Copper-ion releasing LDH nanosheets-hydrogel synergistically enhance subchondral bone repair
Yanglei Jin, Qixue Liu, Linran Song, Xinrang Zhai, Huimin Li, Qi Wang, Xianzhu Zhang, Weiyu Chen, Wei Wei, Chong Teng

TL;DR
A new nanocomposite hydrogel with copper-ion releasing properties is developed to improve subchondral bone repair and regeneration.
Contribution
The study introduces CuAl-LDH nanosheets integrated into a hydrogel for enhanced mechanical and osteogenic properties.
Findings
The nanocomposite hydrogel showed improved compressive modulus and rapid gelation suitable for implantation.
Gel-CAL reduced reactive oxygen species and upregulated osteogenic markers in stem cells.
In rat models, Gel-CAL significantly increased new bone volume compared to the control hydrogel.
Abstract
Bone defects represent a significant clinical challenge, frequently resulting in nonunion and impaired function. Although autologous bone grafts are considered the gold standard owing to their excellent biocompatibility, their application is constrained by limited donor availability, thereby driving the need for alternative biomaterials. In this study, we report the synthesis of copper-aluminum layered double hydroxide (CuAl-LDH) nanosheets as a bioactive platform for bone regeneration. The nanosheets were systematically characterized using transmission electron microscopy, energy-dispersive spectroscopy and dynamic light scattering, confirming uniform morphology, precise elemental composition and colloidal stability. To enable localized therapeutic delivery, CuAl-LDH nanosheets were incorporated into gelatin methacryloyl (GelMA) hydrogels to form a nanocomposite hydrogel (Gel-CAL).…
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Taxonomy
TopicsLayered Double Hydroxides Synthesis and Applications · Bone Tissue Engineering Materials · Hydrogels: synthesis, properties, applications
