Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models.

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Title: Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models.
Authors: Pint D; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria., Steindorfer T; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria., Lackner F; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria., Mohan T; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria., Gruber-Woelfler H; Institute of Process and Particle Engineering, Graz University of Technology, Inffeldgasse 13, 8010 Graz, Austria., Kargl R; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria., Stana Kleinschek K; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.
Source: ACS biomaterials science & engineering [ACS Biomater Sci Eng] 2026 Jul 13; Vol. 12 (7), pp. 3319-3329. Date of Electronic Publication: 2026 Mar 27.
Publication Type: Journal Article
Journal Info: Publisher: American Chemical Society Country of Publication: United States NLM ID: 101654670 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 2373-9878 (Electronic) Linking ISSN: 23739878 NLM ISO Abbreviation: ACS Biomater Sci Eng Subsets: MEDLINE
Database: MEDLINE Ultimate
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  Data: Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models.
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  Data: <searchLink fieldCode="AU" term="%22Pint+D%22">Pint D</searchLink>; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.<br /><searchLink fieldCode="AU" term="%22Steindorfer+T%22">Steindorfer T</searchLink>; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.<br /><searchLink fieldCode="AU" term="%22Lackner+F%22">Lackner F</searchLink>; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.<br /><searchLink fieldCode="AU" term="%22Mohan+T%22">Mohan T</searchLink>; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.<br /><searchLink fieldCode="AU" term="%22Gruber-Woelfler+H%22">Gruber-Woelfler H</searchLink>; Institute of Process and Particle Engineering, Graz University of Technology, Inffeldgasse 13, 8010 Graz, Austria.<br /><searchLink fieldCode="AU" term="%22Kargl+R%22">Kargl R</searchLink>; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.<br /><searchLink fieldCode="AU" term="%22Stana+Kleinschek+K%22">Stana Kleinschek K</searchLink>; Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.
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  Data: <searchLink fieldCode="JN" term="%22101654670%22">ACS biomaterials science & engineering</searchLink> [ACS Biomater Sci Eng] 2026 Jul 13; Vol. 12 (7), pp. 3319-3329. <i>Date of Electronic Publication: </i>2026 Mar 27.
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        Value: 10.1021/acsbiomaterials.5c02127
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      – TitleFull: Support-Enabled 3D Printing of Complex Anisotropic Hydrogel Structures Using Cellulose-Based Inks: Pathways Toward Biomimetic Human Aorta Models.
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              Text: 2026 Jul 13
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