Department of Life and Environmental Sciences, Polytechnic University of Marche, Via Brecce Bianche, 60131, Ancona, Italy.
Department of Biomedical Sciences and Public Health, Polytechnic University of Marche, Via Tronto 10/a, 60020, Torrette di, Ancona, Italy.
Eur J Med Chem. 2020 Mar 1;189:112072. doi: 10.1016/j.ejmech.2020.112072. Epub 2020 Jan 21.
Pursuing the search for a new class of structurally simple mimics of antimicrobial peptides, we optimized a short, cheap and high-yielding synthesis of mono-charged amphiphilic α-hydrazido acid derivatives. The most active derivatives furnished MICs that are among the best values reported in literature for synthetic amphiphilic membranolytic compounds. They exhibited a broad-spectrum in vitro activity against a variety of Gram-positive and Gram-negative bacteria, including two multidrug-resistant strains. In spite of the minimal cationic charge, the best compounds demonstrated to be selective toward bacterial cell membranes over mammalian cell membranes. The relationship between either the antibacterial or the hemolytic activity and the overall lipophilicity furnished an easy way to individuate the best dimensional range for the hydrophobic portions. The importance of a non-disrupted amphiphilicity was also demonstrated. Considering the bioactivity profile and the ease of synthesis, these chemically and proteolitically stable hydrochlorides are suitable for development of a new class of wide-spectrum antibiotics.
为了寻找具有结构简单的新型抗菌肽模拟物,我们优化了一种短、廉、高产的单电荷两亲性α-酰腙酸衍生物的合成方法。最有效的衍生物提供的 MIC 值是文献中报道的合成两亲性膜裂解化合物的最佳值之一。它们在体外对多种革兰氏阳性和革兰氏阴性细菌具有广谱活性,包括两种耐多药菌株。尽管正电荷很小,但最好的化合物对细菌细胞膜的选择性高于哺乳动物细胞膜。抗菌或溶血活性与整体疏水性之间的关系为确定疏水区的最佳维度范围提供了一种简单的方法。非破坏两亲性的重要性也得到了证明。考虑到生物活性谱和合成的容易性,这些化学和蛋白水解稳定的盐酸盐适合开发一类新的广谱抗生素。