Laboratory of Applied Chemistry (LAC), Department of Chemistry, Faculty of Sciences III, Lebanese University Mont Michel, El Koura 826, Lebanon.
Department of Radiological Sciences, College of Applied Medical Science, King Khalid University, Abha 61421, Saudi Arabia.
Molecules. 2023 Jul 10;28(14):5311. doi: 10.3390/molecules28145311.
To address the high tolerance of biofilms to antibiotics, it is urgent to develop new strategies to fight against these bacterial consortia. An innovative antibiofilm nanovector drug delivery system, consisting of Dispersin B-permethylated-β-cyclodextrin/ciprofloxacin adamantyl (DspB-β-CD/CIP-Ad), is described here. For this purpose, complexation assays between CIP-Ad and (i) unmodified β-CD and (ii) different derivatives of β-CD, which are 2,3-O-dimethyl-β-CD, 2,6-O-dimethyl-β-CD, and 2,3,6-O-trimethyl-β-CD, were tested. A stoichiometry of 1/1 was obtained for the β-CD/CIP-Ad complex by NMR analysis. Isothermal Titration Calorimetry (ITC) experiments were carried out to determine Ka, ΔH, and ΔS thermodynamic parameters of the complex between β-CD and its different derivatives in the presence of CIP-Ad. A stoichiometry of 1/1 for β-CD/CIP-Ad complexes was confirmed with variable affinity according to the type of methylation. A phase solubility study showed increased CIP-Ad solubility with CD concentration, pointing out complex formation. The evaluation of the antibacterial activity of CIP-Ad and the 2,3-O-dimethyl-β-CD/CIP-Ad or 2,3,6-O-trimethyl-β-CD/CIP-Ad complexes was performed on () strains. The Minimum Inhibitory Concentration (MIC) studies showed that the complex of CIP-Ad and 2,3-O-dimethyl-β-CD exhibited a similar antimicrobial activity to CIP-Ad alone, while the interaction with 2,3,6-O-trimethyl-β-CD increased MIC values. Antimicrobial assays on S. epidermidis biofilms demonstrated that the synergistic effect observed with the DspB/CIP association was partly maintained with the 2,3-O-dimethyl-β-CDs/CIP-Ad complex. To obtain this "all-in-one" drug delivery system, able to destroy the biofilm matrix and release the antibiotic simultaneously, we covalently grafted DspB on three carboxylic permethylated CD derivatives with different-length spacer arms. The strategy was validated by demonstrating that a DspB-permethylated-β-CD/ciprofloxacin-Ad system exhibited efficient antibiofilm activity.
为了解决生物膜对抗生素的高耐受性,迫切需要开发新的策略来对抗这些细菌群落。本文描述了一种创新的抗生物膜纳米载体药物递送系统,由Dispersin B-全甲基-β-环糊精/环丙沙星金刚烷(DspB-β-CD/CIP-Ad)组成。为此,测试了 CIP-Ad 与(i)未修饰的β-CD 和(ii)β-CD 的不同衍生物,即 2,3-O-二甲基-β-CD、2,6-O-二甲基-β-CD 和 2,3,6-O-三甲基-β-CD 之间的络合作用。通过 NMR 分析,得到β-CD/CIP-Ad 配合物的化学计量比为 1/1。通过等温滴定量热法(ITC)实验,确定了β-CD 及其不同衍生物与 CIP-Ad 存在时的复合物的 Ka、ΔH 和ΔS 热力学参数。根据甲基化类型,确认了β-CD/CIP-Ad 配合物的化学计量比为 1/1,具有可变亲和力。相溶解度研究表明,随着 CD 浓度的增加,CIP-Ad 的溶解度增加,表明形成了配合物。对 CIP-Ad 和 2,3-O-二甲基-β-CD/CIP-Ad 或 2,3,6-O-三甲基-β-CD/CIP-Ad 配合物的抗菌活性进行了评价()菌株。最小抑菌浓度(MIC)研究表明,CIP-Ad 与 2,3-O-二甲基-β-CD 的配合物表现出与单独 CIP-Ad 相似的抗菌活性,而与 2,3,6-O-三甲基-β-CD 的相互作用增加了 MIC 值。表皮葡萄球菌生物膜的抗菌试验表明,与 DspB/CIP 缔合观察到的协同作用在一定程度上与 2,3-O-二甲基-β-CD/CIP-Ad 配合物保持一致。为了获得这种能够同时破坏生物膜基质并释放抗生素的“一体化”药物递送系统,我们将 DspB 共价接枝到三种具有不同长度间隔臂的羧酸全甲基化 CD 衍生物上。通过证明 DspB-全甲基-β-CD/环丙沙星-Ad 系统具有有效的抗生物膜活性,验证了该策略的有效性。