Alfei Silvana, Brullo Chiara, Caviglia Debora, Zuccari Guendalina
Department of Pharmacy, University of Genoa, Viale Cembrano, 16148 Genoa, Italy.
Department of Surgical Sciences and Integrated Diagnostics (DISC), University of Genoa, Viale Benedetto XV 6, 16132 Genoa, Italy.
Nanomaterials (Basel). 2021 Oct 10;11(10):2662. doi: 10.3390/nano11102662.
2-(4-Bromo-3,5-diphenyl-pyrazol-1-yl)-ethanol (BBB4) was synthetized and successfully evaluated concerning numerous biological activities, except for antimicrobial and cytotoxic effects. Due to the antimicrobial effects possessed by pyrazole nucleus, which have been widely reported, and the worldwide need for new antimicrobial agents, we thought it would be interesting to test BBB4 and to evaluate its possible antibacterial effects. Nevertheless, since it is water-insoluble, the future clinical application of BBB4 will remain utopic unless water-soluble BBB4 formulations are developed. To this end, before implementing biological evaluations, BBB4 was herein re-synthetized and characterized, and a new water-soluble BBB4-based nano-formulation was developed by its physical entrapment in a biodegradable non-cytotoxic cationic dendrimer (G4K), without recovering harmful solvents as DMSO or surfactants. The obtained BBB4 nanoparticles (BBB4-G4K NPs) showed good drug loading (DL%), satisfying encapsulation efficiency (EE%), and a biphasic quantitative release profile governed by first-order kinetics after 24 h. Additionally, BBB4-G4K was characterized by ATR-FTIR spectroscopy, NMR, SEM, dynamic light scattering analysis (DLS), and potentiometric titration experiments. While, before the nanotechnological manipulation, BBB4 was completely water-insoluble, in the form of BBB4-G4K NPs, its water-solubility resulted in being 105-fold higher than that of the pristine form, thus establishing the feasibility of its clinical application.
2-(4-溴-3,5-二苯基-吡唑-1-基)乙醇(BBB4)已被合成,并成功评估了其多种生物活性,但未评估其抗菌和细胞毒性作用。由于吡唑核具有抗菌作用,这已被广泛报道,且全球对新型抗菌剂有需求,我们认为测试BBB4并评估其可能的抗菌效果会很有趣。然而,由于它不溶于水,除非开发出水溶性的BBB4制剂,否则BBB4的未来临床应用将仍然是空想。为此,在进行生物学评估之前,本文重新合成并表征了BBB4,并通过将其物理包裹在可生物降解的无细胞毒性阳离子树枝状聚合物(G4K)中,开发了一种基于BBB4的新型水溶性纳米制剂,且未回收如二甲基亚砜或表面活性剂等有害溶剂。所获得的BBB4纳米颗粒(BBB4-G4K NPs)显示出良好的载药量(DL%)、令人满意的包封率(EE%),以及在24小时后由一级动力学控制的双相定量释放曲线。此外,通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)、核磁共振(NMR)、扫描电子显微镜(SEM)、动态光散射分析(DLS)和电位滴定实验对BBB4-G4K进行了表征。在进行纳米技术处理之前,BBB4完全不溶于水,而以BBB4-G4K NPs的形式存在时,其水溶性比原始形式高105倍,从而确立了其临床应用的可行性。