The objective of this study is to fabricate bone-like apatite (BLAp) powder using the modified simulated body fluid (SBF). The SBF2X and SBF4X groups were prepared by increasing the concentration of inorganic ions by two and four times, respectively, to that of the standard SBF. The mSBF4X group was prepared by particularly increasing the concentrations of calcium and phosphate ions in SBF. Bovine serum albumin (BSA) was added for SBF2X-BSA, SBF4X-BSA, and mSBF4X-BSA groups. BLAp powders were precipitated in these SBFs while being kept at 60 °C. Micro-morphology of BLAp powders showed tens of micrometers-sized rounded clusters which composed with sheet-like nano crystallites. The radius of BLAp clusters were decreased by increasing the concentration of inorganic ions and by incorporating the BSA. The hydroxyapatite crystalline structure was dominant for all sample groups. Further, octacalcium phosphate structure was detected in the mSBF4X group. However, these peaks were decreased in mSBF4X-BSA. FT-IR spectra demonstrated that BSA was co-precipitated in BLAp crystallites, and the amount of BSA was higher in the mSBF4X-BSA group than in the SBF4X-BSA group.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1166/jnn.2015.10467 | DOI Listing |
Biomater Adv
January 2025
Maastricht University, MERLN Institute for Technology-Inspired Regenerative Medicine, Complex Tissue Regeneration Department, 6229 ER Maastricht, the Netherlands. Electronic address:
Bone-healing complications can occur due to large bone defects or an insufficient bone regeneration capacity. Melt electrowriting (MEW) is a potential candidate for manufacturing synthetic scaffolds that may resolve bone-healing complications. MEW can exploit various biocompatible polymers with a wide range of tissue engineering applications.
View Article and Find Full Text PDFJ Biomed Mater Res B Appl Biomater
January 2025
Refractories, Ceramics and Building Materials Department, Advanced Materials Technology and Mineral Resources Research Institute, National Research Centre, Cairo, Egypt.
Treating severe bone deformities and abnormalities continues to be a major clinical hurdle, necessitating the adoption of suitable materials that can actively stimulate bone regeneration. Magnesium phosphate (MP) is a material that has the ability to stimulate the growth of bones. The current study involved the synthesis of mesoporous MP and lanthanum (La)-doped nanopowders using a chemical precipitation approach.
View Article and Find Full Text PDFOral Maxillofac Surg
November 2024
Department of Oral Surgery, Institute of Biomedical Sciences, Tokushima University Graduate, School 3-18-15 Kuramoto-cho, Tokushima, 770-8504, Japan.
Purpose: To evaluate the effectiveness of COAp granules in the mandibular bone defects by using computed tomography (CT) images.
Methods: This study was retrospective case series of mandibular bone defect reconstruction using COAp granules. Six patients with jawbone cysts treated by simultaneous grafting COAp granules after cyst enucleation were enrolled.
Int J Biol Macromol
December 2024
Center of Excellence in Tissue Engineering, Department of Biotechnology and Medical Engineering, National Institute of Technology, Rourkela, Odisha 769008, India. Electronic address:
Bioglass (Bg) is accepted as a revolutionary material, and doping with strontium (Sr) ions in the Bg network exhibits improved biofunctionality towards bone tissue regeneration and inhibits osteoclast formation. Keeping this in view, the present study focused on the development of chitosan (CS)/gelatin (GE) porous scaffolds incorporated with Sr-doped Bg nanoparticles (nSrBg) for bone tissue engineering applications. The SEM analysis of the fabricated scaffold exhibited that it possessed a homogenous microstructure with an interconnected porous network having pore sizes of 100-300 μm.
View Article and Find Full Text PDFACS Nano
October 2024
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, Jilin University, Changchun 130012, China.
The heterogeneity of bones is elegantly adapted to the local strain environment, which is critical for maintaining mechanical functions. Such an adaptation enables the strong correlation between strain distributions and multiple gradients, underlying a promising pathway for creating complex gradient structures. However, this potential remains largely unexplored for the synthesis of functional gradient materials.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!