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Front Cover: A general mechanism for extrusion bioprinting of dilute biomacromolecules is reported, using a composite bioink delivered through a core‐sheath microfluidic nozzle. The Ca2+‐crosslinked alginate component serves as the temporal structural support, and is selectively removed upon subsequent crosslinking of the biomacromolecular component. This is reported by Kai Zhu, Nan Chen, Xiao Liu,...
The recently developed 3D bioprinting technology has greatly improved the ability to generate biomimetic tissues that are structurally and functionally relevant to their human counterparts. The selection of proper biomaterials as the bioinks is a key step toward successful bioprinting. For example, viscosity of a bioink is an important rheological parameter to determine the flexibility in deposition...
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