Nanomedical National Core Research Center, Yonsei University, South Korea.
Biosens Bioelectron. 2013 Feb 15;40(1):63-7. doi: 10.1016/j.bios.2012.06.016. Epub 2012 Jun 28.
Circulating tumor cells (CTCs) are identified in transit within the blood stream of cancer patients and have been proven to be a main cause of metastatic disease. Current approaches for the size-based isolation of CTCs have encountered technical challenges as some of the CTCs have a size similar to that of leukocytes and therefore CTCs are often lost in the process. Here, we propose a novel strategy where most of the CTCs are coated by a large number of microbeads to amplify their size to enable complete discrimination from leukocytes. In addition, all of the microbead labeling processes are carried out in a continuous manner to prevent any loss of CTCs during the isolation process. Thus, a microfluidic mixer was employed to facilitate the efficient and selective labeling of CTCs from peripheral blood samples. By generating secondary vortex flows called Taylor-Gortler vortices perpendicular to the main flow direction in our microfluidic device, CTCs were continuously and successfully coated with anti-epithelial cell adhesion molecule-conjugated beads. After the continuous labeling, the enlarged CTCs were perfectly trapped in a micro-filter whereas all of the leukocytes escaped.
循环肿瘤细胞(CTCs)在癌症患者的血流中被发现处于转移状态,已被证明是转移性疾病的主要原因。目前基于大小的 CTC 分离方法遇到了技术挑战,因为有些 CTC 的大小与白细胞相似,因此 CTC 经常在这个过程中丢失。在这里,我们提出了一种新策略,其中大多数 CTC 被大量微珠包裹,以放大其大小,从而能够与白细胞完全区分开来。此外,所有的微珠标记过程都是连续进行的,以防止在分离过程中任何 CTC 的丢失。因此,使用微流混合器来促进从外周血样本中有效且选择性地标记 CTC。通过在我们的微流控装置中产生垂直于主流方向的称为泰勒-戈特利布涡旋的二次涡旋流,CTC 被连续且成功地用抗上皮细胞黏附分子偶联的珠子包裹。连续标记后,放大的 CTC 被完美地捕获在微滤器中,而所有的白细胞都逃脱了。