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首页> 外文期刊>Drug development and industrial pharmacy >Spray drying of drug-swellable dispersant suspensions for preparation of fast-dissolving, high drug-loaded, surfactant-free nanocomposites
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Spray drying of drug-swellable dispersant suspensions for preparation of fast-dissolving, high drug-loaded, surfactant-free nanocomposites

机译:药物可溶胀的分散剂悬浮液的喷雾干燥,用于制备快速溶解,高载药量,无表面活性剂的纳米复合材料

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摘要

Bioavailability of a poorly soluble drug can be improved by preparing a drug nanosuspension and subsequently drying it into nanocomposite microparticles (NCMPs). Unfortunately, drug nanoparticles aggregate during milling and drying, causing incomplete recovery and slow dissolution. The aim of this study is to investigate the impact of various classes of dispersants on drug dissolution from drug NCMPs, with the ultimate goal of enhancing the bioavailability of poorly water-soluble drugs via high drug nanoparticle loaded, surfactant-free NCMPs. Precursor suspensions of griseofulvin (GF, model drug) nanoparticles in the presence of various dispersants were prepared via wet stirred media milling and spray dried to form the NCMPs. Hydroxypropyl cellulose (HPC, polymer) alone and with sodium dodecyl sulfate (SDS, surfactant) was used as a base-line stabilizer/dispersant during milling. Two swellable crosslinked polymers, croscarmellose sodium (CCS) and sodium starch glycolate (SSG), and a conventional soluble matrix former, Mannitol, were used in addition to HPC. Besides being used as-received, CCS was also wet co-milled with GF for two different durations to examine the impact of CCS particle size. Laser diffraction, scanning electron microscopy, powder X-ray diffraction (XRD), UV spectroscopy, NCMP redispersion and dissolution tests were used for characterization. The results show that incorporation of CCS/SSG, preferably wet-milled to a wide particle size distribution, into the spray-dried NCMPs resulted in fast release and dispersion of drug nanoparticle clusters. The swellable dispersants were superior to Mannitol in dissolution enhancement, and could achieve fast release comparable to SDS, demonstrating the feasibility of spray drying to prepare high drug-loaded, surfactant-free nanocomposites.
机译:通过制备药物纳米混悬剂,然后将其干燥成纳米复合微粒(NCMP),可以改善难溶性药物的生物利用度。不幸的是,药物纳米颗粒在研磨和干燥过程中会聚集,导致回收不完全和溶解缓慢。这项研究的目的是研究各种分散剂对药物NCMP中药物溶解的影响,其最终目标是通过负载大量药物纳米颗粒,不含表面活性剂的NCMP来提高水溶性差的药物的生物利用度。灰黄霉素(GF,模型药物)纳米颗粒在各种分散剂存在下的前体悬浮液是通过湿式搅拌介质研磨制备的,并喷雾干燥以形成NCMP。在研磨过程中,单独使用羟丙基纤维素(HPC,聚合物)和十二烷基硫酸钠(SDS,表面活性剂)作为基线稳定剂/分散剂。除HPC外,还使用了两种可溶胀的交联聚合物,交联羧甲基纤维素钠(CCS)和淀粉羟乙酸钠(SSG),以及常规的可溶性基质形成剂,甘露醇。除了按原样使用外,CCS还与GF湿磨共两个不同的时间,以检查CCS粒度的影响。表征使用了激光衍射,扫描电子显微镜,粉末X射线衍射(XRD),UV光谱,NCMP再分散和溶解测试。结果表明,将CCS / SSG(优选湿磨至宽粒度分布)掺入喷雾干燥的NCMP中会导致药物纳米颗粒簇的快速释放和分散。可溶胀的分散剂在溶解增强方面优于甘露醇,可实现与SDS相当的快速释放,证明了喷雾干燥制备高载药量,无表面活性剂的纳米复合材料的可行性。

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