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In vitro Degradation of β-TCP/PLLA Scaffolds with Different Proportions of β-TCP

机译:具有不同比例的β-TCP / PLLA支架的体外降解,具有不同比例的β-TCP

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Porous biodegradable scaffolds are widely used in bone tissue engineering to provide temporary templates for cellular attachment and matrix synthesis. Ideally, the degradation rate in vivo may be similar or slightly less than that of tissue formation, allowing for the maintenance of the scaffold structure and the mechanical support during early stages of tissue formation. Eventually, the 3-D spaces occupied by the porous scaffolds will be replaced by newly formed tissue. In this work, β-tricalcium phosphate/Poly-L lactide (β-TCP/PLLA) scaffolds with different proportions of β-TCP to PLLA were investigated. The effects of β-TCP proportions on degradation rate and mechanical strengths of the scaffolds were evaluated in simulated body fluid (SBF) at 37°C up to 42 days. Results show that: different proportions of β-TCP to PLLA have significant influence on degradation behaviors of the scaffolds, and mechanical strengths of the scaffolds with weight proportion of β-TCP to PLLA being 2 to 1 are much higher than those of the others during the degradation period. And in this period, the scaffolds biodegrade slowly, and Hydroxyl Carbonate Apatite (HCA) forms in the surface of the material.
机译:多孔可生物降解的支架广泛用于骨组织工程,为细胞附着和基质合成提供临时模板。理想地,体内的降解速率可能类似于或略小于组织形成,从而允许在组织形成的早期阶段期间维持支架结构和机械支撑。最终,多孔支架占据的3D空间将被新形成的组织所取代。在这项工作中,研究了具有不同比例的β-TCP至PLLA的β-三钙/聚-L丙交酯(β-TCP / PLLA)支架。在37℃下,在37℃下评估β-TCP比例对支架的降解速率和机械强度的影响,最多42天在模拟体液(SBF)中。结果表明:不同比例的β-TCP对PLLA对支架的降解行为有显着影响,并且具有β-TCP的重量比例的支架的机械强度比其他方式高于其他方式退化期。在此期间,支架在材料表面中缓慢地生物降解,碳酸盐磷灰石(HCA)形成。

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