Macromolecules Innovation Institute, Virginia Tech, Blacksburg, Virginia 24061.
Department of Industrial and Physical Pharmacy, Purdue University, Indiana 47907.
J Pharm Sci. 2018 Jan;107(1):127-138. doi: 10.1016/j.xphs.2017.05.036. Epub 2017 Jun 7.
Tuberculosis (TB) is a deadly infectious disease; approximately 2 billion people are currently latently infected with the causative agent Mycobacterium tuberculosis. Approximately 8 million new active cases and 2 million deaths due to TB are recorded annually. Rifampin (Rif) is a vital first-line TB treatment drug. Its effectiveness is hampered by the high dose required (600 mg 1×/day) and by its moderate, variable bioavailability. These issues can be explained by Rif instability at gastric pH, limited solubility at neutral pH, polymorphism, and stimulation of its own metabolism. To overcome these obstacles, we developed new cellulose-based oral drug delivery systems aiming to increase and make more consistent Rif solubility and bioavailability. Amorphous solid dispersions (ASDs) of Rif with cellulose ω-carboxyalkanoates (cellulose acetate suberate, cellulose acetate propionate adipate, and cellulose acetate butyrate sebacate) were prepared and compared with crystalline Rif (negative) and carboxymethyl cellulose acetate butyrate ASD (positive) controls. Cellulose ω-carboxyalkanoate ASDs prevented acid-catalyzed degradation in conditions mimicking the acidic stomach and provided complete release of intact Rif at intestinal pH. Rif incorporation into ASD in these novel cellulose derivative matrices creates the potential for convenient, robust, consistent, and high Rif oral bioavailability for treatment of TB.
结核病(TB)是一种致命的传染病;目前大约有 20 亿人潜伏感染了结核分枝杆菌病原体。每年约有 800 万例新的活动性病例和 200 万人死于结核病。利福平(Rif)是一种重要的一线结核病治疗药物。其有效性受到所需高剂量(600mg 1×/天)和中等、可变生物利用度的限制。这些问题可以通过 Rif 在胃 pH 值下的不稳定性、中性 pH 值下的有限溶解度、多晶型性以及自身代谢的刺激来解释。为了克服这些障碍,我们开发了新的基于纤维素的口服药物递送系统,旨在提高和更一致地增加 Rif 的溶解度和生物利用度。制备了 Rif 与纤维素 ω-羧基烷酸酯(柠檬酸纤维素酯、醋酸纤维素丙二酸酯、醋酸纤维素丁二酸酯)的无定形固体分散体(ASD),并与晶型 Rif(阴性)和醋酸纤维素丁酸酯羧甲基 ASD(阳性)对照进行了比较。纤维素 ω-羧基烷酸酯 ASD 可防止在模拟酸性胃的条件下酸催化降解,并在肠道 pH 值下提供完整释放的完整 Rif。将 Rif 掺入这些新型纤维素衍生物基质中的 ASD 为治疗结核病提供了方便、稳健、一致和高 Rif 口服生物利用度的潜力。