a School of Pharmacy, The University of Jordan , Amman , Jordan.
b Department of pharmacy , Faculty of health science, American University of Madaba , Amman , Jordan.
Drug Dev Ind Pharm. 2019 Feb;45(2):292-303. doi: 10.1080/03639045.2018.1539495. Epub 2018 Dec 2.
To study the potential influence of selected metal ions on absorption (and hence oral bioavailability of ciprofloxacin (Cipro) in presence and absence of a competing ligand.
The presence of metal ions together with Cipro results in complexes exhibiting a decreased bioavailability. Attempts were made to better understand the mechanism of decreased Cipro bioavailability in the presence of metals such as calcium and ferrous ions, and a small-sized ligand citric acid (CitA).
Effect of complex size or other potential factors was studied using diffusion through synthetic membrane, permeation studies across Caco-2 cells and capillary electrophoresis. A molecular dynamics (MD) simulation study was conducted to find the arrangement and the nature of the interactions between Cipro molecules and ferrous ions.
Cipro was shown to form complexes with metals and CitA. The presence of CitA improved permeation of Cipro through the synthetic membrane but this was not as obvious in case of Caco-2 cells. Capillary electrophoresis suggested the existence of large molecular aggregates of Cipro: metal complexes. MD simulations offered clear evidence of large size aggregates in line with the experimental findings. CitA alone significantly improved permeation of Cipro through Caco-2 cells.
The size of the formed complexes, rather than the decrease in the solubility of formed complexes, plays a significant role in permeation (absorption) of Cipro. CitA might ameliorate the effect of co-administered metal ions on the bioavailability of Cipro.
研究选定金属离子对环丙沙星(Cipro)吸收(进而影响其口服生物利用度)的潜在影响,研究同时考虑了存在和不存在竞争配体的情况。
金属离子与 Cipro 共存会形成复合物,导致其生物利用度降低。本研究试图更好地理解在存在钙和亚铁离子等金属以及小分子配体柠檬酸(CitA)的情况下,Cipro 生物利用度降低的机制。
使用合成膜扩散、Caco-2 细胞渗透研究和毛细管电泳研究了复合物大小或其他潜在因素的影响。还进行了分子动力学(MD)模拟研究,以发现 Cipro 分子与亚铁离子之间的排列和相互作用的性质。
Cipro 被证实与金属和 CitA 形成复合物。CitA 的存在提高了 Cipro 通过合成膜的渗透,但在 Caco-2 细胞中并不明显。毛细管电泳表明 Cipro:金属复合物存在大的分子聚集体。MD 模拟提供了明确的证据表明存在与实验结果一致的大尺寸聚集体。单独的 CitA 可显著提高 Cipro 通过 Caco-2 细胞的渗透。
形成的复合物的大小而不是形成的复合物的溶解度降低,在 Cipro 的渗透(吸收)中起着重要作用。CitA 可能会减轻同时给予的金属离子对 Cipro 生物利用度的影响。