Biofabrication · 2018 · 57 citations · 25 references
Tissue EngineeringEngineeringCell AdhesionBiofabricationCell ProliferationBiomedical EngineeringCell GrowthTumor BiologyTissue DevelopmentCancer Cell BiologyInhibitor C19Matrix BiologyCancer GrowthEpithelial–mesenchymal TransitionHela/hydrogel Grid ConstructEpithelial-mesenchymal InteractionsCell EngineeringCell Biology3D Bioprinting3D PrintingCervical CancerCell-matrix InteractionForced ExtrusionMedicineBiomaterialsExtracellular Matrix
An advanced in vitro cervical tumor model was established by 3D printing to study the epithelial-to-mesenchymal transition (EMT), which is a very important stage of dissemination of carcinoma leading to metastatic tumors. A HeLa/hydrogel grid construct composed of gelatin, alginate, Matrigel and HeLa cells was fabricated by forced extrusion in a layer-by-layer fashion. HeLa cells rapidly proliferated, formed spheroids and presented tumorigenic characteristic in the 3D-printed structure. With the supplement of TGF-β, aggregated HeLa cells started to disintegrate, and some of them changed into fibroblast-like spindle morphology, which indicated that EMT was induced. The down-regulation of epithelial marker E-cadherin, and up-regulation of mesenchymal markers such as snail, vimentin and N-cadherin were all observed in the 3D-printed model, and performed differently in 3D and 2D models. The TGF-β induced EMT was inhibited by the treatment of disulfiram and EMT pathway inhibitor C19 in a dose dependent manner, showing great potential for future studies of a therapeutic program towards cervical tumor metastasis.
25
Three-dimensional printing of Hela cells for cervical tumor model <i>in vitro</i>
Yu Zhao, Rui Yao, Liliang Ouyang et al. · Biofabrication · 2014 · 526 citations
A Multiscale Model for Avascular Tumor Growth
Yi Jiang, Jelena Pješivac–Grbović, Charles L. Cantrell et al. · Biophysical Journal · 2005 · 376 citations · Full text
3D bioprinted glioma stem cells for brain tumor model and applications of drug susceptibility
Xingliang Dai, Cheng Ma, Qing Lan et al. · Biofabrication · 2016 · 291 citations