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高度隔离的生物复合膜作为牙周组织再生的功能梯度模板。

Highly Segregated Biocomposite Membrane as a Functionally Graded Template for Periodontal Tissue Regeneration.

作者信息

Qasim Syed Saad B, Baig Mirza Rustum, Matinlinna Jukka Pekka, Daood Umer, Al-Asfour Adel

机构信息

Department of Bioclinical Sciences, Faculty of Dentistry, Kuwait University, P.O. Box 24923, Safat 13110, Kuwait.

Department of Restorative Sciences, Faculty of Dentistry, Kuwait University, P.O. Box 24923, Safat 13110, Kuwait.

出版信息

Membranes (Basel). 2021 Aug 30;11(9):667. doi: 10.3390/membranes11090667.

Abstract

Guided tissue regeneration (GTR) membranes are used for treating chronic periodontal lesions with the aim of regenerating lost periodontal attachment. Spatially designed functionally graded bioactive membranes with surface core layers have been proposed as the next generation of GTR membranes. Composite formulations of biopolymer and bioceramic have the potential to meet these criteria. Chitosan has emerged as a well-known biopolymer for use in tissue engineering applications due to its properties of degradation, cytotoxicity and antimicrobial nature. Hydroxyapatite is an essential component of the mineral phase of bone. This study developed a GTR membrane with an ideal chitosan to hydroxyapatite ratio with adequate molecular weight. Membranes were fabricated using solvent casting with low and medium molecular weights of chitosan. They were rigorously characterised with scanning electron microscopy, Fourier transform infrared spectroscopy in conjunction with photoacoustic sampling accessory (FTIR-PAS), swelling ratio, degradation profile, mechanical tensile testing and cytotoxicity using human osteosarcoma and mesenchymal progenitor cells. Scanning electron microscopy showed two different features with 70% HA at the bottom surface packed tightly together, with high distinction of CH from HA. FTIR showed distinct chitosan dominance on top and hydroxyapatite on the bottom surface. Membranes with medium molecular weight showed higher swelling and longer degradation profile as compared to low molecular weight. Cytotoxicity results indicated that the low molecular weight membrane with 30% chitosan and 70% hydroxyapatite showed higher viability with time. Results suggest that this highly segregated bilayer membrane shows promising potential to be adapted as a surface layer whilst constructing a functionally graded GTR membrane on its own and for other biomedical applications.

摘要

引导组织再生(GTR)膜用于治疗慢性牙周病变,目的是再生失去的牙周附着。具有表面核心层的空间设计功能梯度生物活性膜已被提议作为下一代GTR膜。生物聚合物和生物陶瓷的复合配方有潜力满足这些标准。壳聚糖因其降解、细胞毒性和抗菌特性,已成为组织工程应用中一种知名的生物聚合物。羟基磷灰石是骨矿物质相的重要组成部分。本研究开发了一种壳聚糖与羟基磷灰石比例理想且分子量合适的GTR膜。使用低分子量和中分子量壳聚糖通过溶剂浇铸法制备膜。使用人骨肉瘤细胞和间充质祖细胞,通过扫描电子显微镜、结合光声采样附件的傅里叶变换红外光谱(FTIR-PAS)、溶胀率、降解曲线、机械拉伸测试和细胞毒性对其进行了严格表征。扫描电子显微镜显示了两种不同的特征,底面70%的羟基磷灰石紧密堆积在一起,壳聚糖与羟基磷灰石有明显区别。傅里叶变换红外光谱显示顶面壳聚糖占主导,底面羟基磷灰石占主导。与低分子量膜相比,中分子量膜显示出更高的溶胀率和更长的降解曲线。细胞毒性结果表明,含有30%壳聚糖和70%羟基磷灰石的低分子量膜随时间显示出更高的细胞活力。结果表明,这种高度分离的双层膜在构建自身功能梯度GTR膜以及用于其他生物医学应用时,作为表面层具有很大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38ee/8469372/76fc5320cfca/membranes-11-00667-g001.jpg

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