4.6 Article

Alginate based 3D hydrogels as an in vitro co-culture model platform for the toxicity screening of new chemical entities

期刊

TOXICOLOGY AND APPLIED PHARMACOLOGY
卷 256, 期 1, 页码 62-72

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.taap.2011.07.013

关键词

Cell encapsulation; Alginate; 3D culture; HepG2; MCF-7; Co-culture

资金

  1. NSF [0846610]
  2. Div Of Civil, Mechanical, & Manufact Inn
  3. Directorate For Engineering [0846610] Funding Source: National Science Foundation

向作者/读者索取更多资源

Prediction of human response to potential therapeutic drugs is through conventional methods of in vitro cell culture assays and expensive in vivo animal testing. Alternatives to animal testing require sophisticated in vitro model systems that must replicate in vivo like function for reliable testing applications. Advancements in biomaterials have enabled the development of three-dimensional (3D) cell encapsulated hydrogels as in vitro drug screening tissue model systems. In this study, we have developed an in vitro platform to enable high density 3D culture of liver cells combined with a monolayer growth of target breast cancer cell line (MCF-7) in a static environment as a representative example of screening drug compounds for hepatotoxicity and drug efficacy. Alginate hydrogels encapsulated with serial cell densities of HepG2 cells (10(5)-10(8) cells/ml) are supported by a porous poly-carbonate disc platform and co-cultured with MCF-7 cells within standard cell culture plates during a 3 day study period. The clearance rates of drug transformation by HepG2 cells are measured using a coumarin based pro-drug. The platform was used to test for HepG2 cytotoxicity 50% (CT50) using commercially available drugs which further correlated well with published in vivo LD50 values. The developed test platform allowed us to evaluate drug dose concentrations to predict hepatotoxicity and its effect on the target cells. The in vitro 3D co-culture platform provides a scalable and flexible approach to test multiple-cell types in a hybrid setting within standard cell culture plates which may open up novel 3D in vitro culture techniques to screen new chemical entity compounds. (C) 2011 Elsevier Inc. All rights reserved.

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