Some organ-on-a-chip (OoC) systems for drug evaluation show better predictive capabilities than planar, static cell cultures and animal models. One of the ongoing initiatives led by OoC developers is to bridge the academia-to-industry gap in the hope of gaining wider adoption by end-users – academic biological researchers and industry. We discuss several recommendations that can help to drive the adoption of OoC systems by the market. We first review some key challenges faced by OoC developers before highlighting current advances in OoC platforms. We then offer recommendations for OoC developers to promote the uptake of OoC systems by the industry.</p
Organ-on-a-chip devices have become a viable option for investigating critical physiological events ...
Organ-on-a-chip (OOC) provides microphysiological conditions on a microfluidic chip, which makes up ...
International audienceOver the decades, conventional in vitro culture systems and animal models have...
Some organ-on-a-chip (OoC) systems for drug evaluation show better predictive capabilities than plan...
Organ-on-chip (OoC) systems are microfabricated cell culture devices designed to model functional un...
Organ-on-chip (OoC) and multi-organs-on-chip (MOoC) systems have the potential to play an important ...
As an emerging hot topic of the last decade, Organ on Chip (OoC) is a new technology that is attract...
Organ-on-chip (OoC) technology is thriving thanks to stem cells availability and international OoC p...
The next generation of chemical toxicity testing will use organs-on-chips (OoCs)—3D cultures of hete...
Organ-on-a-chip (OoC) systems might be the disruptive technology pharmaceutical industry has been lo...
Abstract: Recently, organ-on-a-chips (OoCs) have been proposed as highly innovative, truly predictiv...
Organs-on-chips (OoCs), also known as microphysiological systems or ‘tissue chips’ (the terms are sy...
The development of cancer models that rectify the simplicity of monolayer or static cell cultures ph...
Organ-on-Chip is considered a potentially game-changing technology born from the convergence of tiss...
Organs-on-a-Chip (OOAC) is a disruptive technology with widely recognized potential to change the ef...
Organ-on-a-chip devices have become a viable option for investigating critical physiological events ...
Organ-on-a-chip (OOC) provides microphysiological conditions on a microfluidic chip, which makes up ...
International audienceOver the decades, conventional in vitro culture systems and animal models have...
Some organ-on-a-chip (OoC) systems for drug evaluation show better predictive capabilities than plan...
Organ-on-chip (OoC) systems are microfabricated cell culture devices designed to model functional un...
Organ-on-chip (OoC) and multi-organs-on-chip (MOoC) systems have the potential to play an important ...
As an emerging hot topic of the last decade, Organ on Chip (OoC) is a new technology that is attract...
Organ-on-chip (OoC) technology is thriving thanks to stem cells availability and international OoC p...
The next generation of chemical toxicity testing will use organs-on-chips (OoCs)—3D cultures of hete...
Organ-on-a-chip (OoC) systems might be the disruptive technology pharmaceutical industry has been lo...
Abstract: Recently, organ-on-a-chips (OoCs) have been proposed as highly innovative, truly predictiv...
Organs-on-chips (OoCs), also known as microphysiological systems or ‘tissue chips’ (the terms are sy...
The development of cancer models that rectify the simplicity of monolayer or static cell cultures ph...
Organ-on-Chip is considered a potentially game-changing technology born from the convergence of tiss...
Organs-on-a-Chip (OOAC) is a disruptive technology with widely recognized potential to change the ef...
Organ-on-a-chip devices have become a viable option for investigating critical physiological events ...
Organ-on-a-chip (OOC) provides microphysiological conditions on a microfluidic chip, which makes up ...
International audienceOver the decades, conventional in vitro culture systems and animal models have...