2018
DOI: 10.1016/j.biomaterials.2018.04.001
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Stromal cell-laden 3D hydrogel microwell arrays as tumor microenvironment model for studying stiffness dependent stromal cell-cancer interactions

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Cited by 86 publications
(74 citation statements)
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“…20,21 Models employing micromolding and spheroid formation in a microwell-array platform permit stromal-tumor cell interactions that can affect both the chemical and mechanical microenvironment to influence cell differentiation and migration. 22,23 As more information is obtained on the role of cell-cell communication during invasion, engineered models must also reflect these interactions. For example, myoepithelial cells surrounding the basement membrane are thought to possess a tumor-suppressor role that can be lost during pre-cancerous neoplasia.…”
Section: Step 1: Invasion and Migrationmentioning
confidence: 99%
“…20,21 Models employing micromolding and spheroid formation in a microwell-array platform permit stromal-tumor cell interactions that can affect both the chemical and mechanical microenvironment to influence cell differentiation and migration. 22,23 As more information is obtained on the role of cell-cell communication during invasion, engineered models must also reflect these interactions. For example, myoepithelial cells surrounding the basement membrane are thought to possess a tumor-suppressor role that can be lost during pre-cancerous neoplasia.…”
Section: Step 1: Invasion and Migrationmentioning
confidence: 99%
“…37,38 Cells in 3D culture may showed more closely mimic in vivo tumor behavior, and a number of 3D culture systems have been reported that more accurately predict the cellular response compared to 2D culture. 39 Thus, 3D culture model is necessary to more accurate clinical drug screening.…”
Section: In Vitro Cell Cytotoxicity Studymentioning
confidence: 99%
“…As a biocompatible hydrogel, GelMA not only non-cytotoxic and biodegradable to cells but also consists of intrinsic arginine, glycine, and aspartate sequences. Thus, it is a superior material for mimicking extracellular matrix interactions in vitro ( Madl and Heilshorn, 2018 ; Yue et al, 2018 ). To perform cell encapsulation in 3D human embryonic kidney cell culture, we introduced micropatterning by exposing the proper mixture of GelMA and PI solution to UV light, to form covalent cross-links and polymerization.…”
Section: Discussionmentioning
confidence: 99%