National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, Sichuan 610064, China.
J Biomed Mater Res A. 2011 Jul;98(1):31-9. doi: 10.1002/jbm.a.33045. Epub 2011 Apr 26.
To accomplish ideal wound dressing, hydrogels based on a natural polysaccharide, pullulan were synthesized by chemical cross-linking. The tensile strengths of the hydrogel films (1 mm thick) were determined to range from 0.663 to 1.097 MPa in proportion to cross-linking degrees and water contents. The swelling study of the hydrogels in water showed remarkable water absorption property with swelling ratio up to 4000%, which provided the hydrogel with quick hemostatic ability and prevent the wound bed from accumulation of exudates. The water vapor transmission rate and water retention of the hydrogels were found to be in the range of 2213-3498 g/m²/day and 34.74-45.81% (after 6 days), indicating that the hydrogel can maintain a moist environment over wound bed, which could prevent the dehydration of the wound bed and prevent the scab formation. Biocompatibility test revealed that the hydrogels were not cytotoxic. The hydrogel could load antimicrobial agents and effectively suppress bacterial proliferation to protect the wound from bacterial invasion. These results suggest that the pullulan hydrogels prepared in this study may have high potential as new ideal wound-dressing materials.
为了实现理想的伤口敷料,通过化学交联合成了基于天然多糖普鲁兰的水凝胶。水凝胶薄膜(厚度为 1 毫米)的拉伸强度被确定为与交联度和含水量成比例,范围从 0.663 到 1.097 MPa。水凝胶在水中的溶胀研究表明,其具有显著的吸水性能,溶胀比高达 4000%,这为水凝胶提供了快速止血能力,并防止伤口床积聚渗出物。水凝胶的水蒸气透过率和保水率分别在 2213-3498 g/m²/天和 34.74-45.81%(6 天后)的范围内,表明水凝胶可以在伤口床上保持湿润的环境,防止伤口床脱水和结痂形成。生物相容性测试表明,水凝胶没有细胞毒性。水凝胶可以负载抗菌剂,并有效抑制细菌增殖,从而保护伤口免受细菌入侵。这些结果表明,本研究中制备的普鲁兰水凝胶可能具有作为新型理想伤口敷料材料的高潜力。