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利用光声血流测量法捕获和分离循环黑色素瘤细胞

Capture and Isolation of Circulating Melanoma Cells Using Photoacoustic Flowmetry.

作者信息

Edgar Robert H, Cook Justin, Douglas Madeline, Samson Anie-Pier, Viator John A

机构信息

Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA.

Department of Engineering, Duquesne University, Pittsburgh, PA, USA.

出版信息

Methods Mol Biol. 2021;2265:203-212. doi: 10.1007/978-1-0716-1205-7_15.

Abstract

Early detection of cancer has been a goal of cancer research in general and melanoma research in particular (Birnbaum et al., Lancet Glob Health 6:e885-e893, 2018; Alendar et al., Bosnian J Basic Med Sci 9:77-80, 2009). Early detection of metastasis has been targeted as pivotal to increasing survival rates (Menezes et al., Adv Cancer Res 132:1-44, 2016). Melanoma, though curable in its early stages, has a dramatic decrease in survival rates once metastasis has occurred (Sharma et al., Biotechnol Adv 36:1063-1078, 2018). The transition to metastasis is not well understood and is an area of increasing interest. Metastasis is always premeditated by the shedding of circulating tumor cells (CTCs) from the primary tumor. The ability to isolate rare CTCs from the bloodstream has led to a host of new targets and therapies for cancer (Micalizzi et al., Genes Dev 31:1827-1840, 2017). Detection of CTCs also allows for disease progression to be tracked in real time while eliminating the need to wait for additional tumors to grow. Using a photoacoustic flowmeter, in which we induce ultrasonic responses from circulating melanoma cells (CMCs), we identify and quantify these cells in order to track disease progression. Additionally, these CMCs are captured and isolated allowing for future analysis such as RNA-Seq or microarray analysis.

摘要

癌症的早期检测一直是癌症研究的总体目标,尤其是黑色素瘤研究的目标(Birnbaum等人,《柳叶刀全球健康》6:e885 - e893,2018;Alendar等人,《波斯尼亚基础医学科学杂志》9:77 - 80,2009)。转移的早期检测已被视为提高生存率的关键(Menezes等人,《癌症研究进展》132:1 - 44,2016)。黑色素瘤虽然在早期阶段可治愈,但一旦发生转移,生存率会急剧下降(Sharma等人,《生物技术进展》36:1063 - 1078,2018)。向转移的转变尚未得到很好的理解,并且是一个越来越受关注的领域。转移总是由原发肿瘤中循环肿瘤细胞(CTC)的脱落预先促成的。从血液中分离罕见CTC的能力带来了许多新的癌症靶点和疗法(Micalizzi等人,《基因与发育》31:1827 - 1840,2017)。CTC的检测还允许实时跟踪疾病进展,同时无需等待额外肿瘤生长。使用光声流量计,我们从循环黑色素瘤细胞(CMC)中诱导超声响应,以识别和量化这些细胞,从而跟踪疾病进展。此外,这些CMC被捕获和分离,以便进行未来的分析,如RNA测序或微阵列分析。

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