Life Sciences Department, University of Belgrade-Institute for Multidisciplinary Research, Kneza Višeslava 1, 11000, Belgrade, Serbia.
Faculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16, 11000, Belgrade, Serbia.
J Biol Inorg Chem. 2023 Oct;28(7):679-687. doi: 10.1007/s00775-023-02018-w. Epub 2023 Sep 1.
The interactions of drugs with iron are of interest in relation to the potential effects of iron-rich foods and iron supplements on sorption and bioavailability. Doxycycline (DOX), a member of the tetracycline class of broad-spectrum antibiotics, is frequently administered by oral route. In the digestive tract, DOX can be exposed to iron at different pH values (stomach pH 1.5-4, duodenum pH 5-6, distal jejunum and ileum pH 7-8). In relation to this, we analyzed the impact of pH on Fe-DOX complex formation. The optimal conditions for Fe-DOX complex formation are pH = 4 and [Fe]/[DOX] = 6 molar ratio. HESI-MS showed that Fe-DOX complex has 1:1 stoichiometry. Raman spectra of Fe-DOX complex indicate the presence of two Fe-binding sites in DOX structure: tricarbonylamide group of ring A and phenolic-diketone oxygens of BCD rings. The Fe-DOX complex formed at pH = 4 is less susceptible to oxidation than DOX at this pH. The increase of pH induces the decomposition of Fe-DOX complex without oxidative degradation of DOX. The pH dependence of Fe-DOX complex formation may promote unwanted effects of DOX, impeding the absorption that mainly takes place in duodenum. This could further result in higher concentrations in the digestive tract and to pronounced impact on gut microbiota.
药物与铁的相互作用与富含铁的食物和铁补充剂对吸附和生物利用度的潜在影响有关。多西环素(DOX)是一种广谱抗生素四环素类药物,常通过口服途径给药。在消化道中,DOX 可以在不同的 pH 值下暴露于铁(胃 pH 值 1.5-4,十二指肠 pH 值 5-6,远端空肠和回肠 pH 值 7-8)。有鉴于此,我们分析了 pH 值对 Fe-DOX 配合物形成的影响。Fe-DOX 配合物形成的最佳条件是 pH=4 和 [Fe]/[DOX]=6 摩尔比。HESI-MS 表明 Fe-DOX 配合物具有 1:1 的化学计量比。Fe-DOX 配合物的拉曼光谱表明 DOX 结构中存在两个 Fe 结合位点:A 环的三羰基酰胺基团和 BCD 环的酚二酮氧。在 pH=4 下形成的 Fe-DOX 配合物比在该 pH 下的 DOX 更不易氧化。pH 值的升高诱导 Fe-DOX 配合物的分解,而不会导致 DOX 的氧化降解。Fe-DOX 配合物形成的 pH 值依赖性可能会促进 DOX 的不良作用,阻碍主要在十二指肠中发生的吸收。这可能会导致消化道中浓度更高,并对肠道微生物群产生明显影响。