Publication:

Spatially confined induction of endochondral ossification by functionalized hydrogels for ectopic engineering of osteochondral tissues

Date

Date

Date
2018
Journal Article
Published version
cris.lastimport.scopus2025-05-22T03:47:04Z
cris.lastimport.wos2025-08-18T01:31:51Z
cris.virtual.orcidhttps://orcid.org/0000-0003-2707-4870
cris.virtualsource.orcid1d5467cf-37ce-4cac-9533-1ba3157f91ef
dc.contributor.institutionUniversity of Zurich
dc.date.accessioned2018-09-07T09:38:09Z
dc.date.available2018-09-07T09:38:09Z
dc.date.issued2018-07
dc.description.abstract

Despite the various reported approaches to generate osteochondral composites by combination of different cell types and materials, engineering of templates with the capacity to autonomously and orderly develop into cartilage-bone bi-layered structures remains an open challenge. Here, we hypothesized that the embedding of cells inducible to endochondral ossification (i.e. bone marrow derived mesenchymal stromal cells, BMSCs) and of cells capable of robust and stable chondrogenesis (i.e. nasal chondrocytes, NCs) adjacent to each other in bi-layered hydrogels would develop directly in vivo into osteochondral tissues. Poly(ethylene glycol) (PEG) hydrogels were functionalized with TGFβ3 or BMP-2, enzymatically polymerized encapsulating human BMSCs, combined with a hydrogel layer containing human NCs and ectopically implanted in nude mice without pre-culture. The BMSC-loaded layers reproducibly underwent endochondral ossification and generated ossicles containing bone and marrow. The NC-loaded layers formed cartilage tissues, which (under the influence of BMP-2 but not of TGFβ3 from the neighbouring layer) remained phenotypically stable. The proposed strategy, resulting in orderly connected osteochondral composites, should be further assessed for the repair of osteoarticular defects and will be useful to model developmental processes leading to cartilage-bone interfaces.

dc.identifier.doi10.1016/j.biomaterials.2018.04.025
dc.identifier.issn0142-9612
dc.identifier.scopus2-s2.0-85048621182
dc.identifier.urihttps://www.zora.uzh.ch/handle/20.500.14742/143327
dc.identifier.wos000433643000019
dc.language.isoeng
dc.subject.ddc610 Medicine & health
dc.title

Spatially confined induction of endochondral ossification by functionalized hydrogels for ectopic engineering of osteochondral tissues

dc.typearticle
dcterms.accessRightsinfo:eu-repo/semantics/closedAccess
dcterms.bibliographicCitation.journaltitleBiomaterials
dcterms.bibliographicCitation.originalpublishernameElsevier
dcterms.bibliographicCitation.pageend229
dcterms.bibliographicCitation.pagestart219
dcterms.bibliographicCitation.pmid29705655
dcterms.bibliographicCitation.volume171
dspace.entity.typePublicationen
uzh.contributor.affiliationUniversity of Basel, Institute for Medical Microbiology
uzh.contributor.affiliationUniversitatsSpital Zurich, Swiss Federal Institute of Technology EPFL, Lausanne
uzh.contributor.affiliationUniversity of Basel, Institute for Medical Microbiology
uzh.contributor.affiliationUniversity of Basel, Institute for Medical Microbiology
uzh.contributor.affiliationUniversity of Basel, Institute for Medical Microbiology, Anika Therapeutics Srl
uzh.contributor.affiliationUniversitätsspital Basel
uzh.contributor.affiliationUniversitätsspital Basel
uzh.contributor.affiliationUniversitatsSpital Zurich
uzh.contributor.affiliationUniversity of Basel, Institute for Medical Microbiology
uzh.contributor.affiliationUniversity of Basel, Institute for Medical Microbiology
uzh.contributor.authorStüdle, Chiara
uzh.contributor.authorVallmajó-Martín, Queralt
uzh.contributor.authorHaumer, Alexander
uzh.contributor.authorGuerrero, Julien
uzh.contributor.authorCentola, Matteo
uzh.contributor.authorMehrkens, Arne
uzh.contributor.authorSchaefer, Dirk J
uzh.contributor.authorEhrbar, Martin
uzh.contributor.authorBarbero, Andrea
uzh.contributor.authorMartin, Ivan
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceYes
uzh.document.availabilitynone
uzh.eprint.datestamp2018-09-07 09:38:09
uzh.eprint.lastmod2025-08-18 01:37:15
uzh.eprint.statusChange2018-09-07 09:38:09
uzh.harvester.ethYes
uzh.harvester.nbNo
uzh.identifier.doi10.5167/uzh-153302
uzh.jdb.eprintsId26017
uzh.oastatus.unpaywallbronze
uzh.oastatus.zoraClosed
uzh.publication.citationStüdle, Chiara; Vallmajó-Martín, Queralt; Haumer, Alexander; Guerrero, Julien; Centola, Matteo; Mehrkens, Arne; Schaefer, Dirk J; Ehrbar, Martin; Barbero, Andrea; Martin, Ivan (2018). Spatially confined induction of endochondral ossification by functionalized hydrogels for ectopic engineering of osteochondral tissues. Biomaterials, 171:219-229.
uzh.publication.freeAccessAtdoi
uzh.publication.originalworkoriginal
uzh.publication.publishedStatusfinal
uzh.scopus.impact64
uzh.scopus.subjectsBioengineering
uzh.scopus.subjectsCeramics and Composites
uzh.scopus.subjectsBiophysics
uzh.scopus.subjectsBiomaterials
uzh.scopus.subjectsMechanics of Materials
uzh.workflow.doajuzh.workflow.doaj.false
uzh.workflow.eprintid153302
uzh.workflow.fulltextStatusrestricted
uzh.workflow.revisions54
uzh.workflow.rightsCheckkeininfo
uzh.workflow.sourcePubMed:PMID:29705655
uzh.workflow.statusarchive
uzh.wos.impact60
Files

Original bundle

Name:
2018_20_Spatially_confined_induction_of_Studle_Ehrbar.pdf
Size:
3.08 MB
Format:
Adobe Portable Document Format
Downloadable by admins only
Publication available in collections: