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Paper | Open Access

Hyaluronic acid-based bioink for anisotropic neural tissue cryobioprinting

Andrea Andolfi1,2,§Ling Cai1,§María Valeria González Martínez1Carlos Ezio Garciamendez-Mijares1Francisco Del Valle Rodríguez1Regina Garza Garza1 Alex Ruofei Kuai1Xiao Kuang1Jouhaina Nejjari1Yu Shrike Zhang1 ( )
Division of Engineering in Medicine, Department of Medicine, Brigham and Women’s Hospital, Harvard Medical School, Cambridge, MA 02139, United States of America
Department of Informatics, Bioengineering, Robotics and Systems Engineering (DIBRIS), University of Genoa, Genoa, Italy

§ These authors contributed equally to this work and should be considered co-first author.

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Abstract

In this study, we present the development of a cryobioink designed to fabricate anisotropic scaffolds that support both neural and muscle cell-alignment. Given the critical role of cellular organization in nerve fibers and neuromuscular junctions, we employed a vertical cryobioprinting-enabled ice-templating technique to create scaffolds with aligned microchannels. These channels facilitated cell-alignment, which is important in modeling neural and neuromuscular tissues. By integrating hyaluronic acid-methacrylate (HAMA) with gelatin methacryloyl and the necessary cryoprotective agent melezitose, we showcased that the cryobioink could preserve cell viability during freezing/thawing processes, even at low temperatures employed during cryobioprinting. We optimized HAMA concentration to enhance neural cell viability and alignment, and successfully constructed anisotropic scaffolds featuring distinct sections that contained muscle and neural cells, establishing a model for neuromuscular junctions. The resulting models provide a versatile platform for studying nerve fibers and neuromuscular dysfunctions, offering potential advancements in neural regeneration research.

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International Journal of Extreme Manufacturing

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Cite this article:
Andolfi A, Cai L, Martínez MVG, et al. Hyaluronic acid-based bioink for anisotropic neural tissue cryobioprinting. International Journal of Extreme Manufacturing, 2026, 8(1). https://doi.org/10.1088/2631-7990/adfeee

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Received: 05 November 2024
Revised: 17 February 2025
Accepted: 25 August 2025
Published: 29 September 2025
© 2025 The Author(s).

Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.