Human Microphysiological Systems and Organoids as in Vitro Models for Toxicological Studies.
Human Microphysiological Systems and Organoids as in Vitro Models for Toxicological Studies.
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DOI:
10.3389/fpubh.2018.00185
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发表时间:
2018
影响因子:
5.2
通讯作者:
Truskey GA
中科院分区:
文献类型:
--
作者:
Truskey GA
Organoids and microphysiological systems represent two current approaches to reproduce organ function in vitro. These systems can potentially provide unbiased assays of function which are needed to understand the mechanism of action of environmental toxins. Culture models that replicate organ function and interactions among cell types and tissues move beyond existing screens that target individual pathways and provide a means to assay context-dependent function. The current state of organoid cultures and microphysiological systems is reviewed and applications discussed. While few studies have examined environmental pollutants, studies with drugs demonstrate the power of these systems to assess toxicity as well as mechanism of action. Strengths and limitations of organoids and microphysiological systems are reviewed and challenges are identified to produce suitable high capacity functional assays.
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影响因子:
64.5
作者:
Huch M;Gehart H;van Boxtel R;Hamer K;Blokzijl F;Verstegen MM;Ellis E;van Wenum M;Fuchs SA;de Ligt J;van de Wetering M;Sasaki N;Boers SJ;Kemperman H;de Jonge J;Ijzermans JN;Nieuwenhuis EE;Hoekstra R;Strom S;Vries RR;van der Laan LJ;Cuppen E;Clevers H
通讯作者:
Clevers H
影响因子:
6.1
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Agarwal A;Goss JA;Cho A;McCain ML;Parker KK
通讯作者:
Parker KK
影响因子:
4.6
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Edington CD;Chen WLK;Geishecker E;Kassis T;Soenksen LR;Bhushan BM;Freake D;Kirschner J;Maass C;Tsamandouras N;Valdez J;Cook CD;Parent T;Snyder S;Yu J;Suter E;Shockley M;Velazquez J;Velazquez JJ;Stockdale L;Papps JP;Lee I;Vann N;Gamboa M;LaBarge ME;Zhong Z;Wang X;Boyer LA;Lauffenburger DA;Carrier RL;Communal C;Tannenbaum SR;Stokes CL;Hughes DJ;Rohatgi G;Trumper DL;Cirit M;Griffith LG
通讯作者:
Griffith LG
影响因子:
6.1
作者:
Esch MB;Prot JM;Wang YI;Miller P;Llamas-Vidales JR;Naughton BA;Applegate DR;Shuler ML
通讯作者:
Shuler ML
影响因子:
8
作者:
Chang, Shih-Yu;Weber, Elijah J.;Eaton, David L.
通讯作者:
Eaton, David L.