Agenta Biotechnologies Inc, 1500 1st Avenue North, Unit 31, Birmingham, AL 35203, USA.
J Biomater Sci Polym Ed. 2013;24(5):621-43. doi: 10.1080/09205063.2012.701549. Epub 2012 Aug 13.
High density chitosan membranes were produced via a novel manufacturing process and used as implantable resorbable surgical membranes. The innovative method utilizes the following three sequential steps: (1) casting an acidic chitosan solution within a silicon mold, followed by freezing; (2) neutralizing the frozen acidic chitosan solution in alkaline solution to facilitate polymerization; and (3) applying coincident compression-dehydration under a vacuum. Resulting membranes of 0.2-0.5 mm thickness have densities as high as 1.6 g/cm(3). Inclusion of glycerol prior to the compression-dehydration step provides additional physical and clinical handling benefits. The biomaterials exhibit tensile strength with a maximum load as high as 10.9 N at ~2.5 mm width and clinically relevant resistance to suture pull-out with a maximum load as high as 2.2 N. These physical properties were superior to those of a commercial reconstituted collagen membrane. The dense chitosan membranes have excellent clinical handling characteristics, such as pliability and 'memory' when wet. They are semipermeable to small molecules, biodegradable in vitro in lysozyme solution, and the rates of degradation are inversely correlated to the degree of deacetylation. Furthermore, the dense chitosan membranes are biocompatible and resorbable in vivo as demonstrated in a rat oral wound healing model. The unique combination of physical, in vitro, in vivo, and clinical handling properties demonstrate the high utility of dense chitosan membranes produced by this new method. The materials may be useful as surgical barrier membranes, scaffolds for tissue engineering, wound dressings, and as delivery devices for active ingredients.
高密度壳聚糖膜是通过一种新颖的制造工艺生产的,可用作可植入的可吸收性手术膜。该创新方法利用以下三个连续步骤:(1)在硅模具内浇铸酸性壳聚糖溶液,然后冷冻;(2)用碱性溶液中和冷冻的酸性壳聚糖溶液,以促进聚合;(3)在真空下施加同时的压缩脱水。厚度为 0.2-0.5 毫米的膜的密度高达 1.6 g/cm(3)。在压缩脱水步骤之前加入甘油可提供额外的物理和临床处理益处。生物材料具有拉伸强度,在 2.5 毫米宽时最大负载高达 10.9 N,并且具有临床相关的抗缝线拔出阻力,最大负载高达 2.2 N。这些物理性能优于商业再胶原膜。高密度壳聚糖膜具有出色的临床处理特性,例如在湿润时的柔韧性和“记忆”性。它们对半透小分子具有渗透性,在溶菌酶溶液中可在体外生物降解,降解速率与脱乙酰度成反比。此外,高密度壳聚糖膜在体内具有生物相容性和可吸收性,这在大鼠口腔伤口愈合模型中得到了证明。独特的物理、体外、体内和临床处理性能的结合证明了这种新方法生产的高密度壳聚糖膜的高实用性。这些材料可作为手术屏障膜、组织工程支架、伤口敷料以及活性成分的递送装置使用。