eBiltegia

    • Zer da eBiltegia? 
    •   eBiltegiari buruz
    •   Argitaratu irekian zure ikerketa
    • Sarbide Irekia MUn 
    •   Zer da Zientzia Irekia?
    •   Mondragon Unibertsitatearen dokumentu zientifikoetara eta irakaskuntza-materialetara Sarbide Irekia izateko politika instituzionala
    •   Mondragon Unibertsitatearen ikerketa-datuetara Sarbide Irekia izateko Politika instituzionala
    •   Babes digitalerako jarraibideak
    •   Zure argitalpenak jaso eta zabaldu egiten ditu Bibliotekak
    • Euskara
    • Español
    • English

Laguntzailea:

  • Kontaktua
  • Euskara 
    • Euskara
    • Español
    • English
  • eBiltegia buruz  
    • Zer da eBiltegia? 
    •   eBiltegiari buruz
    •   Argitaratu irekian zure ikerketa
    • Sarbide Irekia MUn 
    •   Zer da Zientzia Irekia?
    •   Mondragon Unibertsitatearen dokumentu zientifikoetara eta irakaskuntza-materialetara Sarbide Irekia izateko politika instituzionala
    •   Mondragon Unibertsitatearen ikerketa-datuetara Sarbide Irekia izateko Politika instituzionala
    •   Babes digitalerako jarraibideak
    •   Zure argitalpenak jaso eta zabaldu egiten ditu Bibliotekak
  • Hasi saioa
Ikusi itema 
  •   eBiltegia MONDRAGON UNIBERTSITATEA
  • Ikerketa-Artikuluak
  • Artikuluak-Ingeniaritza
  • Ikusi itema
  •   eBiltegia MONDRAGON UNIBERTSITATEA
  • Ikerketa-Artikuluak
  • Artikuluak-Ingeniaritza
  • Ikusi itema
JavaScript is disabled for your browser. Some features of this site may not work without it.
Thumbnail
Ikusi/Ireki
Final manuscript.pdf (1.815Mb)
Erregistro osoa
Eragina

Web of Science   

Google Scholar
Partekatu
EmailLinkedinFacebookTwitter
Gorde erreferentzia
Mendely

Zotero

untranslated

Mets

Mods

Rdf

Marc

Exportar a BibTeX
Izenburua
Chondroitin and Dermatan Sulfate Bioinks for 3D Bioprinting and Cartilage Regeneration
Egilea
Zabala, Alaitz
Egilea (beste erakunde batekoa)
Lafuente-Merchan, Markel
Galvez Martin, Patricia
Marchal, Juan Antonio
Vázquez-Lasa, Blanca
Gallego, Idoia
Sáenz-del-Burgo, Laura
Pedraz, José Luis
Ikerketa taldea
Tecnologías de superficies
Beste instituzio
Universidad del País Vasco/Euskal Herriko Unibertsitatea (UPV/EHU)
Bioibérica (Spain)
Universidad de Granada
Biomaterials and Nanomedicine (CIBER-BBN)
Instituto de Investigación Sanitaria Bioaraba
Instituto de Ciencia y Tecnología de Polímeros (ICTP-CSIC)
Bertsioa
Postprinta
Eskubideak
© 2022 Wiley
Sarbidea
Sarbide bahitua
URI
https://hdl.handle.net/20.500.11984/5471
Argitaratzailearen bertsioa
https://doi.org/10.1002/mabi.202100435
Non argitaratua
Macromolecular Bioscience  Early View. N. artículo 2100435, 2022
Argitaratzailea
Wiley
Laburpena
Cartilage is a connective tissue which a limited capacity for healing and repairing. In this context, osteoarthritis (OA) disease may be developed with high prevalence in which the use of scaffolds ma ... [+]
Cartilage is a connective tissue which a limited capacity for healing and repairing. In this context, osteoarthritis (OA) disease may be developed with high prevalence in which the use of scaffolds may be a promising treatment. In addition, three-dimensional (3D) bioprinting has become an emerging additive manufacturing technology because of its rapid prototyping capacity and the possibility of creating complex structures. This study is focused on the development of nanocellulose-alginate (NC-Alg) based bioinks for 3D bioprinting for cartilage regeneration to which it is added chondroitin sulfate (CS) and dermatan sulfate (DS). First, rheological properties are evaluated. Then, sterilization effect, biocompatibility, and printability on developed NC-Alg-CS and NC-Alg-DS inks are evaluated. Subsequently, printed scaffolds are characterized. Finally, NC-Alg-CS and NC-Alg-DS inks are loaded with murine D1-MSCs-EPO and cell viability and functionality, as well as the chondrogenic differentiation ability are assessed. Results show that the addition of both CS and DS to the NC-Alg ink improves its characteristics in terms of rheology and cell viability and functionality. Moreover, differentiation to cartilage is promoted on NC-Alg-CS and NC-Alg-DS scaffolds. Therefore, the utilization of MSCs containing NC-Alg-CS and NC-Alg-DS scaffolds may become a feasible tissue engineering approach for cartilage regeneration. [-]
Bildumak
  • Artikuluak - Ingeniaritza [742]

Zerrendatu honako honen arabera

eBiltegia osoaKomunitateak & bildumakArgitalpen dataren araberaEgileakIzenburuakMateriakIkerketa taldeakNon argitaratuaBilduma hauArgitalpen dataren araberaEgileakIzenburuakMateriakIkerketa taldeakNon argitaratua

Nire kontua

SartuErregistratu

Estatistikak

Ikusi erabilearen inguruko estatistikak

Nork bildua:

OpenAIREBASERecolecta

Nork balioztatua:

OpenAIRERebiun
MONDRAGON UNIBERTSITATEA | Biblioteka
Kontaktua | Iradokizunak
DSpace
 

 

Nork bildua:

OpenAIREBASERecolecta

Nork balioztatua:

OpenAIRERebiun
MONDRAGON UNIBERTSITATEA | Biblioteka
Kontaktua | Iradokizunak
DSpace