Long‐term human primary hepatocyte cultures in a microfluidic liver biochip show maintenance of mRNA levels and higher drug metabolism compared with Petri cultures
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Eric Leclerc | Patrick Paullier | E. Leclerc | S. Jacques | Thibault Bricks | P. Paullier | M. Fleury | F. Merlier | R. Jellali | Thibault Bricks | Rachid Jellali | Franck Merlier | Marie-José Fleury | Sébastien Jacques
[1] I. Marison,et al. The importance of ammonia in mammalian cell culture. , 1996, Journal of biotechnology.
[2] K. Audus,et al. Formation of extensive canalicular networks by rat hepatocytes cultured in collagen-sandwich configuration. , 1994, The American journal of physiology.
[3] Eric Leclerc,et al. Investigation of the hepatotoxicity of flutamide: pro-survival/apoptotic and necrotic switch in primary rat hepatocytes characterized by metabolic and transcriptomic profiles in microfluidic liver biochips. , 2014, Toxicology in vitro : an international journal published in association with BIBRA.
[4] Sang-Hoon Lee,et al. Spheroid-based three-dimensional liver-on-a-chip to investigate hepatocyte-hepatic stellate cell interactions and flow effects. , 2013, Lab on a chip.
[5] Laurent Griscom,et al. Predictive toxicology using systemic biology and liver microfluidic "on chip" approaches: application to acetaminophen injury. , 2012, Toxicology and applied pharmacology.
[6] M. Grant,et al. Cryopreservation of rat hepatocyte monolayers: cell viability and cytochrome P450 content in post-thaw cultures. , 2002, Toxicology in vitro : an international journal published in association with BIBRA.
[7] Dmytryshyn. Microfluidic cell culture systems and cellular analysis , 2011 .
[8] Cécile Legallais,et al. Parallelized microfluidic biochips in multi well plate applied to liver tissue engineering , 2012 .
[9] Catarina Brito,et al. Human liver cell spheroids in extended perfusion bioreactor culture for repeated‐dose drug testing , 2012, Hepatology.
[10] Eric Leclerc,et al. Metabolic characterization of primary rat hepatocytes cultivated in parallel microfluidic biochips. , 2013, Journal of pharmaceutical sciences.
[11] B. Jones,et al. In vitro and in vivo glucuronidation of midazolam in humans. , 2009, British journal of clinical pharmacology.
[12] Teruo Fujii,et al. Cell Culture in 3-Dimensional Microfluidic Structure of PDMS (polydimethylsiloxane) , 2003 .
[13] Laurent Griscom,et al. Investigation of expression and activity levels of primary rat hepatocyte detoxication genes under various flow rates and cell densities in microfluidic biochips , 2014, Biotechnology progress.
[14] Leslie Z. Benet,et al. The Role of Transporters in the Pharmacokinetics of Orally Administered Drugs , 2009, Pharmaceutical Research.
[15] Eric Leclerc,et al. Integration of pharmacokinetic and NRF2 system biology models to describe reactive oxygen species production and subsequent glutathione depletion in liver microfluidic biochips after flutamide exposure. , 2014, Toxicology in vitro : an international journal published in association with BIBRA.
[16] A. Guillouzo,et al. General review on in vitro hepatocyte models and their applications. , 2010, Methods in molecular biology.
[17] Roderick Edwards,et al. Theoretical Biology and Medical Modelling Open Access a Stochastic Model for Circadian Rhythms from Coupled Ultradian Oscillators , 2007 .
[18] F. Bois,et al. Evaluation of a liver microfluidic biochip to predict in vivo clearances of seven drugs in rats. , 2014, Journal of pharmaceutical sciences.
[19] Cécile Legallais,et al. Evaluation of seven drug metabolisms and clearances by cryopreserved human primary hepatocytes cultivated in microfluidic biochips , 2013, Xenobiotica; the fate of foreign compounds in biological systems.
[20] Ding‐Shinn Chen,et al. Long-Term Culture of Hepatocytes from Human Adults , 1998, Journal of Biomedical Science.
[21] A. Ahluwalia,et al. Modular bioreactor for primary human hepatocyte culture: Medium flow stimulates expression and activity of detoxification genes , 2011, Biotechnology journal.
[22] M. Toner,et al. Effects of oxygenation and flow on the viability and function of rat hepatocytes cocultured in a microchannel flat-plate bioreactor. , 2001, Biotechnology and bioengineering.
[23] Laurent Griscom,et al. Behavior of HepG2/C3A cell cultures in a microfluidic bioreactor , 2011 .
[24] M. Yarmush,et al. Evaluation of a microfluidic based cell culture platform with primary human hepatocytes for the prediction of hepatic clearance in human. , 2009, Biochemical pharmacology.
[25] M. Yarmush,et al. A microfluidic hepatic coculture platform for cell-based drug metabolism studies. , 2010, Biochemical pharmacology.
[26] Cécile Legallais,et al. A cocktail of metabolic probes demonstrates the relevance of primary human hepatocyte cultures in a microfluidic biochip for pharmaceutical drug screening. , 2011, International journal of pharmaceutics.
[27] Y. Sakai,et al. The importance of physiological oxygen concentrations in the sandwich cultures of rat hepatocytes on gas‐permeable membranes , 2014, Biotechnology progress.
[28] Laurent Griscom,et al. Improvement of HepG2/C3a cell functions in a microfluidic biochip , 2011, Biotechnology and bioengineering.
[29] A. Wolkoff,et al. Hepatocytes maintain greater fluorescent bile acid accumulation and greater sensitivity to drug‐induced cell death in three‐dimensional matrix culture , 2014, Physiological reports.
[30] H. Iwahashi,et al. Expression of proteins associated with adipocyte lipolysis was significantly changed in the adipose tissues of the obese spontaneously hypertensive/NDmcr-cp rat , 2014, Diabetology & Metabolic Syndrome.
[31] Stefan Willmann,et al. Theoretical Biology and Medical Modelling Open Access Dynamically Simulating the Interaction of Midazolam and the Cyp3a4 Inhibitor Itraconazole Using Individual Coupled Whole-body Physiologically-based Pharmacokinetic (wb-pbpk) Models , 2022 .
[32] M. Pfaffl,et al. A new mathematical model for relative quantification in real-time RT-PCR. , 2001, Nucleic acids research.