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Preparation and Evaluation of Gelatin-Chitosan-Nanobioglass 3D Porous Scaffold for Bone Tissue Engineering

机译:骨组织工程用明胶-壳聚糖-纳米生物玻璃3D多孔支架的制备与评价

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摘要

The aim of the present study was to prepare and characterize bioglass-natural biopolymer based composite scaffold and evaluate its bone regeneration ability. Bioactive glass nanoparticles (58S) in the size range of 20–30 nm were synthesized using sol-gel method. Porous scaffolds with varying bioglass composition from 10 to 30 wt% in chitosan, gelatin matrix were fabricated using the method of freeze drying of its slurry at 40 wt% solids loading. Samples were cross-linked with glutaraldehyde to obtain interconnected porous 3D microstructure with improved mechanical strength. The prepared scaffolds exhibited >80% porosity with a mean pore size range between 100 and 300 microns. Scaffold containing 30 wt% bioglass (GCB 30) showed a maximum compressive strength of 2.2 ± 0.1 MPa. Swelling and degradation studies showed that the scaffold had excellent properties of hydrophilicity and biodegradability. GCB 30 scaffold was shown to be noncytotoxic and supported mesenchymal stem cell attachment, proliferation, and differentiation as indicated by MTT assay and RUNX-2 expression. Higher cellular activity was observed in GCB 30 scaffold as compared to GCB 0 scaffold suggesting the fact that 58S bioglass nanoparticles addition into the scaffold promoted better cell adhesion, proliferation, and differentiation. Thus, the study showed that the developed composite scaffolds are potential candidates for regenerating damaged bone tissue.
机译:本研究的目的是制备和表征基于生物玻璃-天然生物聚合物的复合支架并评估其骨再生能力。使用溶胶-凝胶法合成了尺寸在20–30 nm范围内的生物活性玻璃纳米颗粒(58S)。使用在固体含量为40%重量的情况下对其浆液进行冷冻干燥的方法,制备了在壳聚糖,明胶基质中具有10%至30%重量百分比的生物玻璃组成的多孔支架。将样品与戊二醛交联以获得具有改善的机械强度的相互连接的多孔3D微结构。所制备的支架表现出> 80%的孔隙率,平均孔径范围在100至300微米之间。含有30%(重量)生物玻璃(GCB 30)的支架的最大抗压强度为2.2±0.1 MPa。溶胀和降解研究表明该支架具有优异的亲水性和生物降解性。如MTT测定和RUNX-2表达所示,GCB 30支架显示出无细胞毒性并支持间充质干细胞的附着,增殖和分化。与GCB 0支架相比,在GCB 30支架中观察到更高的细胞活性,表明将58S生物玻璃纳米颗粒添加到支架中可以促进更好的细胞粘附,增殖和分化。因此,研究表明,开发的复合支架是再生受损骨组织的潜在候选者。

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