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Organ-on-a-chip: Recent breakthroughs and future prospects
Q Wu, J Liu, X Wang, L Feng, J Wu, X Zhu… - Biomedical engineering …, 2020 - Springer
The organ-on-a-chip (OOAC) is in the list of top 10 emerging technologies and refers to a
physiological organ biomimetic system built on a microfluidic chip. Through a combination of …
physiological organ biomimetic system built on a microfluidic chip. Through a combination of …
Multiorgan-on-a-chip: a systemic approach to model and decipher inter-organ communication
N Picollet-D'hahan, A Zuchowska, I Lemeunier… - Trends in …, 2021 - cell.com
Multiorgan-on-a-chip (multi-OoC) platforms have great potential to redefine the way in which
human health research is conducted. After briefly reviewing the need for comprehensive …
human health research is conducted. After briefly reviewing the need for comprehensive …
Evolution of biochip technology: A review from lab-on-a-chip to organ-on-a-chip
N Azizipour, R Avazpour, DH Rosenzweig, M Sawan… - Micromachines, 2020 - mdpi.com
Following the advancements in microfluidics and lab-on-a-chip (LOC) technologies, a novel
biomedical application for microfluidic based devices has emerged in recent years and …
biomedical application for microfluidic based devices has emerged in recent years and …
Organ‐on‐a‐chip platforms: a convergence of advanced materials, cells, and microscale technologies
S Ahadian, R Civitarese, D Bannerman… - Advanced …, 2018 - Wiley Online Library
Significant advances in biomaterials, stem cell biology, and microscale technologies have
enabled the fabrication of biologically relevant tissues and organs. Such tissues and organs …
enabled the fabrication of biologically relevant tissues and organs. Such tissues and organs …
Organ‐on‐a‐Chip Systems: microengineering to biomimic living systems
“Organ‐on‐a‐chip” systems integrate microengineering, microfluidic technologies, and
biomimetic principles to create key aspects of living organs faithfully, including critical …
biomimetic principles to create key aspects of living organs faithfully, including critical …
Engineered liver-on-a-chip platform to mimic liver functions and its biomedical applications: A review
J Deng, W Wei, Z Chen, B Lin, W Zhao, Y Luo, X Zhang - Micromachines, 2019 - mdpi.com
Hepatology and drug development for liver diseases require in vitro liver models. Typical
models include 2D planar primary hepatocytes, hepatocyte spheroids, hepatocyte …
models include 2D planar primary hepatocytes, hepatocyte spheroids, hepatocyte …
[HTML][HTML] Gut-on-a-chip: Mimicking and monitoring the human intestine
Over the last few years, the intestine has been extensively studied using in vitro microfluidic
systems, commonly known as gut-on-a-chip (GOC) devices. This interest has been due not …
systems, commonly known as gut-on-a-chip (GOC) devices. This interest has been due not …
Organic electrochemical transistors as on-site signal amplifiers for electrochemical aptamer-based sensing
Electrochemical aptamer-based sensors are typically deployed as individual, passive,
surface-functionalized electrodes, but they exhibit limited sensitivity especially when the …
surface-functionalized electrodes, but they exhibit limited sensitivity especially when the …
A critical perspective on 3D liver models for drug metabolism and toxicology studies
AS Serras, JS Rodrigues, M Cipriano… - Frontiers in cell and …, 2021 - frontiersin.org
The poor predictability of human liver toxicity is still causing high attrition rates of drug
candidates in the pharmaceutical industry at the non-clinical, clinical, and post-marketing …
candidates in the pharmaceutical industry at the non-clinical, clinical, and post-marketing …
Simulating drug concentrations in PDMS microfluidic organ chips
Microfluidic organ-on-a-chip (Organ Chip) cell culture devices are often fabricated using
polydimethylsiloxane (PDMS) because it is biocompatible, transparent, elastomeric, and …
polydimethylsiloxane (PDMS) because it is biocompatible, transparent, elastomeric, and …