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Biofabrication|April 12, 2018
Research and development of 3D printed vasculature constructsXinda Li, Libiao Liu, Xinzhi Zhang, et al.Biofabrication|April 30, 2019
Comprehensive tuning of bioadhesive properties of polydimethylsiloxane (PDMS) membranes with controlled porosityYeongseok Jang, Minseok Lee, Hyojae Kim, et al.Biofabrication|September 21, 2017
Biomimetic matrix fabricated by LMP-1 gene-transduced MC3T3-E1 cells for bone regenerationJunxuan Ma, Wei Guo, Manman Gao, et al.Biofabrication|November 15, 2017
Effect of scaffold morphology and cell co-culture on tenogenic differentiation of HADMSC on centrifugal melt electrospun poly (L‑lactic acid) fibrous meshesShaohua Wu, Hao Peng, Xiuhong Li, et al.Biofabrication|May 26, 2022
Long-term mechanical loading is required for the formation of 3D bioprinted functional osteocyte bone organoidsJianhua Zhang, Julia Griesbach, Marsel Ganeyev, et al.Biofabrication|May 11, 2022
Extrusion 3D bioprinting of functional self-supporting neural constructs using a photoclickable gelatin bioinkYue Yao, Andrey Molotnikov, Helena C Parkington, et al.Biofabrication|February 3, 2018
Microspheres containing decellularized cartilage induce chondrogenesis in vitro and remain functional after incorporation within a poly(caprolactone) filament useful for fabricating a 3D scaffoldPaulomi Ghosh, Stacey M S Gruber, Chia-Ying Lin, et al.Biofabrication|December 12, 2018
Role and mechanisms of a three-dimensional bioprinted microtissue model in promoting proliferation and invasion of growth-hormone-secreting pituitary adenoma cellsJinfu Diao, Chuanbao Zhang, Dainan Zhang, et al.Biofabrication|June 21, 2022
Computer-aided patterning of PCL microspheres to build modular scaffolds featuring improved strength and neovascularized tissue integrationAurelio Salerno, Antonio Palladino, Carmela Pizzoleo, et al.Biofabrication|June 28, 2022
Smart acoustic 3D cell construct assembly with high-resolutionXuejia Hu, Jingjing Zheng, Qinghao Hu, et al.Pageof 168