[HTML][HTML] Advancements in hydrogel design for articular cartilage regeneration: A comprehensive review

F Hashemi-Afzal, H Fallahi, F Bagheri, MN Collins… - Bioactive Materials, 2025 - Elsevier
This review paper explores the cutting-edge advancements in hydrogel design for articular
cartilage regeneration (CR). Articular cartilage (AC) defects are a common occurrence …

[HTML][HTML] 3D-Printed Constructs Deliver Bioactive Cargos to Expedite Cartilage Regeneration

R Jiao, X Lin, J Wang, C Zhu, J Hu, H Gao… - Journal of …, 2023 - Elsevier
Cartilage is solid connective tissue that recovers slowly from injury, and pain and
dysfunction from cartilage damage affect many people. The treatment of cartilage injury is …

High mechanical performance and multifunctional degraded fucoidan-derived bioink for 3D bioprinting

S Zhu, Z Zhou, X Chen, W Zhu, M Yang, M Yu… - Carbohydrate …, 2024 - Elsevier
While 3D bioprinting serves as a powerful tool in the field of tissue engineering, there is still
a lack of natural biomaterial inks that simultaneously combine high mechanical performance …

A biocompatible pea protein isolate-derived bioink for 3D bioprinting and tissue engineering

X Chen, Z Zhou, M Yang, S Zhu, W Zhu… - Journal of Materials …, 2024 - pubs.rsc.org
Three-dimensional bioprinting is a potent biofabrication technique in tissue engineering but
is limited by inadequate bioink availability. Plant-derived proteins are increasingly …