Jung Jae-A, Han Seung-Kyu, Jeong Seong-Ho, Dhong Eun-Sang, Park Kang-Gyun, Kim Woo-Kyung
Jae-A Jung, MSc, MD, is Professor; Seung-Kyu Han, MD, PhD, is Professor; Seong-Ho Jeong, MD, PhD, is Professor; Eun-Sang Dhong, MD, PhD, is Professor; Kang-Gyun Park, MD, is Resident; and Woo-Kyung Kim, MD, PhD, is Professor, Department of Plastic Surgery, Korea University College of Medicine, Seoul, South Korea.
Adv Skin Wound Care. 2017 Jun;30(6):262-271. doi: 10.1097/01.ASW.0000513090.75457.f4.
A new polyurethane foam dressing impregnated with 3% povidone-iodine (Betafoam; Genewell, Seoul, Korea) was recently developed based on the hypothesis that its physical properties, including improved moisture-retention capacity and antimicrobial activity, are at least as good as those achieved with the current foam dressings that contain silver, but also associated with reduced cost and cytotoxicity to host cells. The purpose of this in vitro study was to evaluate the efficacy of Betafoam by comparing its physical properties, antimicrobial activity, and cytotoxicity with those of 3 silver foam dressings (Allevyn-Ag [Smith & Nephew, Hull, United Kingdom]; Mepilex-Ag [Mölnlycke Health Care, Gothenburg, Sweden]; and PolyMem-Ag [Ferris MFG Corp, Burr Ridge, Illinois]) used worldwide.
This study measured each dressing's pore size, fluid absorption time, fluid absorption capacity, fluid retention capacity, antimicrobial activity against Staphylococcus aureus and Pseudomonas aeruginosa, and cytotoxicity to mouse fibroblasts.
Betafoam had the smallest pore size, the fastest fluid absorption time, greatest fluid absorption, and best retention capacities among the tested foam dressings. Antimicrobial activity was not significantly different among the dressings. However, Betafoam also demonstrated the lowest cytotoxicity to the fibroblasts.
Betafoam may result not only in desirable rapid regulation of exudation but also antimicrobial activity with minimal cytotoxicity to host cells that are key requirements for wound healing.
一种新的浸渍3%聚维酮碘的聚氨酯泡沫敷料(贝塔泡沫敷料;韩国首尔基因威尔公司)最近被研发出来,其依据的假设是,它的物理性能,包括改善的保湿能力和抗菌活性,至少与目前含银泡沫敷料的性能相当,而且成本更低,对宿主细胞的细胞毒性更小。这项体外研究的目的是通过将贝塔泡沫敷料的物理性能、抗菌活性和细胞毒性与全球使用的3种含银泡沫敷料(英国赫尔施乐辉公司的爱立敷银离子敷料;瑞典哥德堡莫林医疗保健公司的美皮康银离子敷料;美国伊利诺伊州伯尔岭费里斯制造公司的聚膜银离子敷料)进行比较,来评估贝塔泡沫敷料的疗效。
本研究测量了每种敷料的孔径、吸液时间、吸液能力、持液能力、对金黄色葡萄球菌和铜绿假单胞菌的抗菌活性以及对小鼠成纤维细胞的细胞毒性。
在测试的泡沫敷料中,贝塔泡沫敷料的孔径最小,吸液时间最快,吸液量最大,持液能力最佳。各敷料的抗菌活性无显著差异。然而,贝塔泡沫敷料对成纤维细胞的细胞毒性也最低。
贝塔泡沫敷料不仅可能实现对渗出液的理想快速调节,还能发挥抗菌活性,同时对宿主细胞的细胞毒性最小,而这些都是伤口愈合的关键要求。