Balakrishnan Biji, Mohanty M, Umashankar P R, Jayakrishnan A
Division of Polymer Chemistry, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Satelmond Palace Campus, Trivandrum, Kerala 695 012, India.
Biomaterials. 2005 Nov;26(32):6335-42. doi: 10.1016/j.biomaterials.2005.04.012.
Wound dressings that can be formed in situ offer several advantages over the use of preformed dressings such as conformability without wrinkling or fluting in the wound bed, ease of application and improved patient compliance and comfort. Here we describe such an in situ forming hydrogel wound dressing from gelatin, oxidized alginate and borax. Periodate oxidized alginate rapidly cross-links proteins such as gelatin in the presence of borax to give in situ forming hydrogels that are both non-toxic and biodegradable. The composite matrix has the haemostatic effect of gelatin, the wound healing-promoting feature of alginate and the antiseptic property of borax to make it a potential wound dressing material. The hydrogel was found to have a fluid uptake of 90% of its weight which would prevent the wound bed from accumulation of exudates. The water vapour transmission rate (WVTR) of the hydrogel was found to be 2686+/-124 g/m2/day indicating that the hydrogel can maintain a moist environment over wound bed in moderate to heavily exuding wound which would enhance epithelial cell migration during the healing process. The wound healing efficacy of hydrogel was evaluated in experimental full thickness wounds using a rat model which demonstrated that within 2 weeks, the wound covered with gel was completely filled with new epithelium without any significant adverse reactions. These in situ forming hydrogels fulfil many critical elements desirable in a wound dressing material.
可原位形成的伤口敷料相对于预制敷料具有多个优点,例如在伤口床中具有贴合性,不会起皱或形成褶边,易于应用,并能提高患者的依从性和舒适度。在此,我们描述了一种由明胶、氧化海藻酸盐和硼砂制成的原位形成水凝胶伤口敷料。高碘酸盐氧化的海藻酸盐在硼砂存在下能迅速与明胶等蛋白质交联,形成无毒且可生物降解的原位形成水凝胶。该复合基质具有明胶的止血作用、海藻酸盐促进伤口愈合的特性以及硼砂的防腐性能,使其成为一种潜在的伤口敷料材料。发现该水凝胶的吸液量为其重量的90%,这将防止伤口床积聚渗出物。该水凝胶的水蒸气透过率(WVTR)为2686±124 g/m²/天,表明该水凝胶可在中度至重度渗出性伤口的伤口床上保持湿润环境,这将在愈合过程中增强上皮细胞迁移。使用大鼠模型在实验性全层伤口中评估了水凝胶的伤口愈合效果,结果表明,在2周内,覆盖凝胶的伤口完全被新上皮填满,且无任何明显不良反应。这些原位形成的水凝胶满足了伤口敷料材料中许多理想的关键要素。