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微管装置,用于选择素介导从血液中捕获有活力的循环肿瘤细胞。

Microtube device for selectin-mediated capture of viable circulating tumor cells from blood.

机构信息

Department of Biomedical Engineering, Cornell University, Ithaca, NY, USA.

出版信息

Clin Chem. 2012 May;58(5):846-53. doi: 10.1373/clinchem.2011.176669. Epub 2012 Feb 16.

Abstract

BACKGROUND

Circulating tumor cells (CTCs) can be used clinically to treat cancer. As a diagnostic tool, the CTC count can be used to follow disease progression, and as a treatment tool, CTCs can be used to rapidly develop personalized therapeutic strategies. To be effectively used, however, CTCs must be isolated at high purity without inflicting cellular damage.

METHODS

We designed a microscale flow device with a functionalized surface of E-selectin and antibody molecules against epithelial markers. The device was additionally enhanced with a halloysite nanotube coating. We created model samples in which a known number of labeled cancer cells were suspended in healthy whole blood to determine device capture efficiency. We then isolated and cultured primary CTCs from buffy coat samples of patients diagnosed with metastatic cancer.

RESULTS

Approximately 50% of CTCs were captured from model samples. Samples from 12 metastatic cancer patients and 8 healthy participants were processed in nanotube-coated or smooth devices to isolate CTCs. We isolated 20-704 viable CTCs per 3.75-mL sample, achieving purities of 18%-80% CTCs. The nanotube-coated surface significantly improved capture purities (P = 0.0004). Experiments suggested that this increase in purity was due to suppression of leukocyte spreading.

CONCLUSIONS

The device successfully isolates viable CTCs from both blood and buffy coat samples. The approximately 50% capture rate with purities >50% with the nanotube coating demonstrates the functionality of this device in a clinical setting and opens the door for personalized cancer therapies.

摘要

背景

循环肿瘤细胞 (CTC) 可用于临床治疗癌症。作为一种诊断工具,CTC 计数可用于监测疾病进展,作为一种治疗工具,CTC 可用于快速制定个性化的治疗策略。然而,为了有效使用,必须在不造成细胞损伤的情况下以高纯度分离 CTC。

方法

我们设计了一种带有功能化 E-选择素表面和针对上皮标志物的抗体分子的微尺度流动装置。该装置还通过 halloysite 纳米管涂层进行了增强。我们创建了模型样本,其中在健康全血中悬浮有已知数量标记的癌细胞,以确定设备捕获效率。然后,我们从诊断为转移性癌症的患者的 buffy 涂层样本中分离和培养原代 CTC。

结果

模型样本中约有 50%的 CTC 被捕获。来自 12 名转移性癌症患者和 8 名健康参与者的样本在涂有纳米管或光滑的设备中进行处理,以分离 CTC。我们从每个 3.75 毫升的样本中分离出 20-704 个活的 CTC,实现了 18%-80% CTC 的纯度。纳米管涂层表面显着提高了捕获纯度 (P = 0.0004)。实验表明,这种纯度的提高是由于抑制了白细胞的扩散。

结论

该设备成功地从血液和 buffy 涂层样本中分离出了活的 CTC。纳米管涂层的捕获率约为 50%,纯度>50%,证明了该设备在临床环境中的功能,并为个性化癌症治疗开辟了道路。

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