Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenomena. The fine control of biochemical and biomechanical cues within these microphysiological systems provides opportunities for cancer researchers to build complex models of the tumour microenvironment. Interest in applying organ chips to investigate mechanisms such as metastatsis and to test therapeutics has grown rapidly, and this review draws together the published research using these microfluidic platforms to study cancer. We focus on both in-house systems and commercial platforms being used in the UK for fundamental discovery science and therapeutics testing. We cover the wide variety of cancers being investigated, ranging from common car...
Organ‐like cell clusters, so‐called organoids, which exhibit self‐organized and similar organ functi...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenome...
Recent developments of organoids engineering and organ-on-a-chip microfluidic technologies have enab...
Cancer remains one of the leading causes of death, albeit enormous efforts to cure the disease. To o...
Cancer kills millions of individuals every year all over the world (Global Cancer Observatory). The ...
With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worl...
Cancer remains a major burden in our modern society, being the second leading cause of death worldwi...
Organ on chip (OOC) has emerged as a major technological breakthrough and distinct model system revo...
Cancer ranks amongst the most lethal diseases worldwide, partly due to there being more than 120 dif...
Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments...
Most breast cancer related deaths are not caused directly by the primary tumor, but by secondary tum...
Microfluidic technology has great potential for complementing and, in some instances, replacing the ...
Developing biologically relevant models of human tissues and organs is an important enabling step fo...
Organ‐like cell clusters, so‐called organoids, which exhibit self‐organized and similar organ functi...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...
Organ-on-chip systems are capable of replicating complex tissue structures and physiological phenome...
Recent developments of organoids engineering and organ-on-a-chip microfluidic technologies have enab...
Cancer remains one of the leading causes of death, albeit enormous efforts to cure the disease. To o...
Cancer kills millions of individuals every year all over the world (Global Cancer Observatory). The ...
With a mortality rate over 580,000 per year, cancer is still one of the leading causes of death worl...
Cancer remains a major burden in our modern society, being the second leading cause of death worldwi...
Organ on chip (OOC) has emerged as a major technological breakthrough and distinct model system revo...
Cancer ranks amongst the most lethal diseases worldwide, partly due to there being more than 120 dif...
Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments...
Most breast cancer related deaths are not caused directly by the primary tumor, but by secondary tum...
Microfluidic technology has great potential for complementing and, in some instances, replacing the ...
Developing biologically relevant models of human tissues and organs is an important enabling step fo...
Organ‐like cell clusters, so‐called organoids, which exhibit self‐organized and similar organ functi...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Abstract Cancer is one of the leading causes of human death, despite enormous efforts to explore can...