Qianli Ma, Katrin Anja Staudigel, Kristaps Rubenis, Zhaoyue Fu, Torben Hildebrand, Markuss Zaldenieks, Ólafur E. Sigurjónsson, Liebert Parreiras Nogueira, Jānis Ločs, Dagnija Loča, Lihua Chen, Håvard Jostein Haugen
High Resolution Image Download MS PowerPoint Slide Critical-sized bone defects require grafts with ideal spatial supporting. We upcycled eggshell waste sustainably into porous amorphous calcium phosphate (ACP) scaffolds and evaluated their early bone-regeneration performance alone and in combination with flexible and bioactive adjuncts in vivo . ACP scaffolds with ∼60% porosity were fabricated by pressure-densification, using ice microspheres as space holders. Before implantation, ACP scaffolds were vacuum-infiltrated with a hyaluronic acid (HA) hydrogel to minimize internal voids. Bilateral critical-size femoral and calvarial defects were created in New Zealand White rabbits and reconstructed with one of four treatments: (1) Sham, (2) ACP scaffold (ACP), (3) ACP infused with HA hydrogel containing a proline-rich peptide P2 (ACP + HA/P2), or (4) ACP infused with HA/P2 supplemented with soluble eggshell membrane proteins (prepared by our lab, ACP + HA/P2 + SEPs). After 6 weeks, micro-CT and histology were performed. All ACP-containing groups showed greater defect filling and mineralization than the Sham group. Micro-CT analysis demonstrated that ACP + HA/P2 + SEPs achieved the highest bone volume and trabecular number and the lowest trabecular separation. Histology confirmed more extensive mineralized collagenous deposition on ACP scaffolds and a more integrated bone–material fusion zone in this group. In femoral defects with graft displacement, ACP scaffolds induced cortical–scaffold bone bridging within the marrow, most evident with SEPs. Eggshell-derived ACP scaffolds, particularly when paired with SEP-enriched HA hydrogel, enhance early regeneration of critical-sized bone defects. Upcycling the inorganic and organic constituents of eggshell waste yields a complementary, single-origin biomaterials package for sustainable bone repair.