Developing low-cost and highly efficient nanobiochips are important for liquid biopsies, real-time monitoring, and precision medicine. By in situ growth of silica nanowires on a commercial frosted slide, we develop a biochip for effective circulating tumor cells (CTCs) detection after modifying epithelial cell adhesion molecule antibody (anti-EpCAM). The biochip shows the specificity and high capture efficiency of 85.4 ± 8.3% for prostate cancer cell line (PC-3). The microsized frosted slides and silica nanowires allow enhanced efficiency in capture EpCAM positive cells by synergistic topographic interactions. And the capture efficiency of biochip increased with the increase of silica nanowires length on frosted slide. The biochip shows tha...
The rarity of circulating tumor cells (CTCs) poses a great challenge to their clinical application a...
In the fields of biology and medicine, nanoproducts such as nanoparticles (NPs) are specifically int...
Empirical thesis.Bibliography: pages 45-50.1. Introduction -- 2. Experimental methods : materials, i...
AbstractDetecting the cancer cells in the peripheral blood, i.e. circulating tumor cell (CTC), have ...
Detecting the cancer cells in the peripheral blood, i.e. circulating tumor cell (CTC), have been con...
Qinglin Shen,1,2,* Haitao Yang,3,* Caixia Peng,4,5,* Han Zhu,6 Jia Mei,1 Shan Huang,1 Bin Chen,7 Jue...
Circulating tumor cells (CTCs) are cancer cells shredded from either a primary tumor or a metastatic...
Nanotechnology offers unique approaches to probe and control a variety of biological and medical pro...
Mesoporous silica nanoparticles functionalized by surface hyperbranching polymerization of polyethyl...
ConspectusCirculating tumor cells (CTCs) are cancer cells that break away from either a primary tumo...
Goal Nanowires are promising biomaterials in multiple clinical applications. The goal of this study ...
Boran Cheng,1,* Zhaobo He,2,* Libo Zhao,2,* Yuan Fang,1 Yuanyuan Chen,1 Rongxiang He,2 Fangfang Chen...
CONSPECTUS: Circulating tumor cells (CTCs) are cancer cells that break away from either a primary tu...
The topographic features at the cell–material biointerface are critical for cellular sensing of the ...
Cancer stem cells (CSCs) are a challenge in cancer treatment due to their therapy resistance. We dem...
The rarity of circulating tumor cells (CTCs) poses a great challenge to their clinical application a...
In the fields of biology and medicine, nanoproducts such as nanoparticles (NPs) are specifically int...
Empirical thesis.Bibliography: pages 45-50.1. Introduction -- 2. Experimental methods : materials, i...
AbstractDetecting the cancer cells in the peripheral blood, i.e. circulating tumor cell (CTC), have ...
Detecting the cancer cells in the peripheral blood, i.e. circulating tumor cell (CTC), have been con...
Qinglin Shen,1,2,* Haitao Yang,3,* Caixia Peng,4,5,* Han Zhu,6 Jia Mei,1 Shan Huang,1 Bin Chen,7 Jue...
Circulating tumor cells (CTCs) are cancer cells shredded from either a primary tumor or a metastatic...
Nanotechnology offers unique approaches to probe and control a variety of biological and medical pro...
Mesoporous silica nanoparticles functionalized by surface hyperbranching polymerization of polyethyl...
ConspectusCirculating tumor cells (CTCs) are cancer cells that break away from either a primary tumo...
Goal Nanowires are promising biomaterials in multiple clinical applications. The goal of this study ...
Boran Cheng,1,* Zhaobo He,2,* Libo Zhao,2,* Yuan Fang,1 Yuanyuan Chen,1 Rongxiang He,2 Fangfang Chen...
CONSPECTUS: Circulating tumor cells (CTCs) are cancer cells that break away from either a primary tu...
The topographic features at the cell–material biointerface are critical for cellular sensing of the ...
Cancer stem cells (CSCs) are a challenge in cancer treatment due to their therapy resistance. We dem...
The rarity of circulating tumor cells (CTCs) poses a great challenge to their clinical application a...
In the fields of biology and medicine, nanoproducts such as nanoparticles (NPs) are specifically int...
Empirical thesis.Bibliography: pages 45-50.1. Introduction -- 2. Experimental methods : materials, i...