Laboratorio di Patologia delle Infezioni Associate all'Impianto, IRCCS Istituto Ortopedico Rizzoli, Via di Barbiano 1/10, 40136 Bologna, Italy.
Department of Medical and Surgical Sciences (DIMEC), University of Bologna, Via San Giacomo 14, 40126 Bologna, Italy.
Int J Mol Sci. 2023 Jan 2;24(1):779. doi: 10.3390/ijms24010779.
In orthopedic surgery, biomaterial-associated infections represent a complication of serious concern. Most promising strategies to prevent these infections currently rely on the use of anti-infective biomaterials. Desirably, in anti-infective biomaterials, the antibacterial properties should be achieved by doping, grafting, or coating the material surfaces with molecules that are alternative to conventional antibiotics and exhibit a potent and highly specific activity against bacteria, without altering the biocompatibility. Antimicrobial peptides (AMPs) are among the most interesting candidate molecules for this biomaterial functionalization. Here, the potential expressed by the recently discovered peptide Dadapin-1 was explored by assaying its MIC, MBIC and MBC on clinical strains of relevant bacterial species isolated from orthopedic infections and by assessing its cytotoxicity on the human osteoblast-like MG63 cells. When appropriately tested in diluted Mueller Hinton Broth II (MHB II), Dadapin-1 exhibited significant antibacterial properties. MIC values were in the range of 3.1-6.2 µM for the gram-positive bacteria , , and , and 12.4-24.9 µM for the gram-negative bacteria and . Interestingly, the peptide was found non-cytotoxic, with an IC50 exceeding the highest concentration tested of 179 µM. Overall, Dadapin-1 expresses considerable potential for future application in the production of anti-infective biomaterials.
在骨科手术中,生物材料相关感染是一种严重的并发症。目前,预防这些感染最有希望的策略是使用抗感染生物材料。理想情况下,在抗感染生物材料中,抗菌性能应该通过掺杂、接枝或涂覆替代传统抗生素的分子来实现,这些分子对细菌具有强大而高度特异的活性,而不会改变生物相容性。抗菌肽 (AMP) 是这种生物材料功能化最有前途的候选分子之一。在这里,通过测定 Dadapin-1 在临床上从骨科感染中分离出的相关细菌的临床株的 MIC、MBIC 和 MBC,评估其对人成骨样 MG63 细胞的细胞毒性,来探索 Dadapin-1 最近发现的潜在抗菌特性。在适当稀释的 Mueller Hinton Broth II (MHB II) 中进行测试时,Dadapin-1 表现出显著的抗菌特性。革兰氏阳性菌的 MIC 值范围为 3.1-6.2 μM,革兰氏阴性菌的 MIC 值范围为 12.4-24.9 μM。有趣的是,该肽被发现无细胞毒性,IC50 超过 179 μM 的最高测试浓度。总的来说,Dadapin-1 具有相当大的未来应用潜力,可用于生产抗感染生物材料。