Engineering bioinks for 3D bioprinting

G Decante, JB Costa, J Silva-Correia, MN Collins… - …, 2021 - iopscience.iop.org
In recent years, three-dimensional (3D) bioprinting has attracted wide research interest in
biomedical engineering and clinical applications. This technology allows for unparalleled …

3-D bioprinting technologies in tissue engineering and regenerative medicine: Current and future trends

ES Bishop, S Mostafa, M Pakvasa, HH Luu, MJ Lee… - Genes & diseases, 2017 - Elsevier
Advances in three-dimensional (3D) printing have increased feasibility towards the
synthesis of living tissues. Known as 3D bioprinting, this technology involves the precise …

3D bioprinting for cartilage and osteochondral tissue engineering

AC Daly, FE Freeman… - Advanced …, 2017 - Wiley Online Library
Significant progress has been made in the field of cartilage and bone tissue engineering
over the last two decades. As a result, there is real promise that strategies to regenerate …

Microcarriers for upscaling cultured meat production

V Bodiou, P Moutsatsou, MJ Post - Frontiers in nutrition, 2020 - frontiersin.org
Due to the considerable environmental impact and the controversial animal welfare
associated with industrial meat production, combined with the ever-increasing global …

Biofabrication of tissue constructs by 3D bioprinting of cell-laden microcarriers

R Levato, J Visser, JA Planell, E Engel, J Malda… - …, 2014 - iopscience.iop.org
Bioprinting allows the fabrication of living constructs with custom-made architectures by
spatially controlled deposition of multiple bioinks. This is important for the generation of …

Manufacturing human mesenchymal stem cells at clinical scale: process and regulatory challenges

V Jossen, C van den Bos, R Eibl, D Eibl - Applied microbiology and …, 2018 - Springer
Human mesenchymal stem cell (hMSC)-based therapies are of increasing interest in the
field of regenerative medicine. As economic considerations have shown, allogeneic therapy …

Large-scale production of stem cells utilizing microcarriers: a biomaterials engineering perspective from academic research to commercialized products

H Tavassoli, SN Alhosseini, A Tay, PPY Chan, SKW Oh… - Biomaterials, 2018 - Elsevier
Human stem cells, including pluripotent, embryonic and mesenchymal, stem cells play
pivotal roles in cell-based therapies. Over the past decades, various methods for expansion …

Advanced cell culture platforms: a growing quest for emulating natural tissues

M Mirbagheri, V Adibnia, BR Hughes… - Materials …, 2019 - pubs.rsc.org
In the body, cells inhabit within a complex three-dimensional (3D) extracellular matrix that
provides physical and chemical signals to regulate the cell fate. Cultured cells in Petri dishes …

Self-assembling hydrogel structures for neural tissue repair

S Peressotti, GE Koehl, JA Goding… - … Biomaterials Science & …, 2021 - ACS Publications
Hydrogel materials have been employed as biological scaffolds for tissue regeneration
across a wide range of applications. Their versatility and biomimetic properties make them …

Review of technology and materials for the development of cultured meat

DY Lee, SY Lee, JW Jung, JH Kim, DH Oh… - Critical Reviews in …, 2023 - Taylor & Francis
Cultured meat production technology suggested that can solve the problems of traditional
meat production such as inadequate breeding environment, wastewater, methane gas …