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首页> 外文期刊>Frontiers in Veterinary Science >Validation of Three Different Sterilization Methods of Tilapia Skin Dressing: Impact on Microbiological Enumeration and Collagen Content
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Validation of Three Different Sterilization Methods of Tilapia Skin Dressing: Impact on Microbiological Enumeration and Collagen Content

机译:罗非鱼皮肤敷料三种不同灭菌方法的验证:对微生物枚举和胶原含量的影响

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Tilapia fish skin has demonstrated promise as a stable and practical biological dressing to be used in wound and burn management. However, the appropriate sterilization technique of the Tilapia fish skin is crucial before its clinical application. The standard sterilization technique must eliminate harmful pathogens but maintain the structural and biochemical properties that could compromise the dressing function. This study investigated and compared the efficiency of three sterilizing agents; chlorhexidine gluconate 4% (CHG), povidone iodine 10% (PVP-I), and silver nanoparticles (25μg/mL) (AgNPs), at three different times (5, 10, and 15 min) on Tilapia fish skin based on the microbial count, histological and collagen properties. Among the sterilization procedures, AgNPs showed rapid and complete antimicrobial activity, with a 100% reduction in microbial growth of the fish skin throughout the treated times. Furthermore, AgNPs did not impair the cellular structure or collagen fibers content of the fish skin. However, CHG and PVP-I caused alterations in the collagen content. This study demonstrated that the AgNPs treatment of Tilapia fish skin provided sterile skin while preserving the histological properties and structural integrity. These findings provide an efficient and quick sterilization method suitable for Tilapia fish skin that could be adopted as a biological dressing.
机译:罗非鱼鱼皮已经证明了承诺作为伤口和烧伤管理中使用的稳定和实用的生物敷料。然而,在临床应用之前,罗非鱼鱼皮的适当灭菌技术至关重要。标准灭菌技术必须消除有害病原体,但保持可能损害敷料功能的结构和生化特性。本研究调查并比较了三种灭菌剂的效率;氯己定葡萄糖酸盐4%(CHG),聚酰胺碘10%(PVP-1)和银纳米颗粒(25μg/ ml)(AgNPS),在罗非鱼鱼皮上的三种不同时间(5,10和15分钟),基于此微生物计数,组织学和胶原蛋白属性。在灭菌程序中,AGNP显示出快速和完全的抗菌活性,在整个处理时间内的鱼皮微生物生长的100%降低。此外,AgNP不会损害鱼皮的细胞结构或胶原纤维含量。然而,CHG和PVP-I导致胶原蛋白含量的改变。本研究表明,罗非鱼鱼皮的AgNPS治疗提供无菌皮肤,同时保持组织学特性和结构完整性。这些发现提供了一种高效且快速的灭菌方法,适用于罗非鱼鱼皮,可作为生物敷料采用。

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