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Biofabrication|February 16, 2022
Numerical and experimental simulation of a dynamic-rotational 3D cell culture for stratified living tissue modelsRaphaël F Canadas, Ziyu Liu, Luca Gasperini, et al.Biofabrication|January 27, 2022
Mechanically and biologically promoted cell-laden constructs generated using tissue-specific bioinks for tendon/ligament tissue engineering applicationsSuhun Chae, Yeong-Jin Choi, Dong-Woo ChoBiofabrication|March 25, 2022
3D bioprinted, vascularized neuroblastoma tumor environment in fluidic chip devices for precision medicine drug testingDaniel Nothdurfter, Christian Ploner, Débora C Coraça-Huber, et al.Biofabrication|March 25, 2022
In vitrobreast cancer model with patient-specific morphological features for personalized medicineJonghyeuk Han, Seunggyu Jeon, Min Kyeong Kim, et al.Biofabrication|March 28, 2022
Culture of cancer spheroids and evaluation of anti-cancer drugs in 3D-printed miniaturized continuous stirred tank reactors (mCSTRs)Salvador Gallegos-Martínez, Itzel Montserrat Lara-Mayorga, Mohamadmahdi Samandari, et al.Biofabrication|October 5, 2018
Co-axial wet-spinning in 3D bioprinting: state of the art and future perspective of microfluidic integrationMarco Costantini, Cristina Colosi, Wojciech Święszkowski, et al.Biofabrication|February 24, 2022
Particulate ECM biomaterial ink is 3D printed and naturally crosslinked to form structurally-layered and lubricated cartilage tissue mimicsJeanne E Barthold, Kaitlin P McCreery, Jaylene Martinez, et al.Biofabrication|March 2, 2022
Micropatterned conductive elastomer patch based on poly (glycerol sebacate)-graphene for cardiac tissue repairMengting Shi, Lang Bai, Meiguang Xu, et al.Biofabrication|September 6, 2018
Bottom-up biofabrication using microfluidic techniquesMinghao Nie, Shoji TakeuchiBiofabrication|May 23, 2018
Microfluidic system for modelling 3D tumour invasion into surrounding stroma and drug screeningZhichang Du, Shengli Mi, Xiaoman Yi, et al.Pageof 168