том 17 издание 1 страницы 15007

A microvascularized in vitro liver model for disease modeling and drug discovery

Flavio Bonanini 1, 2
Roelof Dinkelberg 1, 2
Manuel Caro Torregrosa 1, 2
Nienke Kortekaas 1, 2
Tessa M. S. Hagens 1, 2
Stéphane Treillard 1, 2
Dorota Kurek 1, 2
Vincent Van Duinen 1, 2
P Vulto 1, 2
Kristin Bircsak 3, 4
1
 
MIMETAS BV, De Limes 7, Oegstgeest, Oegstgeest, 2342 DH, NETHERLANDS.
2
 
Mimetas, Oegstgeest, The Netherlands.
3
 
MIMETAS INC, 704 Quince Orchard Rd, Suite 260, Gaithersburg, MD 20878, UNITED STATES.
4
 
Mimetas US, INC, Gaithersburg, MD 20878, United States of America.
Тип публикацииJournal Article
Дата публикации2024-10-24
scimago Q1
wos Q1
БС1
SJR1.628
CiteScore13.4
Impact factor8.0
ISSN17585082, 17585090
Краткое описание

Drug discovery for complex liver diseases faces alarming attrition rates. The lack of non-clinical models that recapitulate key aspects of liver (patho)-physiology is likely contributing to the inefficiency of developing effective treatments. Of particular notice is the common omission of an organized microvascular component despite its importance in maintaining liver function and its involvement in the development of several pathologies. Increasing the complexity of in vitro models is usually associated with a lack of scalability and robustness which hinders their implementation in drug development pipelines. Here, we describe a comprehensive liver microphysiological system comprising stellates, liver-derived endothelial cells and hepatocytes conceived within a scalable and automated platform. We show that endothelial cells self-organize in a microvascular network when co-cultured with stellates in a hydrogel. In a tri-culture, hepatocytes polarize accordingly, with a basolateral side facing blood vessels and an apical side facing bile-canaliculi-like structures. Stellates interact and surround the hollow microvessels. Steatosis was induced by exogenous administration of fatty acids which could be prevented by co-administration of firsocostat. Administration of TGF-β resulted in an activated stellate cells phenotype which could be prevented by the co-administration of SB-431542. The model was implemented on a microtiter plate format comprising 64 chips which enabled the development of a fully automated, multiplexed fibrosis assay with a robust Z’ factor suitable for high-throughput applications.

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Toxicology
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ГОСТ |
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Bonanini F. et al. A microvascularized in vitro liver model for disease modeling and drug discovery // Biofabrication. 2024. Vol. 17. No. 1. p. 15007.
ГОСТ со всеми авторами (до 50) Скопировать
Bonanini F., Dinkelberg R., Torregrosa M. C., Kortekaas N., Hagens T. M. S., Treillard S., Kurek D., Van Duinen V., Vulto P., Bircsak K. A microvascularized in vitro liver model for disease modeling and drug discovery // Biofabrication. 2024. Vol. 17. No. 1. p. 15007.
RIS |
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TY - JOUR
DO - 10.1088/1758-5090/ad818a
UR - https://iopscience.iop.org/article/10.1088/1758-5090/ad818a
TI - A microvascularized in vitro liver model for disease modeling and drug discovery
T2 - Biofabrication
AU - Bonanini, Flavio
AU - Dinkelberg, Roelof
AU - Torregrosa, Manuel Caro
AU - Kortekaas, Nienke
AU - Hagens, Tessa M. S.
AU - Treillard, Stéphane
AU - Kurek, Dorota
AU - Van Duinen, Vincent
AU - Vulto, P
AU - Bircsak, Kristin
PY - 2024
DA - 2024/10/24
PB - IOP Publishing
SP - 15007
IS - 1
VL - 17
PMID - 39348859
SN - 1758-5082
SN - 1758-5090
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2024_Bonanini,
author = {Flavio Bonanini and Roelof Dinkelberg and Manuel Caro Torregrosa and Nienke Kortekaas and Tessa M. S. Hagens and Stéphane Treillard and Dorota Kurek and Vincent Van Duinen and P Vulto and Kristin Bircsak},
title = {A microvascularized in vitro liver model for disease modeling and drug discovery},
journal = {Biofabrication},
year = {2024},
volume = {17},
publisher = {IOP Publishing},
month = {oct},
url = {https://iopscience.iop.org/article/10.1088/1758-5090/ad818a},
number = {1},
pages = {15007},
doi = {10.1088/1758-5090/ad818a}
}
MLA
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Bonanini, Flavio, et al. “A microvascularized in vitro liver model for disease modeling and drug discovery.” Biofabrication, vol. 17, no. 1, Oct. 2024, p. 15007. https://iopscience.iop.org/article/10.1088/1758-5090/ad818a.