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细菌纤维素体内生物相容性研究           
细菌纤维素体内生物相容性研究
作者:Helenius… 文章来源:J Biomed Mater Res A. 2005 Nov 8 点击数: 更新时间:2005-11-13

细菌纤维素体内生物相容性研究

        组织工程研究要求支架材料必须有一定的生物相容性。细菌纤维素(BC)由醋酸杆菌合成的纯纤维素纳米纤维组成,有较好的物理性能并可制成三维结构。基于纤维素的材料几乎不引起异物和炎症反应,被认为具有良好的生物相容性。但还未见系统性的BC体内生物相容性试验,作为组织工程支架材料有必要进行这项研究。在大鼠皮下植入BC分别观察1周,4周和12周,用组织学,免疫组化和电镜方法测试其慢性炎症反应,异物反应,细胞内生长和血管生成能力。结果宏观和微观上都未观察到明显的炎症反应迹象,无纤维囊性结构或巨细胞生成。被成纤维细胞渗入的BC与宿主组织很好的结合,未引发任何慢性炎症反应。结果表明BC有良好的生物相容性并在组织工程中有潜在用途。

 

J Biomed Mater Res A. 2005 Nov 8;

In vivo biocompatibility of bacterial cellulose.

 Helenius G, Backdahl H, Bodin A, Nannmark U, Gatenholm P, Risberg B.

 Vascular Engineering Centre, Institution of Surgical Disciplines, Sahlgrenska University Hospital, Goteborg, Sweden.

 

The biocompatibility of a scaffold for tissue engineered constructs is essential for the outcome. Bacterial cellulose (BC) consists of completely pure cellulose nanofibrils synthesized by Acetobacter xylinum. BC has high mechanical strength and can be shaped into three-dimensional structures. Cellulose-based materials induce negligible foreign body and inflammatory responses and are considered as biocompatible. The in vivo biocompatibility of BC has never been evaluated systematically. Thus, in the development of tissue engineered constructs with a BC scaffold, it is necessary to evaluate the in vivo biocompatibility. BC was implanted subcutaneously in rats for 1, 4, and 12 weeks. The implants were evaluated in aspects of chronic inflammation, foreign body responses, cell ingrowth, and angiogenesis, using histology, immunohistochemistry, and electron microscopy. There were no macroscopic signs of inflammation around the implants. There were no microscopic signs of inflammation either (i.e., a high number of small cells around the implants or the blood vessels). No fibrotic capsule or giant cells were present. Fibroblasts infiltrated BC, which was well integrated into the host tissue, and did not elicit any chronic inflammatory reactions. The biocompatibility of BC is good and the material has potential to be used as a scaffold in tissue engineering.

 

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