Scalia Federica, Vitale Alessandra Maria, Picone Domiziana, De Cesare Noemi, Swiontek Brzezinska Maria, Kaczmarek-Szczepanska Beata, Ronca Alfredo, Zavan Barbara, Bucchieri Fabio, Szychlinska Marta Anna, D'Amora Ugo
Department of Biomedicine, Neuroscience and Advanced Diagnostics (BIND), University of Palermo, 90127 Palermo, Italy.
Institute of Polymers, Composites and Biomaterials (IPCB), National Research Council (CNR), 80125 Naples, Italy.
Gels. 2025 Jan 5;11(1):40. doi: 10.3390/gels11010040.
To improve wound healing, advanced biofabrication techniques are proposed here to develop customized wound patches to release bioactive agents targeting cell function in a controlled manner. Three-dimensional (3D) bioprinted "smart" patches, based on methacrylated gellan gum (GGMA), loaded with tannic acid (TA) or L-ascorbic acid (AA) have been manufactured. To improve stability and degradation time, gellan gum (GG) was chemically modified by grafting methacrylic moieties on the polysaccharide backbone. GGMA patches were characterized through physicochemical, morphological and mechanical evaluation. Kinetics release and antioxidant potential of TA and AA as well as antimicrobial activity against common pathogens , and in accordance with ISO 22196:2011 are reported. The cytocompatibility of the patches was demonstrated by direct and indirect tests on human dermal fibroblasts (HDF) as per ISO 10993. The positive effect of GGMA patches on cell migration was assessed through a wound healing assay. The results highlighted that the patches are cytocompatible, speed up wound healing and can swell upon contact with the hydration medium and release TA and AA in a controlled way. Overall, the TA- and AA-loaded GGMA patches demonstrated suitable mechanical features; no cytotoxicity; and antioxidant, antimicrobial and wound healing properties, showing satisfactory potential for wound dressing applications.
为了促进伤口愈合,本文提出采用先进的生物制造技术来开发定制的伤口贴片,以可控方式释放靶向细胞功能的生物活性剂。基于甲基丙烯酸化结冷胶(GGMA)、负载单宁酸(TA)或L-抗坏血酸(AA)的三维(3D)生物打印“智能”贴片已被制造出来。为了提高稳定性和降解时间,通过在多糖主链上接枝甲基丙烯酸基团对结冷胶(GG)进行了化学改性。通过物理化学、形态学和力学评估对GGMA贴片进行了表征。报告了TA和AA的释放动力学、抗氧化潜力以及对常见病原体的抗菌活性,并符合ISO 22196:2011标准。根据ISO 10993标准,通过对人皮肤成纤维细胞(HDF)的直接和间接测试证明了贴片的细胞相容性。通过伤口愈合试验评估了GGMA贴片对细胞迁移的积极作用。结果表明,这些贴片具有细胞相容性,能加速伤口愈合,与水合介质接触时会膨胀,并以可控方式释放TA和AA。总体而言,负载TA和AA的GGMA贴片表现出合适的机械性能;无细胞毒性;具有抗氧化、抗菌和伤口愈合特性,在伤口敷料应用中显示出令人满意的潜力。