A 3D macroporous and magnetic Mg2SiO4-CuFe2O4 scaffold for bone tissue regeneration: Surface modification, in vitro and in vivo studies

被引:15
作者
Aghajanian, Amir Hamed [1 ]
Bigham, Ashkan [2 ]
Sanati, Alireza [3 ]
Kefayat, Amirhosein [3 ,4 ]
Salamat, Mohammad Reza [5 ]
Sattary, Mansoureh [1 ]
Rafienia, Mohammad [3 ]
机构
[1] Isfahan Univ Med Sci, Sch Adv Technol Med ATiM, Dept Biomat Tissue Engn & Nanotechnol, Esfahan, Iran
[2] Inst Polymers Composites & Biomat Natl Res Counci, Viale JF Kennedy 54 Mostra Oltremare pad 20, I-80125 Naples, Italy
[3] Isfahan Univ Med Sci, Biosensor Res Ctr, Esfahan, Iran
[4] Isfahan Univ Med Sci, Dept Oncol, Canc Prevent Res Ctr, Esfahan, Iran
[5] Isfahan Univ Med Sci, Sch Med, Dept Med Phys, Esfahan, Iran
来源
BIOMATERIALS ADVANCES | 2022年 / 137卷
关键词
Magnetic scaffold; Poly-3-hydroxybutyrate; Bone regeneration; Hyperthermia; In vivo studies; DRUG-DELIVERY; MECHANICAL-PROPERTIES; COMPOSITE SCAFFOLDS; CANCER-TREATMENT; FORSTERITE; NANOPARTICLES; THERAPY; POLY(3-HYDROXYBUTYRATE-CO-3-HYDROXYVALERATE); POLYHYDROXYBUTYRATE; BIOCOMPATIBILITY;
D O I
10.1016/j.bioadv.2022.212809
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Macroporous scaffolds with bioactivity and magnetic properties can be a good candidate for bone regeneration and hyperthermia. In addition, modifying the surface of the scaffolds with biocompatible materials can increase their potential for in vivo applications. Here, we developed a multifunctional nanocomposite Mg2SiO4-CuFe2O4 scaffold for bone regeneration and hyperthermia. The surface of scaffold was coated with various concentrations of poly-3-hydroxybutyrate (P3HB, 1-5% (w/v)). It was observed that 3% (w/v) of P3HB provided a favorable combination of porosity (79 +/- 2.1%) and compressive strength (3.2 +/- 0.11 MPa). The hyperthermia potential of samples was assessed in the presence of various magnetic fields in vitro. The coated scaffolds showed a lower degradation rate than the un-coated one up to 35 days of soaking in simulated biological medium. Due to the porous and specific morphology of P3HB, it was found that in vitro bioactivity and cell attachment were increased on the scaffold. Moreover, it was observed that the P3HB coating improved the cell viability, alkaline phosphatase activity, and mineralization of the scaffold. Finally, we studied the bone formation ability of the scaffolds in vivo, and implanted the developed scaffold in the rat's femur for 8 weeks. Micro-computed tomography results including bone volume fraction and trabecular thickness exhibited an improvement in the bone regeneration of the coated scaffold compared to the control. The overall results of this study introduce a highly macroporous scaffold with multifunctional performance, noticeable ability in bone regeneration, and hyperthermia properties for osteosarcoma.
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页数:13
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