Soares Guilherme A, Pires Deivid W, Pinto Leonardo A, Rodrigues Gustavo S, Prospero André G, Biasotti Gabriel G A, Bittencourt Gabriela N, Stoppa Erick G, Corá Luciana A, Oliveira Ricardo B, Miranda José R A
Department of Biophysics and Pharmacology, Institute of Biosciences, São Paulo State University-UNESP, Botucatu 18618-689, São Paulo, Brazil.
Center of Integrative Sciences, Alagoas State University of Health Sciences-UNCISAL, Maceio 57010-382, Alagoas, Brazil.
Pharmaceutics. 2021 Aug 17;13(8):1274. doi: 10.3390/pharmaceutics13081274.
Pharmacomagnetography involves the simultaneous assessment of solid dosage forms (SDFs) in the human gastrointestinal (GI) tract and the drug plasmatic concentration, using a biomagnetic technique and pharmacokinetics analysis. This multi-instrumental approach helps the evaluation, as GI variables can interfere with the drug delivery processes. This study aimed to employ pharmacomagnetography to evaluate the influence of omeprazole on the drug release and absorption of metronidazole administered orally in magnetic-coated tablets. Magnetic-coated tablets, coated with Eudragit E-100 (E100) and containing 100 mg of metronidazole, were produced. For the in vivo experiments, 12 volunteers participated in the two phases of the study (placebo and omeprazole) on different days to assess the bioavailability of metronidazole. The results indicated a shift as the pH of the solution increased and a delay in the dissolution of metronidazole, showing that the pH increase interferes with the release processes of tablets coated with E100. Our study reinforced the advantages of pharmacomagnetography as a tool to perform a multi-instrumental correlation analysis of the disintegration process and the bioavailability of drugs.
药物磁图技术涉及使用生物磁技术和药代动力学分析,同时评估人体胃肠道(GI)中的固体剂型(SDF)和药物血浆浓度。这种多仪器方法有助于进行评估,因为胃肠道变量会干扰药物递送过程。本研究旨在采用药物磁图技术评估奥美拉唑对口服磁性包衣片中甲硝唑药物释放和吸收的影响。制备了用Eudragit E-100(E100)包衣并含有100mg甲硝唑的磁性包衣片。对于体内实验,12名志愿者在不同日期参与了研究的两个阶段(安慰剂和奥美拉唑),以评估甲硝唑的生物利用度。结果表明,随着溶液pH值的升高出现了变化,甲硝唑的溶解延迟,表明pH值升高会干扰用E100包衣的片剂的释放过程。我们的研究强化了药物磁图技术作为一种工具对药物崩解过程和生物利用度进行多仪器相关分析的优势。