With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worldwide. However, the emerging field of microfluidics can potentially shed light on this puzzling disease. Unique characteristics of microfluidic chips (also known as micro-total analysis system) make them excellent candidates for biological applications. The ex vivo approach of tumor-on-a-chip is becoming an indispensable part of personalized medicine and can replace in vivo animal testing as well as conventional in vitro methods. In tumor-on-a-chip, the complex three-dimensional (3D) nature of malignant tumor is co-cultured on a microfluidic chip and high throughput screening tools to evaluate the efficacy of anticancer drugs are integrated o...
Breast cancer with unpredictable metastatic recurrence is the leading cause of cancer-related mortal...
The perfusion-based in vitro three-dimensional (3D) tumor models built on the microfluidic technolog...
Two principal methods for cancer drug testing are widely used, namely, in vitro 2D cell monolayers a...
With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worl...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
Despite over 2 million papers published on cancer so far, malignancy still remains a puzzlingly comp...
Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenome...
Optimal treatment of cancer requires diagnostic methods to facilitate therapy choice and prevent ine...
Currently most cell-based methodologies in microfluidic systems utilize homogeneous or heterogeneous...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, mesen...
International audienceNowadays, microfluidic 3D cell culture is widely used to mimic complex microti...
Cancer remains one of the leading causes of death, albeit enormous efforts to cure the disease. To o...
Tumor-on-chip technology has cemented its importance as an in vitro tumor model for cancer research....
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, m...
Cancer remains a major burden in our modern society, being the second leading cause of death worldwi...
Breast cancer with unpredictable metastatic recurrence is the leading cause of cancer-related mortal...
The perfusion-based in vitro three-dimensional (3D) tumor models built on the microfluidic technolog...
Two principal methods for cancer drug testing are widely used, namely, in vitro 2D cell monolayers a...
With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worl...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
Despite over 2 million papers published on cancer so far, malignancy still remains a puzzlingly comp...
Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenome...
Optimal treatment of cancer requires diagnostic methods to facilitate therapy choice and prevent ine...
Currently most cell-based methodologies in microfluidic systems utilize homogeneous or heterogeneous...
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, mesen...
International audienceNowadays, microfluidic 3D cell culture is widely used to mimic complex microti...
Cancer remains one of the leading causes of death, albeit enormous efforts to cure the disease. To o...
Tumor-on-chip technology has cemented its importance as an in vitro tumor model for cancer research....
The tumor microenvironment is composed of cellular and stromal components such as tumor cells, m...
Cancer remains a major burden in our modern society, being the second leading cause of death worldwi...
Breast cancer with unpredictable metastatic recurrence is the leading cause of cancer-related mortal...
The perfusion-based in vitro three-dimensional (3D) tumor models built on the microfluidic technolog...
Two principal methods for cancer drug testing are widely used, namely, in vitro 2D cell monolayers a...