Go to:
Logótipo
Você está em: Start > Publications > View > Long-term in vivo degradation and biocompatibility of degradable pHEMA hydrogels containing graphene oxide
Map of Premises
Principal
Publication

Long-term in vivo degradation and biocompatibility of degradable pHEMA hydrogels containing graphene oxide

Title
Long-term in vivo degradation and biocompatibility of degradable pHEMA hydrogels containing graphene oxide
Type
Article in International Scientific Journal
Year
2024
Authors
Moura, D
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Rohringer, S
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Ferreira, HP
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Pereira, AT
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Barrias, CC
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Bergmeister, H
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Gonçalves, IC
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Journal
Title: Acta BiomaterialiaImported from Authenticus Search for Journal Publications
Vol. 173
Pages: 351-364
ISSN: 1742-7061
Publisher: Elsevier
Indexing
Publicação em ISI Web of Knowledge ISI Web of Knowledge - 0 Citations
Publicação em Scopus Scopus - 0 Citations
Other information
Authenticus ID: P-00Z-FRE
Abstract (EN): Developing biocompatible, non-fouling and biodegradable hydrogels for blood-contacting devices re-mains a demanding challenge. Such materials should promote natural healing, prevent clotting, and undergo controlled degradation. This study evaluates the biocompatibility and biodegradation of degradable poly(2-hydroxyethyl methacrylate) (d-pHEMA) hydrogels with or without reinforcement with oxidized few-layer graphene (d-pHEMA/M5ox) in a long term implantation in rats, assessing non-desired side-effects (irritation, chronic toxicity, immune response).Subcutaneous implantation over 6 months revealed degradation of both hydrogels, despite slower for d-pHEMA/M5ox, with degradation products found in intracellular vesicles. No inflammation nor infection at implantation areas were observed, and no histopathological findings were detected in parenchymal organs. Immunohistochemistry confirmed d-pHEMA and d-pHEMA/M5ox highly anti-adhesiveness. Gene expression of macrophages markers revealed presence of both M1 and M2 macrophages at all timepoints. M1/M2 profile after 6 months reveals an anti-inflammatory environment, suggesting no chronic inflam-mation, as also demonstrated by cytokines (IL-alpha, TNF-alpha and IL-10) analysis.Overall, modification of pHEMA towards a degradable material was successfully achieved without evoking a loss of its inherent properties, specially its anti-adhesiveness and biocompatibility. There-fore, these hydrogels hold potential as blank-slate for further modifications that promote cellular adhe-sion/proliferation for tissue engineering applications, namely for designing blood contacting devices with different load bearing requirements.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 14
Documents
We could not find any documents associated to the publication.
Related Publications

Of the same journal

Trends and considerations in annulus fibrosus in vitro model design (2025)
Another Publication in an International Scientific Journal
Castro, AL; Gonçalves, RM
The inflammasome in host response to biomaterials: Bridging inflammation and tissue regeneration (2019)
Another Publication in an International Scientific Journal
Vasconcelos, DP; AP Águas; Barbosa, MA; Pelegrin, P; Judite N Barbosa
Navigating Neurotoxicity and Safety Assessment of Nanocarriers for Brain Delivery: Strategies and Insights (2024)
Another Publication in an International Scientific Journal
Teixeira, MI; Lopes, CM; Maria Helena Amaral; Paulo Costa
Injectable alginate hydrogels for cell delivery in tissue engineering (2014)
Another Publication in an International Scientific Journal
Silvia J Bidarra; Cristina C Barrias; Pedro L Granja
Functionalization of biomaterials with small osteoinductive moieties (2013)
Another Publication in an International Scientific Journal
Raquel Maia, FR; Silvia J Bidarra; Pedro L Granja; Cristina C Barrias

See all (57)

Recommend this page Top
Copyright 1996-2025 © Faculdade de Medicina Dentária da Universidade do Porto  I Terms and Conditions  I Acessibility  I Index A-Z
Page created on: 2025-07-23 at 20:15:02 | Privacy Policy | Personal Data Protection Policy | Whistleblowing | Electronic Yellow Book