Results 121 to 130 of about 59,063 (155)
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Nature Biotechnology, 2014
An organ-on-a-chip is a microfluidic cell culture device created with microchip manufacturing methods that contains continuously perfused chambers inhabited by living cells arranged to simulate tissue- and organ-level physiology. By recapitulating the multicellular architectures, tissue-tissue interfaces, physicochemical microenvironments and vascular ...
Sangeeta N, Bhatia, Donald E, Ingber
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An organ-on-a-chip is a microfluidic cell culture device created with microchip manufacturing methods that contains continuously perfused chambers inhabited by living cells arranged to simulate tissue- and organ-level physiology. By recapitulating the multicellular architectures, tissue-tissue interfaces, physicochemical microenvironments and vascular ...
Sangeeta N, Bhatia, Donald E, Ingber
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Scientific American, 2011
The article discusses the development of a microchip that simulates the activities and mechanics of entire organs and organ systems, called "organs on a chip." According to the author, organs on a chip would help scientists deal with some of the more challenging aspects of research, such as the need to experiment on whole animals.
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The article discusses the development of a microchip that simulates the activities and mechanics of entire organs and organ systems, called "organs on a chip." According to the author, organs on a chip would help scientists deal with some of the more challenging aspects of research, such as the need to experiment on whole animals.
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2021
Abstract Abstract: This chapter explores organs-on-a-chip, miniaturized bioprinted organ tissues enclosed in a microfluidic housing (microfluidics refers to very small-scale plumbing) that can mimic functions of human physiology or disease and are particularly effective when multiple tissue types—for example, lung, heart, and liver—can ...
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Abstract Abstract: This chapter explores organs-on-a-chip, miniaturized bioprinted organ tissues enclosed in a microfluidic housing (microfluidics refers to very small-scale plumbing) that can mimic functions of human physiology or disease and are particularly effective when multiple tissue types—for example, lung, heart, and liver—can ...
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Microfabrication of human organs-on-chips
Nature Protocols, 2013'Organs-on-chips' are microengineered biomimetic systems containing microfluidic channels lined by living human cells, which replicate key functional units of living organs to reconstitute integrated human organ-level pathophysiology in vitro. These microdevices can be used to test efficacy and toxicity of drugs and chemicals, and to create in vitro ...
Dongeun, Huh +7 more
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2016
The process of new drug development is both time and cost intensive. Therefore, all test systems, in particular during the pre-clinical phase, have to provide reliable results to minimize the risk of failure at a later stage of drug development. However, current pre-clinical studies are mainly performed using experimental animals and in vitro cell ...
N. Beißner, T. Lorenz, S. Reichl
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The process of new drug development is both time and cost intensive. Therefore, all test systems, in particular during the pre-clinical phase, have to provide reliable results to minimize the risk of failure at a later stage of drug development. However, current pre-clinical studies are mainly performed using experimental animals and in vitro cell ...
N. Beißner, T. Lorenz, S. Reichl
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Organs-on-a-chip for drug discovery
Current Opinion in Pharmacology, 2013The current drug discovery process is arduous and costly, and a majority of the drug candidates entering clinical trials fail to make it to the marketplace. The standard static well culture approaches, although useful, do not fully capture the intricate in vivo environment.
Seila, Selimović +2 more
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Adoption of organ-on-chip platforms by the pharmaceutical industry
Nature Reviews Drug Discovery, 2021Paul Vulto, Jos Joore, Joore Jos
exaly

