胆汁酸靶向透明质酸纳米粒子用于增强对去铁胺的口服吸收

Elizabeth Oladoyin Agboluaje, Shuolin Cui, Neil J. Grimsey, May P. Xiong
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摘要

β地中海贫血症和镰状细胞病患者通常依赖输血,这可能导致血色素沉着症以及细胞和组织中的慢性氧化应激。去铁胺(DFO)已被临床批准用于治疗血色素沉着病,但由于其药代动力学较差,需要长期输注,对患者来说并不理想。虽然口服途径更为可取,但 DFO 的口服生物利用度有限。研究表明,透明质酸(HA)和胆汁酸(BA)可促进吸收不良药物的口服吸收。为了改善 DFO 的口服给药,我们报告了 HA(MW 15 kD)与两种 BA(脱氧胆酸(DOCA)和牛胆酸(TCA))以及 DFO 的合成和表征。由此产生的七种聚合物共轭物都形成了自组装纳米粒子。每一步都通过核磁共振、傅立叶变换红外光谱和紫外可见光谱证实了 BA 和 DFO 与 HA 聚合物的共轭程度。根据理化特性确定了用于进一步体外测试的最佳配方,包括 HA-DFO、TCA9-HA-DFO 和 DOCA9-HA-DFO。体外试验结果表明,与游离药物 DFO 相比,TCA9-HA-DFO 对 DFO 的渗透性增强最大,对细胞的细胞毒性也较小。此外,铁蛋白还原研究表明,在游离 DFO 浓度相当的情况下,DFO 与 TCA9-HA 的共轭不会影响其螯合效率。这项研究为三氯乙酸与 HA 共轭可促进 DFO 的口服吸收、改善其细胞相容性并保持其铁螯合效率的观点提供了支持性数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bile Acid–Targeted Hyaluronic Acid Nanoparticles for Enhanced Oral Absorption of Deferoxamine

Bile Acid–Targeted Hyaluronic Acid Nanoparticles for Enhanced Oral Absorption of Deferoxamine

Patients with β-thalassemia and sickle cell disease often rely on blood transfusions which can lead to hemochromatosis and chronic oxidative stress in cells and tissues. Deferoxamine (DFO) is clinically approved to treat hemochromatosis but is suboptimal to patients due to its poor pharmacokinetics which requires long-term infusion regimens. Although the oral route is preferable, DFO has limited oral bioavailability. Studies have shown that hyaluronic acid (HA) and bile acid (BA) can enhance the oral absorption of poorly absorbed drugs. To improve upon the oral delivery of DFO, we report on the synthesis and characterization of HA (MW 15 kD) conjugated to two types of BA, deoxycholic acid (DOCA) and taurocholic acid (TCA), and DFO. The resulting seven polymeric conjugates all formed self-assembled nanoparticles. The degree of BA and DFO conjugation to the HA polymer was confirmed at each step through nuclear magnetic resonance, Fourier transform infrared spectroscopy, and UV–Vis spectroscopy. The best formulations for further in vitro testing were determined based on physicochemical characterizations and included HA-DFO, TCA9-HA-DFO, and DOCA9-HA-DFO. Results from in vitro assays revealed that TCA9-HA-DFO enhanced the permeation of DFO the most and was also less cytotoxic to cells compared to the free drug DFO. In addition, ferritin reduction studies indicated that the conjugation of DFO to TCA9-HA did not compromise its chelation efficiency at equivalent free DFO concentrations. This research provides supportive data for the idea that TCA conjugated to HA may enhance the oral absorption of DFO, improve its cytocompatibility, and maintain its iron chelation efficiency.

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