3D-printing on human acellular dermis for chest wall reconstructions : an in vitro and in ovo study

dc.contributor.authorGrandjean, Till
dc.contributor.authorHeumüller, Niklas
dc.contributor.authorGalata, Christian
dc.contributor.authorEmrich, Alicia
dc.contributor.authorMartin, Maximilian
dc.contributor.authorWiesmann-Imilowski, Nadine
dc.contributor.authorNickel, Daniela
dc.contributor.authorGercek, Erol
dc.contributor.authorDrees, Philipp
dc.contributor.authorRoessner, Eric Dominic
dc.contributor.authorRitz, Ulrike
dc.date.accessioned2026-07-22T10:21:30Z
dc.date.issued2025
dc.description.abstractBackground Massive bone or tissue defects caused by trauma, tumors or infections are a frequently occurring clinical problem. Novel biomaterials combined with new technologies offer new treatment options especially regarding reconstruction of bone and tissue. Aim of this study was to establish the stable and biocompatible combination of decellularized human dermis with a stable polymer via three-dimensional (3D) printing. Methods Polylactide (PLA) models were 3D-printed onto human acellular dermis (hAD) membranes using FreeCAD (computer-aided design) software for modeling and Ultimaker 2+ for printing. Cytotoxicity was assessed using L929 fibroblast cells in an 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazoliumbromid (MTT) assay analogue to DIN EN ISO 10993-5 guidelines. Laser microtome sectioning was performed to enable histological analysis involving hematoxylin-eosin (HE) staining for tissue morphology assessment. The chorioallantoic membrane (CAM) assay was conducted on fertilized chicken eggs to evaluate cytotoxic effects and vascular ingrowth, by microscopic imaging. Results PLA was successfully 3D-printed onto hAD, forming a stable bond. After 72 hours of incubation in PBS, the printed structure remained securely attached. Histological analysis confirmed the integrity of the collagen structure after printing with high temperatures, with only slight compression in the top layer of the hAD. Cytotoxicity testing according to ISO 10993-5 showed no significant reduction in cell viability (83%), thereby demonstrating biocompatibility. The CAM assay demonstrated vascular integration, with vessels forming around and connecting to the hybrid material. Conclusions The successful 3D printing of PLA onto hAD resulted in a stable hybrid material with preserved structural integrity and good fluid resistance. Histological and cytotoxicity analyses confirmed biocompatibility, while the CAM assay demonstrated vascular integration. These findings suggest that the hAD-PLA composite holds potential for biomedical applications, particularly in tissue engineering.en_GB
dc.identifier.doihttps://doi.org/10.25358/openscience-15733
dc.identifier.urihttps://openscience.ub.uni-mainz.de/handle/20.500.12030/15754
dc.language.isoeng
dc.rightsCC-BY-NC-ND-4.0
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subject.ddc610 Medizinde_DE
dc.subject.ddc610 Medical sciencesen_GB
dc.title3D-printing on human acellular dermis for chest wall reconstructions : an in vitro and in ovo studyen_GB
dc.typeZeitschriftenaufsatzde_DE
jgu.apc.netprice1332,20
jgu.apc.price1432,47
jgu.apc.taxrate7
jgu.identifier.uuid48df90d2-0478-42bb-902d-22aae11b8f76
jgu.journal.issue2
jgu.journal.titleJournal of thoracic disease
jgu.journal.volume18
jgu.nationalcurrency.usd1680,00
jgu.organisation.departmentFB 04 Medizinde_DE
jgu.organisation.nameJohannes Gutenberg-Universität Mainzde_DE
jgu.organisation.number2700
jgu.organisation.placeMainz
jgu.organisation.rorhttps://ror.org/023b0x485
jgu.pages.alternative106
jgu.publisher.doi10.21037/jtd-2025-767
jgu.publisher.eissn2077-6624
jgu.publisher.issn2072-1439
jgu.publisher.nameAME Publishing Company
jgu.publisher.placeHong Kong
jgu.publisher.year2025
jgu.rights.accessrightsopenAccessen_GB
jgu.subject.ddccode610
jgu.subject.dfgLebenswissenschaftende_DE
jgu.type.dinitypeArticleen_GB
jgu.type.resourceTexten_GB
jgu.type.versionPublished versionen_GB

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