DeAlba-Montero I, Guajardo-Pacheco Jesús, Morales-Sánchez Elpidio, Araujo-Martínez Rene, Loredo-Becerra G M, Martínez-Castañón Gabriel-Alejandro, Ruiz Facundo, Compeán Jasso M E
Doctorado Institucional en Ingeniería y Ciencia de Materiales, Universidad Autónoma de San Luis Potosí, San Luis Potosí, SLP, Mexico; Facultad de Ciencias, Universidad Autónoma de San Luis Potosí, San Luis Potosí, SLP, Mexico.
Facultad de Estomatología, Universidad Autónoma de San Luis Potosí, San Luis Potosí, SLP, Mexico.
Bioinorg Chem Appl. 2017;2017:1064918. doi: 10.1155/2017/1064918. Epub 2017 Feb 13.
This paper reports a comparison of the antibacterial properties of copper-amino acids chelates and copper nanoparticles against , , and . These copper-amino acids chelates were synthesized by using a soybean aqueous extract and copper nanoparticles were produced using as a starting material the copper-amino acids chelates species. The antibacterial activity of the samples was evaluated by using the standard microdilution method (CLSI M100-S25 January 2015). In the antibacterial activity assays copper ions and copper-EDTA chelates were included as references, so that copper-amino acids chelates can be particularly suitable for acting as an antibacterial agent, so they are excellent candidates for specific applications. Additionally, to confirm the antimicrobial mechanism on bacterial cells, MTT assay (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide) was carried out. A significant enhanced antimicrobial activity and a specific strain were found for copper chelates over . Its results would eventually lead to better utilization of copper-amino acids chelate for specific application where copper nanoparticles can be not used.
本文报道了铜氨基酸螯合物和铜纳米颗粒对[具体菌种未给出]、[具体菌种未给出]和[具体菌种未给出]的抗菌性能比较。这些铜氨基酸螯合物是通过使用大豆水提取物合成的,而铜纳米颗粒则是以铜氨基酸螯合物为起始原料制备的。采用标准微量稀释法(CLSI M100-S25 2015年1月)评估样品的抗菌活性。在抗菌活性测定中,将铜离子和铜-乙二胺四乙酸螯合物作为对照,因此铜氨基酸螯合物可能特别适合用作抗菌剂,所以它们是特定应用的优秀候选物。此外,为了确认对细菌细胞的抗菌机制,进行了MTT试验(3-[4,5-二甲基噻唑-2-基]-2,5-二苯基四氮唑溴盐)。发现铜螯合物对[具体菌种未给出]具有显著增强的抗菌活性和特定菌株。其结果最终将导致在不能使用铜纳米颗粒的特定应用中更好地利用铜氨基酸螯合物。