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新型几丁质-壳聚糖移植物用于硬脑膜成形术的实验评估

Experimental evaluation of new chitin-chitosan graft for duraplasty.

作者信息

Pogorielov M, Kravtsova A, Reilly G C, Deineka V, Tetteh G, Kalinkevich O, Pogorielova O, Moskalenko R, Tkach G

机构信息

Medical Institute, Sumy State University, 2, R-Korsakova street, Sumy, 40007, Ukraine.

Neurosurgery Department, Kharkov National Medical University, Kharkiv, Ukraine.

出版信息

J Mater Sci Mater Med. 2017 Feb;28(2):34. doi: 10.1007/s10856-017-5845-3. Epub 2017 Jan 21.

Abstract

Natural materials such as collagen and alginate have promising applications as dural graft substitutes. These materials are able to restore the dural defect and create optimal conditions for the development of connective tissue at the site of injury. A promising material for biomedical applications is chitosan-a linear polysaccharide obtained by the deacetylation of chitin. It has been found to be nontoxic, biodegradable, biofunctional and biocompatible in addition to having antimicrobial characteristics. In this study we designed new chitin-chitosan substitutes for dura mater closure and evaluated their effectiveness and safety. Chitosan films were produced from 3 % of chitosan (molar mass-200, 500 or 700 kDa, deacetylation rate 80-90%) with addition of 20% of chitin. Antimicrobial effictively and cell viability were analysed for the different molar masses of chitosan. The film containing chitosan of molar mass 200 kDa, had the best antimicrobial and biological activity and was successfully used for experimental duraplasty in an in vivo model. In conclusion the chitin-chitosan membrane designed here met the requirements for a dura matter graft exhibiting the ability to support cell growth, inhibit microbial growth and biodegradade at an appropriate rate. Therefore this is a promising material for clinical duroplasty.

摘要

胶原蛋白和藻酸盐等天然材料作为硬脑膜移植替代物具有广阔的应用前景。这些材料能够修复硬脑膜缺损,并为损伤部位结缔组织的发育创造最佳条件。壳聚糖是一种很有前景的生物医学应用材料,它是由甲壳素脱乙酰化得到的线性多糖。除了具有抗菌特性外,它还被发现无毒、可生物降解、具有生物功能且生物相容性良好。在本研究中,我们设计了用于硬脑膜闭合的新型甲壳素-壳聚糖替代物,并评估了它们的有效性和安全性。壳聚糖膜由3%的壳聚糖(摩尔质量为200、500或700 kDa,脱乙酰化率为80 - 90%)添加20%的甲壳素制成。对不同摩尔质量的壳聚糖的抗菌效果和细胞活力进行了分析。含有摩尔质量为200 kDa壳聚糖的膜具有最佳的抗菌和生物活性,并成功用于体内模型的实验性硬脑膜成形术。总之,这里设计的甲壳素-壳聚糖膜满足了作为硬脑膜移植材料的要求,具有支持细胞生长、抑制微生物生长以及以适当速率生物降解的能力。因此,这是一种有前景的临床硬脑膜成形术材料。

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