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Simultaneous evaluation of anti-EGFR-induced tumour and adverse skin effects in a microfluidic human 3D co-culture model.

Juliane Hübner | Marian Raschke | Isabel Rütschle | Sarah Gräßle | Tobias Hasenberg | Kerstin Schirrmann | Alexandra Lorenz | Susanne Schnurre | Roland Lauster | Ilka Maschmeyer | Thomas Steger-Hartmann | Uwe Marx
Scientific reports | 2018

Antibody therapies targeting the epithelial growth factor receptor (EGFR) are being increasingly applied in cancer therapy. However, increased tumour containment correlates proportionally with the severity of well-known adverse events in skin. The prediction of the latter is not currently possible in conventional in vitro systems and limited in existing laboratory animal models. Here we established a repeated dose "safficacy" test assay for the simultaneous generation of safety and efficacy data. Therefore, a commercially available multi-organ chip platform connecting two organ culture compartments was adapted for the microfluidic co-culture of human H292 lung cancer microtissues and human full-thickness skin equivalents. Repeated dose treatment of the anti-EGFR-antibody cetuximab showed an increased pro-apoptotic related gene expression in the tumour microtissues. Simultaneously, proliferative keratinocytes in the basal layer of the skin microtissues were eliminated, demonstrating crucial inhibitory effects on the physiological skin cell turnover. Furthermore, antibody exposure modulated the release of CXCL8 and CXCL10, reflecting the pattern changes seen in antibody-treated patients. The combination of a metastatic tumour environment with a miniaturized healthy organotypic human skin equivalent make this "safficacy" assay an ideal tool for evaluation of the therapeutic index of EGFR inhibitors and other promising oncology candidates.

Pubmed ID: 30301942

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Associated grants

  • Agency: Bundesministerium für Bildung und Forschung (Federal Ministry of Education and Research), International
    Id: 031B0062

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GraphPad Prism (tool)

RRID:SCR_002798

Statistical analysis software that combines scientific graphing, comprehensive curve fitting (nonlinear regression), understandable statistics, and data organization. Designed for biological research applications in pharmacology, physiology, and other biological fields for data analysis, hypothesis testing, and modeling.

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Thermo Fisher Scientific (tool)

RRID:SCR_008452

Commercial vendor and service provider of laboratory reagents and antibodies. Supplier of scientific instrumentation, reagents and consumables, and software services.

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NCI-H292 (tool)

RRID:CVCL_0455

Cell line NCI-H292 is a Cancer cell line with a species of origin Homo sapiens (Human)

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