Scudiero Olga, Nigro Ersilia, Cantisani Marco, Colavita Irene, Leone Marilisa, Mercurio Flavia Anna, Galdiero Massimiliano, Pessi Antonello, Daniele Aurora, Salvatore Francesco, Galdiero Stefania
CEINGE-Biotecnologie Avanzate Scarl, Naples, Italy ; Dipartimento di Medicina Molecolare e Biotecnologie Mediche, Università di Napoli Federico II, Naples, Italy.
CEINGE-Biotecnologie Avanzate Scarl, Naples, Italy.
Int J Nanomedicine. 2015 Oct 15;10:6523-39. doi: 10.2147/IJN.S89610. eCollection 2015.
We have designed a cyclic 17-amino acid β-defensin analog featuring a single disulfide bond. This analog, designated "AMC" (ie, antimicrobial cyclic peptide), combines the internal hydrophobic domain of hBD1 and the C-terminal charged region of hBD3. The novel peptide was synthesized and characterized by nuclear magnetic resonance spectroscopy. The antimicrobial activities against gram-positive and gram-negative bacteria as well as against herpes simplex virus type 1 were analyzed. The cytotoxicity and serum stability were assessed. Nuclear magnetic resonance of AMC in aqueous solution suggests that the structure of the hBD1 region, although not identical, is preserved. Like the parent defensins, AMC is not cytotoxic for CaCo-2 cells. Interestingly, AMC retains the antibacterial activity of the parent hBD1 and hBD3 against Pseudomonas aeruginosa, Enterococcus faecalis, and Escherichia coli, and exerts dose-dependent activity against herpes simplex virus type 1. Moreover, while the antibacterial and antiviral activities of the oxidized and reduced forms of the parent defensins are similar, those of AMC are significantly different, and oxidized AMC is also considerably more stable in human serum. Taken together, our data also suggest that this novel peptide may be added to the arsenal of tools available to combat antibiotic-resistant infectious diseases, particularly because of its potential for encapsulation in a nanomedicine vector.
我们设计了一种具有单个二硫键的环状17氨基酸β-防御素类似物。这种类似物被命名为“AMC”(即抗菌环肽),它结合了hBD1的内部疏水结构域和hBD3的C端带电荷区域。通过核磁共振光谱对这种新型肽进行了合成和表征。分析了其对革兰氏阳性菌和革兰氏阴性菌以及对1型单纯疱疹病毒的抗菌活性。评估了其细胞毒性和血清稳定性。AMC在水溶液中的核磁共振结果表明,hBD1区域的结构虽然不完全相同,但得以保留。与母体防御素一样,AMC对CaCo-2细胞无细胞毒性。有趣的是,AMC保留了母体hBD1和hBD3对铜绿假单胞菌、粪肠球菌和大肠杆菌的抗菌活性,并对1型单纯疱疹病毒具有剂量依赖性活性。此外,虽然母体防御素的氧化形式和还原形式的抗菌和抗病毒活性相似,但AMC的抗菌和抗病毒活性却有显著差异,并且氧化型AMC在人血清中也更稳定得多。综上所述,我们的数据还表明,这种新型肽可能会被添加到对抗抗生素耐药性传染病的可用工具库中,特别是因为它有被封装在纳米药物载体中的潜力。