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https://hdl.handle.net/10216/137936Full metadata record
| DC Field | Value | Language |
|---|---|---|
| dc.creator | Crisóstomo, J | |
| dc.creator | Pereira, AM | |
| dc.creator | Bidarra, SJ | |
| dc.creator | Gonçalves, AC | |
| dc.creator | Granja, PL | |
| dc.creator | Coelho, JFJ | |
| dc.creator | Barrias, CC | |
| dc.creator | Seiça, R | |
| dc.date.accessioned | 2021-12-02T10:16:51Z | - |
| dc.date.available | 2021-12-02T10:16:51Z | - |
| dc.date.issued | 2019 | |
| dc.identifier.issn | 2280-8000 | |
| dc.identifier.uri | https://hdl.handle.net/10216/137936 | - |
| dc.description.abstract | Introduction: The success of a bioartificial pancreas crucially depends on ameliorating encapsulated beta cells survival and function. By mimicking the cellular in vivo niche, the aim of this study was to develop a novel model for beta cells encapsulation capable of establishing an appropriate microenvironment that supports interactions between cells and extracellular matrix (ECM) components. Methods: ECM components (Arg-Gly-Asp, abbreviated as RGD) were chemically incorporated in alginate hydrogels (alginate-RGD). After encapsulation, INS-1E beta cells outcome was analyzed in vitro and after their implantation in an animal model of diabetes. Results: Our alginate-RGD model demonstrated to be a good in vitro niche for supporting beta cells viability, proliferation, and activity, namely by improving the key feature of insulin secretion. RGD peptides promoted cell–matrix interactions, enhanced endogenous ECM components expression, and favored the assembly of individual cells into multicellular spheroids, an essential configuration for proper beta cell functioning. In vivo, our pivotal model for diabetes treatment exhibited an improved glycemic profile of type 2 diabetic rats, where insulin secreted from encapsulated cells was more efficiently used. Conclusions: We were able to successfully introduce a novel valuable function in an old ally in biomedical applications, the alginate. The proposed alginate-RGD model stands out as a promising approach to improve beta cells survival and function, increasing the success of this therapeutic strategy, which might greatly improve the quality of life of an increasing number of diabetic patients worldwide. | |
| dc.description.sponsorship | The author(s) disclosed receipt of the following financial support for the research, authorship, and/or publication of this article: This work was supported by FCT/MEC through National Funds and co-financed by FEDER through the PT2020 Partnership Agreement under the 4293 Unit I&D, FCT Strategic Project PEst-C/SAU/UI3282/2011-2013 and UID/NEU/04539/2013, FCT in the framework of project UID/BIM/04293/2013, FCT in the framework of project IF/00939/2013/CP1179/CT0001, FCT for Joana Crisóstomo (grant number SFRH/BD/72964/2010), FCT for Sílvia J Bidarra (grant number SFRH/BPD/80571/2011), and FCT and POPH/ESF (EC) for Cristina C Barrias research position FCT Investigator (IF2013). | |
| dc.language.iso | eng | |
| dc.publisher | SAGE Publications | |
| dc.relation | info:eu-repo/grantAgreement/FCT/5876/147358/PT | |
| dc.relation | info:eu-repo/grantAgreement/FCT/5876/147342/PT | |
| dc.relation | info:eu-repo/grantAgreement/FCT/SFRH/SFRH%2FBD%2F72964%2F2010/PT | |
| dc.relation | info:eu-repo/grantAgreement/FCT/SFRH/SFRH%2FBPD%2F80571%2F2011/PT | |
| dc.relation.ispartof | Journal of Applied Biomaterials and Functional Materials, vol.17(4):2280800019848923 | |
| dc.rights | openAccess | |
| dc.rights.uri | https://www.creativecommons.org/licenses/by-nc/4.0/ | |
| dc.subject | alginate hydrogels | |
| dc.subject | beta cells | |
| dc.subject | bioartificial pancreas | |
| dc.subject | Diabetes | |
| dc.subject | extracellular matrix | |
| dc.subject.mesh | Animals | |
| dc.subject.mesh | Cell Line, Tumor | |
| dc.subject.mesh | Diabetes Mellitus, Experimental / metabolism | |
| dc.subject.mesh | Diabetes Mellitus, Experimental / pathology | |
| dc.subject.mesh | Diabetes Mellitus, Experimental / therapy | |
| dc.subject.mesh | Extracellular Matrix / chemistry | |
| dc.subject.mesh | Hydrogels / chemistry | |
| dc.subject.mesh | Insulin Secretion | |
| dc.subject.mesh | Oligopeptides / chemistry | |
| dc.subject.mesh | Pancreas, Artificial | |
| dc.subject.mesh | Rats | |
| dc.title | ECM-enriched alginate hydrogels for bioartificial pancreas: an ideal niche to improve insulin secretion and diabetic glucose profile | |
| dc.type | Artigo em Revista Científica Internacional | |
| dc.contributor.uporto | Instituto de Investigação e Inovação em Saúde | |
| dc.identifier.doi | 10.1177/2280800019848923 | |
| dc.relation.publisherversion | https://journals.sagepub.com/doi/10.1177/2280800019848923 | |
| Appears in Collections: | I3S - Artigo em Revista Científica Internacional | |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| 10.1177-2280800019848923.pdf | 1.76 MB | Adobe PDF | ![]() View/Open |
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