A pumpless multi-organ-on-a-chip (MOC) combined with a pharmacokinetic-pharmacodynamic (PK-PD) model

被引:100
作者
Lee, Hyuna [1 ]
Kim, Dae Shik [2 ]
Ha, Sang Keun [3 ]
Choi, Inwook [3 ]
Lee, Jong Min [2 ]
Sung, Jong Hwan [1 ]
机构
[1] Hongik Univ, Dept Chem Engn, Seoul, South Korea
[2] Seoul Natl Univ, Sch Chem & Biol Engn, Seoul, South Korea
[3] Korea Food Res Inst, Seongnam Si, Gyenggi Do, South Korea
关键词
multi-organ-on-a-chip; PK-PD modeling; microfluidics; ALLOMETRIC SCALING LAWS; CULTURE ANALOG DEVICE; DRUG DEVELOPMENT; HUMAN LIVER; INTESTINAL-ABSORPTION; METABOLISM; LUTEOLIN; SYSTEMS; CELLS; BIOLOGY;
D O I
10.1002/bit.26087
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
A multi-organ-on-a-chip (MOC), also known as a human-on-a-chip, aims to simulate whole body response to drugs by connecting microscale cell cultures of multiple tissue types via fluidic channels and reproducing the interaction between them. While several studies have demonstrated the usefulness of MOC at a proof-of-concept level, improvements are needed to enable wider acceptance of such systems; ease of use for general biological researchers, and a mathematical framework to design and interpret the MOC systems. Here, we introduce a pumpless, user-friendly MOC which can be easily assembled and operated, and demonstrate the use of a PK-PD model for interpreting drug's action inside the MOC. The metabolism-dependent anticancer activity of a flavonoid, luteolin, was evaluated in a two-compartment MOC containing the liver (HepG2) and the tumor (HeLa) cells, and the observed anticancer activity was significantly weaker than that anticipated from a well plate study. Simulation of a PK-PD model revealed that simultaneous metabolism and tumor-killing actions likely resulted in a decreased anti-cancer effect. Our work demonstrates that the combined platform of mathematical PK-PD model and an experimental MOC can be a useful tool for gaining an insight into the mechanism of action of drugs with interactions between multiple organs. Biotechnol. Bioeng. 2017;114: 432-443. (c) 2016 Wiley Periodicals, Inc.
引用
收藏
页码:432 / 443
页数:12
相关论文
共 73 条
[1]   In vitro zonation and toxicity in a hepatocyte bioreactor [J].
Allen, JW ;
Khetani, SR ;
Bhatia, SN .
TOXICOLOGICAL SCIENCES, 2005, 84 (01) :110-119
[2]   The flavonoids diosmetin and luteolin exert synergistic cytostatic effects in human hepatoma HepG2 cells via CYP1A-catalyzed metabolism, activation of JNK and ERK and P53/P21 up-regulation [J].
Androutsopoulos, Vasilis P. ;
Spandidos, Demetrios A. .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2013, 24 (02) :496-504
[3]   Flow rate analysis of a surface tension driven passive micropump [J].
Berthier, Erwin ;
Beebe, David J. .
LAB ON A CHIP, 2007, 7 (11) :1475-1478
[4]   Engineers are from PDMS-land, Biologists are from Polystyrenia [J].
Berthier, Erwin ;
Young, Edmond W. K. ;
Beebe, David .
LAB ON A CHIP, 2012, 12 (07) :1224-1237
[5]  
Chapra S. C., 2010, NUMERICAL METHODS EN, Vxviii, P968
[6]   Pharmacokinetics/Pharmacodynamics Model-Supported Early Drug Development [J].
Chen, Bin ;
Dong, Jennifer Q. ;
Pan, Wei-Jian ;
Ruiz, Ana .
CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2012, 13 (07) :1360-1375
[7]   Pharmacokinetic study of luteolin, apigenin, chrysoeriol and diosmetin after oral administration of Flos Chrysanthemi extract in rats [J].
Chen, Zhongjian ;
Kong, Sisi ;
Song, Feifeng ;
Li, Liping ;
Jiang, Huidi .
FITOTERAPIA, 2012, 83 (08) :1616-1622
[8]   Role of Catechol-O-Methyltransferase in the Disposition of Luteolin in Rats [J].
Chen, Zhongjian ;
Chen, Meng ;
Pan, Hao ;
Sun, Siyuan ;
Li, Liping ;
Zeng, Su ;
Jiang, Huidi .
DRUG METABOLISM AND DISPOSITION, 2011, 39 (04) :667-674
[9]   Key factors in the rising cost of new drug discovery and development [J].
Dickson, M ;
Gagnon, JP .
NATURE REVIEWS DRUG DISCOVERY, 2004, 3 (05) :417-429
[10]   Integrated pharmacokinetics and pharmacodynamics in drug development [J].
Dingemanse, Jasper ;
Appel-Dingemanse, Silke .
CLINICAL PHARMACOKINETICS, 2007, 46 (09) :713-737