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Nanostructure embedded microchips for detection, isolation, and characterization of circulating tumor cells.
注冊

Nanostructure embedded microchips for detection, isolation, and characterization of circulating tumor cells.

2017-12-08 07:52來源:原版作者:Lin M

Circulating tumor cells (CTCs) are cancer cells that break away from either a primary tumor or a metastatic site and circulate in the peripheral blood as the cellular origin of metastasis. With their role as a "tumor liquid biopsy", CTCs provide convenient access to all disease sites, including that of the primary tumor and the site of fatal metastases. It is conceivable that detecting and analyzing CTCs will provide insightful information in assessing the disease status without the flaws and limitations encountered in performing conventional tumor biopsies. However, identifying CTCs in patient blood samples is technically challenging due to the extremely low abundance of CTCs among a large number of hematologic cells. To address this unmet need, there have been significant research endeavors, especially in the fields of chemistry, materials science, and bioengineering, devoted to developing CTC detection, isolation, and characterization technologies. Inspired by the nanoscale interactions observed in the tissue microenvironment, our research team at UCLA pioneered a unique concept of "NanoVelcro" cell-affinity substrates, in which CTC capture agent-coated nanostructured substrates were utilized to immobilize CTCs with high efficiency. The working mechanism of NanoVelcro cell-affinity substrates mimics that of Velcro: when the two fabric strips of a Velcro fastener are pressed together, tangling between the hairy surfaces on two strips leads to strong binding. Through continuous evolution, three generations (gens) of NanoVelcro CTC chips have been established to achieve different clinical utilities. The first-gen NanoVelcro chip, composed of a silicon nanowire substrate (SiNS) and an overlaid microfluidic chaotic mixer, was created for CTC enumeration. Side-by-side analytical validation studies using clinical blood samples suggested that the sensitivity of first-gen NanoVelcro chip outperforms that of FDA-approved CellSearch. In conjunction with the use of the laser microdissection (LMD) technique, second-gen NanoVelcro chips (i.e., NanoVelcro-LMD), based on polymer nanosubstrates, were developed for single-CTC isolation. The individually isolated CTCs can be subjected to single-CTC genotyping (e.g., Sanger sequencing and next-generation sequencing, NGS) to verify the CTC's role as tumor liquid biopsy. Created by grafting of thermoresponsive polymer brushes onto SiNS, third-gen NanoVelcro chips (i.e., Thermoresponsive NanoVelcro) have demonstrated the capture and release of CTCs at 37 and 4 °C, respectively. The temperature-dependent conformational changes of polymer brushes can effectively alter the accessibility of the capture agent on SiNS, allowing for rapid CTC purification with desired viability and molecular integrity. This Account summarizes the continuous evolution of NanoVelcro CTC assays from the emergence of the original idea all the way to their applications in cancer research. We envision that NanoVelcro CTC assays will lead the way for powerful and cost-efficient diagnostic platforms for researchers to better understand underlying disease mechanisms and for physicians to monitor real-time disease progression.

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: 颍上县| 遂溪县| 盘山县| 墨脱县| 宁城县| 海淀区| 莱州市| 华阴市| 华安县| 彰化市| 磐安县| 巫溪县| 自贡市| 卓尼县| 白银市| 伊川县| 图们市| 长春市| 呼和浩特市| 萨嘎县| 米易县| 灌阳县| 孝感市| 沙河市| 和政县| 邳州市| 彭州市| 灵丘县| 莱州市| 思南县| 五台县| 永泰县| 鲁山县| 博爱县| 金川县| 湛江市| 普陀区| 邻水| 桐城市| 鄂伦春自治旗| 秭归县|