School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.
J Mater Chem B. 2021 Jan 28;9(3):658-676. doi: 10.1039/d0tb01747g.
In recent years, applying various wound dressings with antibacterial activities to expedite tissue repair stages has gained remarkable attention. The intertwined three-dimensional structure of nanofibers provides unique spaces for carrying drugs and repair agents during the wound healing process. In this research, a carbon quantum dot (CQD)/silica nanoparticle (Si NP)/silk fibroin (SF) nanocomposite was synthesized, and two novel wound dressings, a BC-CQD/Si NP/SF nanocomposite and a PVA-CQD/Si NP/SF nanofiber, were prepared by Spray Printing and Electrospinning methods and successfully characterized. The water-uptake capacity of the BC-CQD/Si NP/SF nanocomposite has been optimized to evaluate its swelling behavior. To determine the antibacterial effects of the synthesized materials both MIC and Optical Density (OD) methods were performed, and the results imply that materials have high antibacterial activity and could successfully inhibit the growth of both S. aureus and E. coli bacteria. Cell toxicity, viability, and proliferation on NIH 3T3 fibroblast cells with the MTT assay have proved that the CQD/Si NP/SF nanocomposite not only has no toxicity but also can accelerate cell viability and proliferation. To assess the effect of the CQD/Si NP/SF nanocomposite on cell migration and in vitro wound healing scratch, a wound assay was performed, and the nanocomposite exhibits the ability to promote wound healing. The PVA-CQD/Si NP/SF nanofiber was used to investigate wound healing in an animal model. The results show that the PVA-CQD/Si NP/SF nanofiber effectively accelerates the skin and hair follicle regeneration. Therefore, the PVA-CQD/Si NP/SF nanofiber is a promising wound dressing for inhibiting bacterial growth and promoting skin wound repair and hair regeneration.
近年来,将具有抗菌活性的各种伤口敷料应用于加速组织修复阶段引起了人们的极大关注。纳米纤维的交织三维结构在伤口愈合过程中为携带药物和修复剂提供了独特的空间。在这项研究中,合成了一种碳量子点(CQD)/二氧化硅纳米颗粒(Si NP)/丝素(SF)纳米复合材料,并通过喷涂印刷和静电纺丝方法成功制备了两种新型伤口敷料,即 BC-CQD/Si NP/SF 纳米复合材料和 PVA-CQD/Si NP/SF 纳米纤维,并对其进行了成功的表征。优化了 BC-CQD/Si NP/SF 纳米复合材料的吸水率以评估其溶胀行为。为了确定合成材料的抗菌效果,分别采用 MIC 和光密度(OD)方法进行了测试,结果表明材料具有高抗菌活性,可以成功抑制金黄色葡萄球菌和大肠杆菌的生长。通过 MTT 测定法对 NIH 3T3 成纤维细胞的细胞毒性、活力和增殖进行了研究,证明 CQD/Si NP/SF 纳米复合材料不仅没有毒性,而且可以加速细胞活力和增殖。为了评估 CQD/Si NP/SF 纳米复合材料对细胞迁移和体外伤口愈合划痕的影响,进行了伤口测定,结果表明纳米复合材料具有促进伤口愈合的能力。使用 PVA-CQD/Si NP/SF 纳米纤维研究了动物模型中的伤口愈合。结果表明,PVA-CQD/Si NP/SF 纳米纤维可有效加速皮肤和毛囊再生。因此,PVA-CQD/Si NP/SF 纳米纤维是一种有前途的伤口敷料,可抑制细菌生长并促进皮肤伤口修复和头发再生。