Jeju Bio Research Center, Korea Institute of Ocean Science and Technology (KIOST), Jeju 63349, Republic of Korea.
Department of Marine Technology & Convergence Engineering (Marine Biotechnology), University of Science and Technology (UST), Daejeon 34113, Republic of Korea.
Mar Drugs. 2024 Sep 26;22(10):437. doi: 10.3390/md22100437.
A cellular matrix derived from natural tissue functions as a highly biocompatible and versatile material for wound healing application. It provides a complex and highly organized environment with biological molecules and physical stimuli. Recently, various kinds of tissue/organ decellularized extracellular matrixes (dECMs) from bovine and porcine have been used as biomedical applications to support tissue regeneration but inherit religious restrictions and the risk of disease transmission to humans. Marine fish-derived dECMs are seen as attractive alternatives due to their similarity to mammalian physiology, reduced biological risks, and fewer religious restrictions. The aim of this study was to derive a decellularized matrix from the olive flounder () skin and evaluate its suitability as a wound healing application. Olive flounder skin was treated with a series of chemical treatments to remove cellular components. Decellularized fish skin (dFS) was confirmed to be successful in decellularization by evaluating the DNA content (2.84%). The dFS was characterized and evaluated in vivo to assess its biological activities. The mouse wound defect model was used to evaluate the in vivo performance of the dFS compared with that of the decellularized porcine skin (dPS). The resultant dFS was shown to enhance wound healing compared with the no-treatment group and dPS. This study suggests that dFS has potential for skin regeneration application.
一种源自天然组织的细胞外基质,作为一种高度生物相容性和多功能的材料,可用于伤口愈合应用。它提供了一个复杂而高度有序的环境,其中包含生物分子和物理刺激。最近,各种源自牛和猪的组织/器官脱细胞细胞外基质 (dECM) 已被用于支持组织再生的生物医学应用,但存在宗教限制和疾病传播给人类的风险。由于与哺乳动物生理学相似、生物风险降低以及宗教限制较少,海洋鱼类来源的 dECM 被视为有吸引力的替代品。本研究旨在从牙鲆皮肤中提取脱细胞基质,并评估其作为伤口愈合应用的适用性。通过一系列化学处理来去除细胞成分,处理牙鲆皮肤。通过评估 DNA 含量(2.84%),证实脱细胞鱼皮(dFS)成功脱细胞。对 dFS 进行了表征和体内评估,以评估其生物活性。使用小鼠伤口缺损模型,评估了 dFS 与脱细胞猪皮(dPS)的体内性能。结果表明,与未处理组和 dPS 相比,dFS 能促进伤口愈合。本研究表明,dFS 具有皮肤再生应用的潜力。