Aug 2026· ACS Omega· Vol 11, pp. 54512 - 54520· 0 citations· 29 references
Medicine
Abstract
Hyaluronic acid (HA), a principal component of the extracellular matrix (ECM), exhibits excellent biocompatibility, high water-retention capacity, and inherent biodegradability. α-Poly-L-lysine (PLL), a cationic polypeptide with favorable biocompatibility, is widely employed for surface modification to promote cell adhesion and proliferation. Electrostatic interactions between oppositely charged polyelectrolytes enable the formation of interfacial polyelectrolyte complexes (IPC) in the absence of chemical cross-linking agents. In this study, IPC hydrogels were fabricated from HA and PLL and processed via a combination of hybrid and gravity-compensated embedded three-dimensional (3D) printing techniques to generate both two-dimensional (2D) and 3D scaffolds for tissue engineering applications. Using this approach, anisotropic 2D membranes with submicrometer groove topographies were produced, together with mechanically stable 3D fibrous architectures. The resulting IPC hydrogels retained structural integrity under aqueous conditions, demonstrating high morphological controllability and highlighting their substantial potential as scaffolding materials in tissue engineering.
HRP/Eo crosslinking method is identified as a favorable strategy for engineering dECM particle–THA hydrogels for cartilage regeneration and improved mechanical performance and chondrocyte redifferentiation effect compared to SPS/Ru, attributed to the difference in hydrogel morphology.
Jiang-Yao Xu, Jacek K. Wychowaniec, M. D’Este et al.· RSC Advances· 0 citations
Three-dimensional, interconnected hydrogel networks are central to tissue engineering and disease modeling, where tailored pore architecture and mechanical robustness are essential for supporting cellular functions. However, the limited ability to engineer microstructural features in vat polymerization 3D-printed natur...
Liwei Liu, Liwen Zhang, Xumin Huang et al.· Small Methods· 0 citations
The feasibility of incorporating physically processed kombucha-derived BC into alginate-based composite inks support the feasibility of incorporating physically processed kombucha-derived BC into alginate-based composite inks.
E. Uțoiu, E. Oprita, V. Manoiu et al.· Fibers· 0 citations
This study provides a practical framework for creating intrafilamentary porosity into 3D-printed PCL scaffolds with improved surface-mediated biological performance.
Mikaela Kutrolli, Noah S Pereira, Delaram Ghanbariamin et al.· ACS Biomaterials Science & E...· 0 citations
Three-dimensional (3D) printing of hydrogels has advanced rapidly across numerous disciplines, including tissue engineering, medical devices, and biotechnology, enabling applications including cell scaffolds, drug delivery systems, and biosensors. However, the rapid fabrication of multi-layered complex hydrogel structu...
Jerry Chen, Javier A. Alvarado, Claire Robertson et al.· Biofabrication· 0 citations
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