Department of Materials Science & Engineering, Institute of Space Technology Islamabad, 1, Islamabad Highway, Islamabad 44000, Pakistan.
Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, Cauerstr. 6, Erlangen 91058, Germany.
Biomed Mater. 2024 Mar 20;19(3). doi: 10.1088/1748-605X/ad2e0f.
The present work focuses on developing 5% w/v oxidized alginate (alginate di aldehyde, ADA)-7.5% w/v gelatin (GEL) hydrogels incorporating 0.25% w/v silk fibroin (SF) and loaded with 0.3% w/v Cu-Ag doped mesoporous bioactive glass nanoparticles (Cu-Ag MBGNs). The microstructural, mechanical, and biological properties of the composite hydrogels were characterized in detail. The porous microstructure of the developed ADA-GEL based hydrogels was confirmed by scanning electron microscopy, while the presence of Cu-Ag MBGNs in the synthesized hydrogels was determined using energy dispersive x-ray spectroscopy. The incorporation of 0.3% w/v Cu-Ag MBGNs reduced the mechanical properties of the synthesized hydrogels, as investigated using micro-tensile testing. The synthesized ADA-GEL loaded with 0.25% w/v SF and 0.3% w/v Cu-Ag MBGNs showed a potent antibacterial effect againstand. Cellular studies using the NIH3T3-E1 fibroblast cell line confirmed that ADA-GEL films incorporated with 0.3% w/v Cu-Ag MBGNs exhibited promising cellular viability as compared to pure ADA-GEL (determined by WST-8 assay). The addition of SF improved the biocompatibility, degradation rate, moisturizing effects, and stretchability of the developed hydrogels, as determined. Such multimaterial hydrogels can stimulate angiogenesis and exhibit desirable antibacterial properties. Therefore further () tests are justified to assess the hydrogels' potential for wound dressing and skin tissue healing applications.
本工作专注于开发 5%w/v 氧化海藻酸钠(藻酸钠二醛,ADA)-7.5%w/v 明胶(GEL)水凝胶,其中掺入 0.25%w/v 丝素(SF)并负载 0.3%w/v Cu-Ag 掺杂介孔生物活性玻璃纳米颗粒(Cu-Ag MBGNs)。详细表征了复合水凝胶的微观结构、机械性能和生物学性质。扫描电子显微镜证实了所开发的基于 ADA-GEL 的水凝胶的多孔微结构,而能量色散 X 射线光谱法确定了合成水凝胶中存在 Cu-Ag MBGNs。使用微拉伸测试研究了合成水凝胶的机械性能,结果表明掺入 0.3%w/v Cu-Ag MBGNs 降低了其机械性能。使用 NIH3T3-E1 成纤维细胞系进行的细胞研究证实,与纯 ADA-GEL 相比(通过 WST-8 测定),掺入 0.3%w/v Cu-Ag MBGNs 的 ADA-GEL 薄膜显示出有希望的细胞活力。SF 的添加提高了开发的水凝胶的生物相容性、降解率、保湿效果和拉伸性。此类多材料水凝胶可以刺激血管生成并表现出理想的抗菌性能。因此,进一步的()测试是合理的,以评估水凝胶在伤口敷料和皮肤组织愈合应用中的潜力。