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两步声泳法从全血中分离活肿瘤细胞。

Two-Step Acoustophoresis Separation of Live Tumor Cells from Whole Blood.

机构信息

Department of Biomedical Engineering, Lund University, 221 00 Lund, Sweden.

Department of Translational Medicine, Lund University, 205 02 Malmö, Sweden.

出版信息

Anal Chem. 2021 Dec 28;93(51):17076-17085. doi: 10.1021/acs.analchem.1c04050. Epub 2021 Dec 16.

Abstract

There is an unmet clinical need to extract living circulating tumor cells (CTCs) for functional studies and expansion to enable drug testing and predict responses to therapy in metastatic cancer. Here, we present a novel two-step acoustophoresis (A) method for isolation of unfixed, viable cancer cells from red blood cell (RBC) lysed whole blood. The A method uses an initial acoustofluidic preseparation step to separate cells based on their acoustic mobility. This acoustofluidic step enriches viable cancer cells in a central outlet, but a significant number of white blood cells (WBCs) remain in the central outlet fraction due to overlapping acoustophysical properties of these viable cells. A subsequent purging step was employed to remove contaminating WBCs through negative selection acoustophoresis with anti-CD45-functionalized negative acoustic contrast particles. We processed 1 mL samples of 1:1 diluted RBC lysed whole blood mixed with 10 000 DU145 cells through the A method. Additional experiments were performed using 1000 DU145 cells spiked into 1.5 × 10 WBCs in 1 mL of buffer to further elucidate the dynamic range of the method. Using samples with 10 000 DU145 cells, we obtained 459 ± 188-fold depletion of WBC and 42% recovery of viable cancer cells. Based on spiked samples with 1000 DU145 cells, our cancer cell recovery was 28% with 247 ± 156-fold WBC depletion corresponding to a depletion efficacy of ≥99.5%. The novel A method provides extensive elimination of WBCs combined with the gentle recovery of viable cancer cells suitable for downstream functional analyses and culture.

摘要

临床上需要提取活的循环肿瘤细胞(CTC)进行功能研究和扩增,以进行药物测试并预测转移性癌症对治疗的反应。在这里,我们提出了一种新颖的两步声流(A)方法,用于从红细胞(RBC)裂解的全血中分离未固定的、存活的癌细胞。该 A 方法使用初始声流分离步骤根据其声迁移率分离细胞。该声流分离步骤在中央出口处富集了存活的癌细胞,但由于这些存活细胞的声物理性质重叠,大量的白细胞(WBC)仍留在中央出口部分。随后采用负选择声流法,用抗 CD45 功能化的负声对比粒子来去除污染的 WBC,进行了后续的清除步骤。我们通过 A 方法处理了 1 mL 稀释 1:1 的 RBC 裂解全血与 10000 DU145 细胞混合的样本。使用 1000 DU145 细胞在 1 mL 缓冲液中掺入 1.5 × 10 WBC 进行了额外的实验,以进一步阐明该方法的动态范围。使用含 10000 DU145 细胞的样本,我们获得了 WBC 的 459 ± 188 倍的耗尽和 42%的存活癌细胞的恢复。基于掺入 1000 DU145 细胞的样本,我们的癌细胞回收率为 28%,WBC 耗尽率为 247 ± 156 倍,对应于≥99.5%的耗尽效率。该新型 A 方法提供了广泛的 WBC 消除,同时温和地回收了适合下游功能分析和培养的存活癌细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ce9/8717332/0c11d1119267/ac1c04050_0002.jpg

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