2020
DOI: 10.1088/1361-6439/ababf4
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Real-time physiological sensor-based liver-on-chip device for monitoring drug toxicity

Abstract: Organ-on-chip models, known as microphysiological systems, are created to mimic the anatomy and physiology of a human organ at the micro-level. Besides being pivotal in the reverse engineering of human organs and pathogenesis studies, they serve as an alternative to animal testing and the development of pharmaceutics. Monitoring the extracellular stromal environment is the basis for gaining in-depth knowledge of the pathophysiology of cell culture. Hence, it is extensively employed as an essential tool in the … Show more

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Cited by 35 publications
(33 citation statements)
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“…The monolayer formed on the 3rd day or 72 h. In the current study, the TEER value 370–390 Ω/mm 2 represents a monolayer formation. However, in previous research, the TEER range of 345–395 Ω/mm 2 indicates a compact HepG2 monolayer formation [ 13 ]. The difference from the previously reported TEER range could be due to the co-culture of HepG2 cells with fibroblasts in the present work.…”
Section: Resultsmentioning
confidence: 95%
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“…The monolayer formed on the 3rd day or 72 h. In the current study, the TEER value 370–390 Ω/mm 2 represents a monolayer formation. However, in previous research, the TEER range of 345–395 Ω/mm 2 indicates a compact HepG2 monolayer formation [ 13 ]. The difference from the previously reported TEER range could be due to the co-culture of HepG2 cells with fibroblasts in the present work.…”
Section: Resultsmentioning
confidence: 95%
“…Physiological shear stress induces better monolayer formation and CYP450 enzyme activity [ 36 ]. Hence, the shear stress of 0.5 dyn/cm 2 was applied to achieve better monolayer formation than static cell culture [ 13 , 36 , 37 ]. The TEER values of liver MPS were taken at every 1-h interval for 144 h, as shown in Fig.…”
Section: Resultsmentioning
confidence: 99%
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