Bongiorno Dafne, Musso Nicolò, Bonacci Paolo G, Bivona Dalida A, Massimino Mariacristina, Stracquadanio Stefano, Bonaccorso Carmela, Fortuna Cosimo G, Stefani Stefania
Section of Microbiology, Department of Biomedical and Biotechnological Sciences (BIMETEC), University of Catania, 95123 Catania, Italy.
Department of Chemical Sciences, University of Catania, 95125 Catania, Italy.
Antibiotics (Basel). 2021 Aug 25;10(9):1034. doi: 10.3390/antibiotics10091034.
The widespread use of antibiotics has led to a gradual increase in drug-resistant bacterial infections, which severely weakens the clinical efficacy of antibacterial therapies. In recent decades, stilbenes aroused great interest because of their high bioavailability, as well as their manifold biological activity. Our research efforts are focused on synthetic heteroaromatic stilbene derivatives as they represent a potentially new type of antibiotic with a wide antibacterial spectrum. Herein, a preliminary molecular modeling study and a versatile synthetic scheme allowed us to define eight heteroaromatic stilbene derivatives with potential antimicrobial activity. In order to evaluate our compound's activity spectrum and antibacterial ability, minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) tests have been performed on Gram-positive and Gram-negative ATCC strains. Compounds PB4, PB5, PB7, and PB8 showed the best values in terms of MIC and were also evaluated for MBC, which was found to be greater than MIC, confirming a bacteriostatic activity. For all compounds, we evaluated toxicity on colon-rectal adenocarcinoma cells tumor cells (CaCo2), once it was established that the whole selected set was more active than 5-Fluorouracil in reducing CaCo-2 cells viability. To the best of our knowledge, the biological assays have shown for these derivatives an excellent bacteriostatic activity, compared to similar molecular structures previously reported, thus paving the way for a new class of antibiotic compounds.
抗生素的广泛使用导致耐药性细菌感染逐渐增加,这严重削弱了抗菌治疗的临床疗效。近几十年来,芪类化合物因其高生物利用度以及多种生物活性而引起了极大关注。我们的研究工作集中在合成杂芳基芪衍生物上,因为它们代表了一种具有广泛抗菌谱的潜在新型抗生素。在此,一项初步的分子建模研究和一个通用的合成方案使我们能够确定八种具有潜在抗菌活性的杂芳基芪衍生物。为了评估我们化合物的活性谱和抗菌能力,对革兰氏阳性和革兰氏阴性ATCC菌株进行了最低抑菌浓度(MIC)和最低杀菌浓度(MBC)测试。化合物PB4、PB5、PB7和PB8在MIC方面表现出最佳值,并且还对MBC进行了评估,发现其大于MIC,证实了抑菌活性。对于所有化合物,一旦确定整个选定的化合物组在降低CaCo-2细胞活力方面比5-氟尿嘧啶更具活性,我们就评估了它们对结肠直肠癌肿瘤细胞(CaCo2)的毒性。据我们所知,与先前报道的类似分子结构相比,这些衍生物的生物学测定显示出优异的抑菌活性,从而为一类新型抗生素化合物铺平了道路。