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首页> 外文期刊>Journal of biomedical materials research, Part A >Gradual pore formation in natural origin scaffolds throughout subcutaneous implantation.
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Gradual pore formation in natural origin scaffolds throughout subcutaneous implantation.

机译:在整个皮下植入过程中,天然来源的支架中逐渐形成孔。

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This study used a rat subcutaneous implantation model to investigate gradual in situ pore formation in a self-regulating degradable chitosan-based material, which comprises lysozyme incorporated into biomimetic calcium phosphate (CaP) coatings at the surface to control the scaffold degradation and subsequent pore formation. Specifically, the in vivo degradation of the scaffolds, the in situ pore formation, and the tissue response were investigated. Chitosan or chitosan/starch scaffolds were studied with and without a CaP coating in the presence or absence of lysozyme for a total of six experimental groups. Twenty-four scaffolds per group were implanted, and eight scaffolds were retrieved at each of three time points (3, 6, and 12 weeks). Harvested samples were analyzed for weight loss, microcomputed tomography, and histological analysis. All scaffolds showed pronounced weight loss and pore formation as a function of time. The highest weight loss was 29.8% ± 1.5%, obtained at week 12 for CaP chitosan/starch scaffolds with lysozyme incorporated. Moreover, all experimental groups showed a significant increase in porosity after 12 weeks. At all time points no adverse tissue reaction was observed, and as degradation increased, histological analysis showed cellular ingrowth throughout the implants. Using this innovative methodology, the ability to gradually generate pores in situ was clearly demonstrated in vivo.
机译:这项研究使用了大鼠皮下植入模型,研究了可自我调节的可降解壳聚糖基材料中逐渐形成的原位孔,该材料包含溶菌酶,该溶菌酶掺入了仿生磷酸钙(CaP)涂层的表面,以控制支架的降解和随后的孔形成。具体地,研究了支架的体内降解,原位孔形成和组织反应。在存在或不存在溶菌酶的情况下,对总共有6个实验组的壳聚糖或壳聚糖/淀粉支架进行了研究,无论有无CaP涂层。每组植入二十四个支架,并在三个时间点(3、6和12周)的每个时间点取回8个支架。分析收获的样品的重量减轻,微型计算机断层扫描和组织学分析。所有支架均显示出明显的重量减轻和孔形成随时间的变化。在加入溶菌酶的CaP壳聚糖/淀粉支架上,在第12周获得的最大体重减轻为29.8%±1.5%。此外,所有实验组在12周后均显示出孔隙率显着增加。在所有时间点都没有观察到不良的组织反应,并且随着降解的增加,组织学分析显示整个植入物中细胞向内生长。使用这种创新的方法,在体内逐渐证明了逐渐产生原位孔的能力。

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