Institute for Ubiquitous Information Technology and Applications (UBITA) & Center for Biotechnology Research in UBITA (CBRU), Konkuk University, Seoul, Republic of Korea.
Department of Systems Biotechnology, Microbial Carbohydrate Resource Bank (MCRB) & Center for Biotechnology Research in UBITA (CBRU), Konkuk University, Seoul, Republic of Korea.
Carbohydr Polym. 2017 May 1;163:118-128. doi: 10.1016/j.carbpol.2017.01.073. Epub 2017 Jan 22.
Ciprofloxacin is a broad-spectrum fluoroquinolone antibiotic used to treat bacterial infections; however, its limited aqueous solubility inhibits its broader clinical uses. This study investigated the complexation effect of mono-6-deoxy-6-aminoethylamino-β-cyclodextrin on the aqueous solubility and bioavailability of ciprofloxacin. During complexation, the oval-shaped cavity induced by mono-aminoethylamine substitution on the primary rim of β-cyclodextrin, was considered to be a key factor according to NMR spectroscopy and molecular modeling studies. The ciprofloxacin with mono-6-deoxy-6-aminoethylamino-β-cyclodextrin complex was characterized using FE-SEM, DSC, FT-IR, T1 relaxation, 2D NOESY, and DOSY NMR spectroscopy and molecular modeling studies. The solubility property of ciprofloxacin complexed with mono-6-deoxy-6-aminoethylamino-β-cyclodextrin was enhanced by seven-fold compared to that of pure ciprofloxacin. Furthermore antibacterial activity of that complex against methicillin-resistant Staphylococcus aureus was enhanced and it clearly showed the growth inhibition. The mono-6-deoxy-6-aminoethylamino-β-cyclodextrin has the potential to be utilized for other oblong guest molecules besides ciprofloxacin based on the novel induced elliptical cavity.
环丙沙星是一种广谱氟喹诺酮类抗生素,用于治疗细菌感染;然而,其有限的水溶解度限制了其更广泛的临床应用。本研究调查了单-6-去氧-6-氨基乙基氨基-β-环糊精对环丙沙星水溶解度和生物利用度的络合作用。在络合过程中,根据 NMR 光谱和分子建模研究,认为单-氨基乙基取代β-环糊精的初级边缘诱导的椭圆形空腔是一个关键因素。采用 FE-SEM、DSC、FT-IR、T1 弛豫、二维 NOESY 和 DOSY NMR 光谱和分子建模研究对环丙沙星与单-6-去氧-6-氨基乙基氨基-β-环糊精的复合物进行了表征。与纯环丙沙星相比,环丙沙星与单-6-去氧-6-氨基乙基氨基-β-环糊精形成的复合物的溶解度提高了七倍。此外,该复合物对耐甲氧西林金黄色葡萄球菌的抗菌活性增强,并明显表现出抑制生长作用。单-6-去氧-6-氨基乙基氨基-β-环糊精具有潜力,除了基于新型诱导椭圆形空腔的环丙沙星之外,还可以用于其他长形客体分子。