Division of Traumatology, Research Institute, National Defense Medical College, Tokorozawa, Japan.
Wound Repair Regen. 2012 Jul-Aug;20(4):573-9. doi: 10.1111/j.1524-475X.2012.00811.x. Epub 2012 Jun 19.
Burn wounds are highly susceptible to bacterial infection due to impairment of the skin's integrity. Therefore, prevention of bacterial colonization/infection in the wound is crucial for the management of burns, including partial-thickness burn injuries. Although partial-thickness burn injuries still retain the potential for reepithelialization, the complication of wound infection severely impairs the reepithelialization even in such superficial burn injuries. We recently developed a biocompatible nanosheet consisting of poly(L-lactic acid) (PLLA). The PLLA nanosheets have many useful and advantageous biological properties for their application as a wound dressing, such as sufficient flexibility, transparency, and adhesiveness. We herein investigated the suitability of the PLLA nanosheets as a wound dressing for partial-thickness burn wounds in mice. The PLLA nanosheets tightly adhered to the wound without any adhesive agents. Although wound infection with Pseudomonas aeruginosa in the controls significantly impaired reepithelialization of burn wounds, dressing with the PLLA nanosheet markedly protected against bacterial wound infection, thereby improving wound healing in the mice receiving partial-thickness burn injuries. The PLLA nanosheet also showed a potent barrier ability for protecting against bacterial penetration in vitro. The ultrathin PLLA nanosheet may be applied as a protective dressing to reduce environmental contamination of bacteria in a partial-thickness burn wound.
烧伤创面由于皮肤完整性受损,极易发生细菌感染。因此,预防创面细菌定植/感染对于烧伤的治疗至关重要,包括部分厚度烧伤损伤。尽管部分厚度烧伤损伤仍然保留再上皮化的潜力,但创面感染的并发症严重损害了再上皮化,即使在如此浅表的烧伤损伤中也是如此。我们最近开发了一种由聚(L-乳酸)(PLLA)组成的生物相容性纳米片。PLLA 纳米片具有许多有用的和有利的生物学特性,适用于作为伤口敷料,例如足够的柔韧性、透明度和粘附性。我们在此研究了 PLLA 纳米片作为小鼠部分厚度烧伤创面敷料的适用性。PLLA 纳米片无需任何粘合剂即可紧密贴合在伤口上。尽管对照组中铜绿假单胞菌引起的创面感染显著损害了烧伤创面的再上皮化,但用 PLLA 纳米片进行敷料处理可显著防止细菌创面感染,从而改善了接受部分厚度烧伤损伤的小鼠的伤口愈合。PLLA 纳米片在体外还显示出很强的防止细菌渗透的屏障能力。超薄 PLLA 纳米片可作为一种保护敷料,减少部分厚度烧伤创面的细菌环境污染。