Scaffolding strategies for tissue engineering and regenerative medicine applications

S Pina, VP Ribeiro, CF Marques, FR Maia, TH Silva… - Materials, 2019 - mdpi.com
During the past two decades, tissue engineering and the regenerative medicine field have
invested in the regeneration and reconstruction of pathologically altered tissues, such as …

Porous biomaterials for tissue engineering: a review

FJ Maksoud, MFV de la Paz, AJ Hann… - Journal of Materials …, 2022 - pubs.rsc.org
The field of biomaterials has grown rapidly over the past decades. Within this field, porous
biomaterials have played a remarkable role in:(i) enabling the manufacture of complex three …

Development of new biocompatible 3D printed graphene oxide-based scaffolds

H Belaid, S Nagarajan, C Teyssier, C Barou… - Materials Science and …, 2020 - Elsevier
The aim of this work was to develop a bioresorbable, biodegradable and biocompatible
synthetic polymer with good mechanical properties for bone tissue engineering applications …

Icariin: A promising natural product in biomedicine and tissue engineering

Z Seyedi, MS Amiri, V Mohammadzadeh… - Journal of Functional …, 2023 - mdpi.com
Among scaffolds used in tissue engineering, natural biomaterials such as plant-based
materials show a crucial role in cellular function due to their biocompatibility and chemical …

Multi-organs-on-chips: towards long-term biomedical investigations

Y Zhao, RK Kankala, SB Wang, AZ Chen - Molecules, 2019 - mdpi.com
With advantageous features such as minimizing the cost, time, and sample size
requirements, organ-on-a-chip (OOC) systems have garnered enormous interest from …

Formation of porous biodegradable scaffolds based on poly (propylene carbonate) using gas foaming technology

I Manavitehrani, TYL Le, S Daly, Y Wang… - Materials Science and …, 2019 - Elsevier
Polyester-based scaffolds have been employed in tissue engineering due to their
biocompatibility, biodegradability, microstructure, and affordability. However, the acidic …

Alginate, hyaluronic acid, and chitosan-based 3D printing hydrogel for cartilage tissue regeneration

EJ Jang, R Patel, NV Sankpal, LS Bouchard… - European Polymer …, 2023 - Elsevier
The degradation of joint cartilage commonly characterizes osteoarthritis. Among the various
therapeutic strategies, three-dimensional (3D) bioprinting has surfaced as an efficacious …

Enhancing X-ray attenuation of 3D printed gelatin methacrylate (GelMA) hydrogels utilizing gold nanoparticles for bone tissue engineering applications

N Celikkin, S Mastrogiacomo, XF Walboomers… - Polymers, 2019 - mdpi.com
Bone tissue engineering is a rapidly growing field which is currently progressing toward
clinical applications. Effective imaging methods for longitudinal studies are critical to …

Herbal remedies as potential in cartilage tissue engineering: an overview of new therapeutic approaches and strategies

C Buhrmann, A Honarvar, M Setayeshmehr, S Karbasi… - Molecules, 2020 - mdpi.com
It is estimated that by 2023, approximately 20% of the population of Western Europe and
North America will suffer from a degenerative joint disease commonly known as …

Development of an injectable thiolated icariin functionalized collagen/hyaluronic hydrogel to promote cartilage formation in vitro and in vivo

Y Liu, J Yang, Z Luo, D Li, J Lu, Q Wang… - Journal of Materials …, 2019 - pubs.rsc.org
Development of an in situ injectable hydrogel with controlled-release of bioactive molecules
is an effective strategy to maintain chondrocyte phenotype and promote cartilage formation …