女人张开腿让男人添,在线?亚洲?国产 欧美,嫩草乱码一区三区四区,特级做A爰片毛片免费69

Expert forum

首頁 專家論壇 標本專家Nanoroughened adhesion-based capture of circulating tumor cells with heterogeneous expression and metastatic characteristics.
注冊

Nanoroughened adhesion-based capture of circulating tumor cells with heterogeneous expression and metastatic characteristics.

2017-12-08 07:04來源:原版作者:Chen W

BACKGROUND:

Circulating tumor cells (CTCs) have shown prognostic relevance in many cancer types. However, the majority of current CTC capture methods rely on positive selection techniques that require a priori knowledge about the surface protein expression of disseminated CTCs, which are known to be a dynamic population.

METHODS:

We developed a microfluidic CTC capture chip that incorporated a nanoroughened glass substrate for capturing CTCs from blood samples. Our CTC capture chip utilized the differential adhesion preference of cancer cells to nanoroughened etched glass surfaces as compared to normal blood cells and thus did not depend on the physical size or surface protein expression of CTCs.

RESULTS:

The microfluidic CTC capture chip was able to achieve a superior capture yield for both epithelial cell adhesion molecule positive (EpCAM+) and EpCAM- cancer cells in blood samples. Additionally, the microfluidic CTC chip captured CTCs undergoing transforming growth factor beta-induced epithelial-to-mesenchymal transition (TGF-β-induced EMT) with dynamically down-regulated EpCAM expression. In a mouse model of human breast cancer using EpCAM positive and negative cell lines, the number of CTCs captured correlated positively with the size of the primary tumor and was independent of their EpCAM expression. Furthermore, in a syngeneic mouse model of lung cancer using cell lines with differential metastasis capability, CTCs were captured from all mice with detectable primary tumors independent of the cell lines' metastatic ability.

CONCLUSIONS:

The microfluidic CTC capture chip using a novel nanoroughened glass substrate is broadly applicable to capturing heterogeneous CTC populations of clinical interest independent of their surface marker expression and metastatic propensity. We were able to capture CTCs from a non-metastatic lung cancer model, demonstrating the potential of the chip to collect the entirety of CTC populations including subgroups of distinct biological and phenotypical properties. Further exploration of the biological potential of metastatic and presumably non-metastatic CTCs captured using the microfluidic chip will yield insights into their relevant differences and their effects on tumor progression and cancer outcomes.

版權聲明:

本網站所有注明“來源:“陽普醫療”的文字、圖片和音視頻資料,版權均屬于陽普醫療所有,非經授權,任何媒體、網站或個人不得轉載,授權轉載時須注明

“來源:陽普醫療”。本網所有轉載文章系出于傳遞更多信息之目的,且明確注明來源和作者,不希望被轉載的媒體或個人可與我們聯系,我們將立即進行刪除處理。

網友評論:

  • <center id="wvtgz"><tr id="wvtgz"><track id="wvtgz"></track></tr></center>
  • <ul id="wvtgz"></ul>

      
      
        1. 主站蜘蛛池模板: 伊宁市| 新巴尔虎右旗| 遂川县| 德清县| 静宁县| 宜良县| 兴义市| 阳江市| 辽阳县| 商丘市| 钟山县| 神木县| 宁河县| 巴林右旗| 松滋市| 郯城县| 蓬溪县| 合作市| 疏附县| 合阳县| 昌吉市| 海原县| 溧水县| 元氏县| 孟州市| 吕梁市| 富顺县| 开鲁县| 汶上县| 柏乡县| 宜城市| 台北市| 鱼台县| 金坛市| 北流市| 永顺县| 新巴尔虎右旗| 永修县| 林甸县| 玉田县| 清新县|