Biotechnology Research Center, Microbial Biotechnology Laboratory, AmitisGen Med TECH Group, P.O. Box: 1416673744, Tehran, Iran.
Department of Biotechnology, Faculty of Basic Sciences, Damghan Branch, Islamic Azad University, Semnan, Iran.
Sci Rep. 2022 Mar 24;12(1):5140. doi: 10.1038/s41598-022-09195-9.
We aim to assess the antibacterial and anti-biofilm properties of Niosome-encapsulated Imipenem. After isolating Staphylococcus epidermidis isolates and determining their microbial sensitivity, their ability to form biofilms was examined using plate microtiter assay. Various formulations of Niosome-encapsulated Imipenem were prepared using the thin-film hydration method, Minimum Biofilm Inhibitory Concentration (MBIC) and Minimum Inhibitory Concentration (MIC) were determined, and biofilm genes expression was examined. Drug formulations' toxicity effect on HDF cells were determined using MTT assay. Out of the 162 separated S. epidermidis, 106 were resistant to methicillin. 87 MRSE isolates were vancomycin-resistant, all of which could form biofilms. The F1 formulation of niosomal Imipenem with a size of 192.3 ± 5.84 and an encapsulation index of 79.36 ± 1.14 was detected, which prevented biofilm growth with a BGI index of 69% and reduced icaD, FnbA, EbpS biofilms' expression with P ≤ 0.001 in addition to reducing MBIC and MIC by 4-6 times. Interestingly, F1 formulation of niosomal Imipenem indicated cell viability over 90% at all tested concentrations. The results of the present study indicate that Niosome-encapsulated Imipenem reduces the resistance of MRSE to antibiotics in addition to increasing its anti-biofilm and antibiotic activity, and could prove useful as a new strategy for drug delivery.
我们旨在评估包裹在尼奥斯ome 中的亚胺培南的抗菌和抗生物膜特性。在分离表皮葡萄球菌分离株并确定其微生物敏感性后,使用平板微量滴定法检查其形成生物膜的能力。使用薄膜水合方法制备了各种包裹在尼奥斯ome 中的亚胺培南制剂,测定了最低生物膜抑制浓度(MBIC)和最低抑菌浓度(MIC),并检查了生物膜基因表达。通过 MTT 测定法确定药物制剂对 HDF 细胞的毒性作用。在分离出的 162 株表皮葡萄球菌中,有 106 株对甲氧西林耐药。87 株 MRSE 分离株对万古霉素耐药,所有这些分离株都能形成生物膜。检测到大小为 192.3 ± 5.84、包封指数为 79.36 ± 1.14 的尼奥斯ome 包裹亚胺培南 F1 制剂,其 BGI 指数为 69%,可防止生物膜生长,并使 icaD、FnbA、EbpS 生物膜的表达降低,P 值均≤0.001,同时将 MBIC 和 MIC 降低 4-6 倍。有趣的是,尼奥斯ome 包裹的亚胺培南 F1 制剂在所有测试浓度下的细胞活力均超过 90%。本研究结果表明,包裹在尼奥斯ome 中的亚胺培南降低了 MRSE 对抗生素的耐药性,同时增加了其抗生物膜和抗生素活性,可作为一种新的药物输送策略。