Department of Medical Laboratory Science, I-Shou University, Kaohsiung 84001, Taiwan.
Research Organization for Nano and Life Innovation, Future Innovation Institute, Waseda University, Tokyo 162-0041, Japan.
Int J Mol Sci. 2023 Sep 5;24(18):13679. doi: 10.3390/ijms241813679.
Due to the overconsumption of antimicrobials, antibiotic-resistant bacteria have become a critical health issue worldwide, especially methicillin-resistant (MRSA) and vancomycin-resistant (VRE). Recently, many efforts have been made to load metals into bioactive glasses to enhance the multifunctionality of materials, such as antibacterial and osteoinductive functions. Zinc has been documented to stimulate the gene expression of various regulatory factors in bone cells. Meanwhile, previous studies have reported that silver and zinc could be a promising antibacterial combination with synergistic antimicrobial effects. Here, we sought to develop a biomaterial coreleasing zinc and silver, designated 80S-ZnAg, and to evaluate its antibacterial activity and biocompatibility. The textural analyses demonstrated different coreleasing patterns of zinc and silver for the materials. The chemical characterization revealed that the zinc in 80S-ZnAg could be the network modifier when its molar ratio was high, releasing more zinc; zinc could also be the network former when its molar ratio was low, showing an extremely low rate of release. However, the ICP results for 80S-Zn3Ag2 demonstrated up to 7.5 ppm of zinc and 67.6 ppm of silver. Among all the 80S-ZnAg materials, 80S-Zn3Ag2 demonstrated more marked antibacterial activity against MRSA and VRE than the others, with inhibition zones of 11.5 and 13.4 mm, respectively. The cytotoxicity assay exhibited nearly 90% cell viability at 20 mg/mL of 80-Zn3Ag2. Further clinical study is needed to develop an innovative biomaterial to address the issue of antibiotic resistance.
由于抗生素的过度使用,抗生素耐药菌已成为全球范围内的一个重大健康问题,尤其是耐甲氧西林金黄色葡萄球菌(MRSA)和耐万古霉素肠球菌(VRE)。最近,人们做出了许多努力,将金属载入生物活性玻璃中,以增强材料的多功能性,如抗菌和骨诱导功能。锌已被证明能刺激骨细胞中各种调节因子的基因表达。同时,先前的研究报告称,银和锌可能是一种具有协同抗菌作用的有前途的抗菌组合。在这里,我们试图开发一种同时释放锌和银的生物材料,命名为 80S-ZnAg,并评估其抗菌活性和生物相容性。结构分析表明,这些材料具有不同的锌和银的持续释放模式。化学特性表明,80S-ZnAg 中的锌当其摩尔比高时可以作为网络改性剂,释放更多的锌;当摩尔比低时,锌可以作为网络形成剂,表现出极低的释放速率。然而,80S-Zn3Ag2 的 ICP 结果显示,锌和银的释放量分别高达 7.5ppm 和 67.6ppm。在所有的 80S-ZnAg 材料中,80S-Zn3Ag2 对 MRSA 和 VRE 的抗菌活性比其他材料更为显著,抑菌圈分别为 11.5mm 和 13.4mm。细胞毒性试验表明,80-Zn3Ag2 的浓度为 20mg/mL 时,细胞存活率接近 90%。需要进一步的临床研究来开发一种创新的生物材料,以解决抗生素耐药性问题。