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Controlling the Bioprinting Efficiency of Alginate-Gelatin by Varying Hydroxyapatite Concentrations to Fabricate Bioinks for Bone Tissue Engineering. [PDF]
Koutsomarkos N +3 more
europepmc +1 more source
Anionic Polysaccharides: Promising 3D Bioink Candidates for Tissue Engineering. [PDF]
Wang F +3 more
europepmc +1 more source
Dynamic Bioinks to Advance Bioprinting [PDF]
AbstractThe development of bioinks for bioprinting of cell‐laden constructs remains a challenge for tissue engineering, despite vigorous investigation. Hydrogels to be used as bioinks must fulfill a demanding list of requirements, mainly focused around printability and cell function.
Francis Morgan +2 more
exaly +3 more sources
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Nanocomposite bioinks for 3D bioprinting
Acta Biomaterialia, 2022Three-dimensional (3D) bioprinting is an advanced technology to fabricate artificial 3D tissue constructs containing cells and hydrogels for tissue engineering and regenerative medicine. Nanocomposite reinforcement endows hydrogels with superior properties and tailored functionalities.
Yanli Cai +5 more
openaire +2 more sources
Ultrasonic Microplotting of Microgel Bioinks
ACS Applied Materials & Interfaces, 2020Material scaffolds that mimic the structure, function, and bioactivity of native biological tissues are in constant development. Recently, material scaffolds composed of microgel particles have shown promise for applications ranging from bone regeneration to spheroid cell growth.
D. Chester +4 more
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Materials as Bioinks and Bioink Design
2019This chapter summarizes the major concepts and recent progress in the design and formulation of bioinks for 3D bioprinting. Bioinks encompass cells and materials designed for processing by an automated biofabrication technique, such as direct-write, inkjet, stereolithography (SLA), or laser-induced forward transfer (LIFT) technologies, with each having
Paula Camacho +4 more
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A review of nanoparticles in bioinks
NanotechnologyAbstract A nanoparticle is commonly referred as a particle with a diameter between one to one hundred nanometers (nm). Nanoparticles are classified into 3 main groups based on their composition which are organic (polymeric nanoparticles, micelles, dendrimers, liposomes), inorganic (metal-based, metal oxide-based, ceramic-based, quantum ...
Ilyas Inci +3 more
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2015
Three-dimensional bioprinting has developed as new technology to support regenerative medicine. The major components of bioprinting include computer aided design of constructs, instruments to “print” structures, and the focus of this chapter, bioinks. Bioinks are composed of several components including solutions and gels that provide structure to the ...
Stuart K. Williams, James B. Hoying
openaire +1 more source
Three-dimensional bioprinting has developed as new technology to support regenerative medicine. The major components of bioprinting include computer aided design of constructs, instruments to “print” structures, and the focus of this chapter, bioinks. Bioinks are composed of several components including solutions and gels that provide structure to the ...
Stuart K. Williams, James B. Hoying
openaire +1 more source
Recombinant spider silk-based bioinks
Biofabrication, 2017Bioinks, 3D cell culture systems which can be printed, are still in the early development stages. Currently, extensive research is going into designing printers to be more accommodating to bioinks, designing scaffolds with stiff materials as support structures for the often soft bioinks, and modifying the bioinks themselves.
Elise DeSimone +3 more
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