Preparation and characterization of Pullulan-based nanocomposite scaffold incorporating Ag-Silica Janus particles for bone tissue engineering

被引:18
作者
Moris, Hanieh [1 ]
Ghaee, Azadeh [1 ]
Karimi, Majid [2 ]
Nouri-Felekori, Mohammad [1 ]
Mashak, Arezou [3 ]
机构
[1] Univ Tehran, Fac New Sci & Technol, Dept Life Sci Engn, POB 14395-1561, Tehran, Iran
[2] Iran Polymer & Petrochem Inst IPPI, Polymerizat Engn Dept, POB 14965-115, Tehran, Iran
[3] Iran Polymer & Petrochem Inst, Dept Novel Drug Delivery Syst, POB 14965-115, Tehran, Iran
来源
BIOMATERIALS ADVANCES | 2022年 / 135卷
关键词
Pullulan; Polyvinylpyrrolidone; Nanocomposite scaffold; Ag-Silica Janus particle; Bone tissue engineering; APATITE FORMATION; POLYVINYLPYRROLIDONE PVP; ANTIBACTERIAL ACTIVITY; SILVER NANOPARTICLES; HALLOYSITE NANOTUBES; COMPOSITE SCAFFOLDS; CHITOSAN; CELL; NANOFIBERS; FABRICATION;
D O I
10.1016/j.bioadv.2022.212733
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
A nanocomposite bone scaffold was fabricated from pullulan, a natural extracellular polysaccharide. Pullulan (PULL) was blended with polyvinylpyrrolidone (PVP), and a nano-platform with ball-stick morphology, Ag-Silica Janus particles (Ag-Silica JPs), which were utilized to fabricate nanocomposite scaffold with enhanced mechanical and biological properties. The Ag-Silica JPs were synthesized via a one-step sol-gel method and used to obtain synergistic properties of silver and silica's antibacterial and bioactive effects, respectively. The synthesized Ag-Silica JPs were characterized by means of FE-SEM, DLS, and EDS. The PULL/PVP scaffolds containing AgSilica JPs, fabricated by the freeze-drying method, were evaluated by SEM, EDS, FTIR, XRD, ICP and biological analysis, including antibacterial activity, bioactivity, cell viability and cell culture tests. It was noted that increasing Ag-Silica JPs amounts to an optimum level (1% w/w) led to an improvement in compressive modulus and strength of nanocomposite scaffold, reaching 1.03 ?? 0.48 MPa and 3.27 ?? 0.18, respectively. Scaffolds incorporating Ag-Silica JPs also showed favorable antibacterial activity. The investigations through apatite forming ability of scaffolds in SBF indicated spherical apatite precipitates. Furthermore, the cell viability test proved the outstanding biocompatibility of nanocomposite scaffolds (more than 90%) confirmed by cell culture tests showing that increment of Ag-Silica JPs amounts led to better adhesion, proliferation, ALP activity and mineralization of MG-63 cells.
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页数:14
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