International audienceNowadays, microfluidic 3D cell culture is widely used to mimic complex microtissue and dynamic environment, performing more realistic in vitro assays for drug testing. Herein, we developed a novel microfluidic platform for tumor microtissue culture, drug response analysis and versatile microscopic characterization. By reversibly bonding the chip, we go beyond the on/off chip tradeoff, which allows us to perform both fluorescence and SEM characterization of tumor microtissues on a simple platform. The microfluidic chip consists of spherical microwells connected via microchannels, bonded through a magnetic system. Colorectal cancer HT-29 cells were cultured as spherical microtissues on chip and their growth kinetics moni...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, m...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Establishing a physiological microenvironment in vitro that is suitable for cell and tissue growth i...
International audienceNowadays, microfluidic 3D cell culture is widely used to mimic complex microti...
Microfluidic technology has been successfully applied to isolate very rare tumor-derived epithelial ...
With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worl...
Despite over 2 million papers published on cancer so far, malignancy still remains a puzzlingly comp...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
Microfluidic devices, such as lab-on-a-chip systems, are highly advantageous for cell engineering an...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, mesen...
Optimal treatment of cancer requires diagnostic methods to facilitate therapy choice and prevent ine...
Anticancer drugs have the lowest success rate of approval in drug development programs. Thus, precli...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
The objective of this project is to design and fabricate lab-on-a-chip devices for culturing cancer ...
The development and application of miniaturized platforms with the capability for microscale and dyn...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, m...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Establishing a physiological microenvironment in vitro that is suitable for cell and tissue growth i...
International audienceNowadays, microfluidic 3D cell culture is widely used to mimic complex microti...
Microfluidic technology has been successfully applied to isolate very rare tumor-derived epithelial ...
With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worl...
Despite over 2 million papers published on cancer so far, malignancy still remains a puzzlingly comp...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
Microfluidic devices, such as lab-on-a-chip systems, are highly advantageous for cell engineering an...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, mesen...
Optimal treatment of cancer requires diagnostic methods to facilitate therapy choice and prevent ine...
Anticancer drugs have the lowest success rate of approval in drug development programs. Thus, precli...
We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion a...
The objective of this project is to design and fabricate lab-on-a-chip devices for culturing cancer ...
The development and application of miniaturized platforms with the capability for microscale and dyn...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, m...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Establishing a physiological microenvironment in vitro that is suitable for cell and tissue growth i...