到50倍。对CTC簇的全面检测和定量分析对于理解肿瘤转移过程和改善癌症治疗至关重要。在这项工作中,我们报告了基于线性阵列的光声层析成像(LA-PAT)系统,该系统能够在体内进行无标签的高通量CTC簇检测和定量。 LA-PAT根据光声信号的对比度-噪声比(CNR),检测CTC簇并量化其中的细胞数量。 LA-PAT的可行性首先通过离体成像CTC簇来证明。 LA-PAT在充满血液的微管中检测了CTC簇,并计算了簇中的细胞数量。通过LA-PAT测量的CTC簇的尺寸分布与通过光学显微镜获得的尺寸分布非常吻合。我们通过对大鼠尾静脉中注射的CTC簇进行成像,证明了LA-PAT在体内检测和定量CTC簇的能力。 LA-PAT在注射后以及在大鼠血流中循环时立即检测到CTC簇。类似地,基于光声信号的CNR计算簇中的细胞数目。数据表明,较大的CTC群集比较小的CTC群集消失得更快。结果证明了LA-PAT作为临床前肿瘤转移研究和临床癌症治疗评估的有前途工具的潜力。

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