Nobil Bio Ricerche Srl, Portacomaro 14037, AT, Italy.
National Center for Scientific Research "Demokritos", Athens 15341, Greece.
Int J Nanomedicine. 2019 Dec 31;14:10147-10164. doi: 10.2147/IJN.S234393. eCollection 2019.
Silver decorated mesoporous carbons are interesting systems that may offer effective solutions for advanced wound care products by combining the well-known anti-microbial activity of silver nanoparticles with the versatile properties of ordered mesoporous carbons. Silver is being used as a topical antimicrobial agent, especially in wound repair. However, while silver shows bactericidal properties, it is also cytotoxic at high concentrations. Therefore, the incorporation of silver into ordered mesoporous carbons allows to exploit both silver's biological effects and mesoporous carbons' biocompatibility and versatility with the purpose of conceiving silver-doped materials in light of the growing health concern in wound care.
The wound healing potential of an ordered mesoporous carbon also doped with two different loadings of silver nanoparticles (2 wt% and 10 wt%), was investigated through a biological assessment study based on different assays (cell viability, inflammation, antibacterial tests, macrophage-conditioned fibroblast and human keratinocyte cell cultures).
The results show silver-doped ordered mesoporous carbons to positively condition cell viability, with a cell viability percentage >70% even for 10 wt% Ag, to modulate the expression of inflammatory cytokines and of genes involved in tissue repair (KRT6a, VEGFA, IVN) and remodeling (MMP9, TIMP3) in different cell systems. Furthermore, along with the biocompatibility and the bioactivity, the silver-doped ordered mesoporous carbons still retain an antibacterial effect, as shown by a maximum of 13.1% of inhibited area in the Halo test. The obtained results clearly showed that the silver-doped ordered mesoporous carbons exhibit both good biocompatibility and antibacterial effect with enhanced re-epithelialization, angiogenesis promotion and tissue regeneration.
These findings suggest that the exceptional properties of silver-doped ordered mesoporous carbons could be exploited in the treatment of acute and chronic wounds and that such carbon materials could be potential candidates for use in medical devices for wound healing purposes, in particular, the 10 wt% loading, as the results showed to be the most effective.
银修饰的介孔碳是一种有趣的系统,通过将众所周知的纳米银的抗菌活性与有序介孔碳的多功能性质相结合,可为先进的伤口护理产品提供有效的解决方案。银被用作局部抗菌剂,特别是在伤口修复中。然而,虽然银具有杀菌特性,但在高浓度下也具有细胞毒性。因此,将银掺入有序介孔碳中,可以利用银的生物效应和介孔碳的生物相容性和多功能性,旨在根据伤口护理中日益增长的健康关注,设计银掺杂材料。
通过基于不同测定法(细胞活力、炎症、抗菌试验、巨噬细胞条件化成纤维细胞和人角质形成细胞培养物)的生物评估研究,研究了两种不同负载量的银纳米粒子(2wt%和 10wt%)掺杂的有序介孔碳的伤口愈合潜力。
结果表明,银掺杂有序介孔碳可积极调节细胞活力,即使对于 10wt%Ag,细胞活力百分比也>70%,还可以调节不同细胞系统中炎症细胞因子和组织修复(KRT6a、VEGFA、IVN)和重塑(MMP9、TIMP3)相关基因的表达。此外,银掺杂有序介孔碳仍然具有抗菌作用,Halo 试验中抑制面积最大可达 13.1%,同时保持生物相容性和生物活性。研究结果清楚地表明,银掺杂有序介孔碳具有良好的生物相容性和抗菌作用,可增强再上皮化、促进血管生成和组织再生。
这些发现表明,银掺杂有序介孔碳的特殊性质可用于治疗急性和慢性伤口,并且此类碳材料可能是用于伤口愈合医疗设备的潜在候选材料,特别是 10wt%负载量,因为结果表明其效果最有效。