首页> 外文会议>Materials Research Society Meeting >Integrated sorting and detection of circulating tumor cells in blood using microfluidic cell sorting and surface plasmon resonance
【24h】

Integrated sorting and detection of circulating tumor cells in blood using microfluidic cell sorting and surface plasmon resonance

机译:使用微流体细胞分选和表面等离子体共振综合排序和血液循环肿瘤细胞的循环肿瘤细胞

获取原文

摘要

Metastatic tumors can spread via release of circulating tumor cells (CTCs) into the bloodstream. Early detection of these CTCs could greatly improve cancer survival rates by enabling diagnosis, and therefore treatment, before secondary tumors arise. However, tumor cells are typically present in very low concentrations, making them difficult to detect in a fluid dominated by red blood cells (RBCs), leukocytes and serum proteins. Separation of CTCs from blood plasma, leukocytes and RBCs is predicted to improve cell capture via antibody-based methods and reduce interference in capture/detection assays. Previously, members of our team have demonstrated microfluidic, size-based separation of blood components, but have yet to integrate this sorting capability with an affinity-based detection technology. To this end, we have developed a microfluidic platform to separate CTCs from mouse blood and detect them using grating coupled surface plasmon resonance (GCSPR). We have implemented a size-based sorting array, which separates objects based upon their diameter, within a microfluidic channel. Separation of beads (2 μm, 6 μm, 10 μm) has been demonstrated, as well as separation of white blood cells and CTCs from blood. The resulting stream of large blood cells (including CTCs) is then directed onto an integrated SPR grating for affinity based capture and detection. Using GCSPR vs. conventional SPR enables detection of multiple cell types across the grating in an array-based format. We have demonstrated differential capture and detection of cells on GCSPR gratings following size-based separation of blood. Using capture antibodies specific to unique CTC surface proteins enables identification of cell types and may provide prognostic capability, beyond the diagnostic capacity of this system.
机译:转移性肿瘤可以通过释放循环肿瘤细胞(CTC)进入血液中。早期检测这些CTCS可以通过使诊断,从而在次级肿瘤出现之前大大改善癌症存活率。然而,肿瘤细胞通常以非常低的浓度存在,使得它们难以检测由红细胞(RBC),白细胞和血清蛋白质主导的流体中。预计从血浆,白细胞和RBC分离CTC,以通过基于抗体的方法改善细胞捕获,并降低捕获/检测测定的干扰。此前,我们团队的成员展示了微流体,基于尺寸的血液成分分离,但尚未将这种分类能力与基于亲和的检测技术相结合。为此,我们开发了一种微流体平台,可以将CTC分离在小鼠血液中并使用光栅耦合表面等离子体共振(GCSPR)来检测它们。我们已经实现了一种基于尺寸的分选阵列,其在微流体通道内基于其直径分离物体。已经证明了珠粒(2μm,6μm,10μm)的分离,以及从血液中分离白细胞和CTC。然后将得到的大血细胞(包括CTC)流涉及基于亲和的捕获和检测的集成SPR光栅。使用GCSPR与传统SPR可以以基于阵列的格式在光栅上检测多个小区类型。在基于尺寸的血液中,我们已经证明了GCSPR光栅上的细胞差异捕获和检测。使用特异性CTC表面蛋白特异的捕获抗体能够鉴定细胞类型,可以提供超出该系统的诊断能力的预后能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号