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Conformal Bioprinting of Bi-phasic Jammed Bioinks, Independent of Gravity, Orientation, and Curvature

2025-05-22

Abstract excerpt

Rapid in situ bioprinting on complex, human-scale anatomical surfaces remain a key challenge for clinical translation. Here, we present a gravity-independent, conformal bioprinting strategy using bi-phasic granular bioink and multinozzle printheads capable of adapting to arbitrary surface curvatures. The bioink comprised of jammed gelatin microgels suspended in a fibrinogen matrix exhibits yield-stress behavior to...

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Identifiers and source

Literature Corpus work
c39e5c99-d682-5a07-8f73-8019dc7a1f0a
DOI
10.1101/2025.05.16.654553
Open publication

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Conformal Bioprinting of Bi-phasic Jammed Bioinks, Independent of Gravity, Orientation, and CurvatureDOI 10.1101/2025.05.16.654553
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