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◆ Applied Sciences2026-04-08· Composite number

3D Printing and Characterization of HA/Mg-Reinforced PLA–PHA–PHB Composite Scaffolds for Biomedical Applications

Motahareh Sadat Raziyan, Giedrius Janusas, Wojciech Grodzki, Ewa Borucińska-Parfieniuk, Sigita Urbaite, Dariusz M. Perkowski

原始摘要(英文原文)· Original abstract
This research introduces a new hydroxyapatite-based composite, designed as a bone-implant scaffold—easy, quick, economical, and closely mimicking the structure of natural bone. Additive manufacture was used to print bioactive material to form a scaffold structure. Thus, during the experimental research, three different composite materials were made to examine both their mechanical and morphological properties. Numerical modeling was used to maximize and prove the mechanical and biological performance of the HA-polymer grafts. The obtained results indicated that incorporating HA and Mg particles into a polymeric matrix allows the structure to be used in tissue engineering. Best results were obtained using a structure, designed from PLA and PHA at 30%, PHB at 25%, Mg at 5%, and HA at 10%. The composite was distinguished by its lightness, strength, and biocompatibility, making it suitable for tissue engineering.
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3D Printing and Characterization of HA/Mg-Reinforced PLA–PHA–PHB Composite Scaffolds for Biomedical Applications — 科研速览 Science Skim