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Agglomerated Oral Dosage Forms of Artemisinin/β-Cyclodextrin Spray-Dried Primary Microparticles Showing Increased Dissolution Rate and Bioavailability

机译:青蒿素/β-环糊精喷雾干燥初级颗粒的聚集口服剂型显示增加的溶出速率和生物利用度

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摘要

Artemisinin, a poorly water-soluble antimalarial drug, presents a low and erratic bioavailability upon oral administration. The aim of this work was to study an agglomerated powder dosage form for oral administration of artemisinin based on the artemisinin/β-cyclodextrin primary microparticles. These primary microparticles were prepared by spray-drying a water–methanol solution of artemisinin/β-cyclodextrin. β-Cyclodextrin in spray-dried microparticles increased artemisinin water apparent solubility approximately sixfold. The thermal analysis evidenced a reduction in the enthalpy value associated with drug melting, due to the decrease in drug crystallinity. The latter was also evidenced by powder X-ray diffraction analysis, while 13C-NMR analysis indicated the partial complexation with β-cyclodextrin. Agglomerates obtained by sieve vibration of spray-dried artemisinin/β-cyclodextrin primary microparticles exhibited free flowing and close packing properties compared with the non-flowing microparticulate powder. The in vitro dissolution rate determination of artemisinin from the agglomerates showed that in 10 min about 70% of drug was released from the agglomerates, whereas less than 10% of artemisinin was dissolved from raw material powder. Oral administration of agglomerates in rats yielded higher artemisinin plasma levels compared to those of pure drug. In the case of the agglomerated powder, a 3.2-fold increase in drug fraction absorbed was obtained.
机译:青蒿素是一种水溶性差的抗疟药,口服后生物利用度低且不稳定。这项工作的目的是研究一种基于青蒿素/β-环糊精初级微粒的口服青蒿素的附聚粉末剂型。这些初级微粒是通过喷雾干燥青蒿素/β-环糊精的水-甲醇溶液而制备的。喷雾干燥的微粒中的β-环糊精使青蒿素在水中的表观溶解度增加了大约六倍。热分析表明,由于药物结晶度降低,与药物熔化相关的焓值降低。粉末X射线衍射分析也证明了后者,而 13 C-NMR分析表明它与β-环糊精有部分络合。与非流动性微粒粉末相比,通过喷雾干燥青蒿素/β-环糊精初级微粒的筛子振动获得的附聚物表现出自由流动和紧密堆积的特性。附聚物中青蒿素的体外溶出度测定表明,在10分钟内约有70%的药物从附聚物中释放出来,而不到10%的青蒿素从原料粉末中溶解出来。与纯药物相比,在大鼠中口服给予附聚物可产生更高的青蒿素血浆水平。在附聚粉末的情况下,吸收的药物分数增加了3.2倍。

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