盐酸鲁拉西酮纳米晶快速崩解片的设计、优化及评价

Satyanarayan Sahoo, C. B. Rao
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引用次数: 0

摘要

配制用于口服给药的低水溶性药物一直是配方科学家面临的一个难题。盐酸鲁拉西酮就是其中一种用于控制双相抑郁症的药物。本研究的目的是制备和优化鲁拉西纳米混悬液,进一步优化纳米混悬液作为快速崩解片的配方,以提高患者的依从性。本研究采用纳米研磨法制备鲁拉西酮纳米混悬液。优化后的纳米悬浮液平均粒径为248.9 nm,多分散性指数为0.127,zeta电位为18.1 mV。将冻干后的优化纳米晶体、优化纳米悬浮液分别作为造粒液和流化床造粒的顶部喷雾分散液,配以合适的超级崩解剂,制备快速崩解片。与乙醇酸淀粉钠和交叉聚维酮相比,交叉聚维酮钠是最好的超崩解剂,它具有溶胀和吸干两种机制。它在不到10秒的时间内膨胀4-8倍。与微粉鲁拉西酮和上市产品相比,药物释放率增加了许多倍。经XRD和FTIR表征,纳米研磨后晶体性质没有变化,化学性质稳定,药物含量高。开发的快速崩解片将是一种比传统制剂更好的替代制剂,以解决其生物利用度问题并提高患者的依从性。然而,这需要通过适当的体内研究进一步证实。
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Design, Optimization and Evaluation of Lurasidone Hydrochloride Nanocrystals as Fast Disintegrating Tablets
Formulation of poorly water-soluble drugs for oral drug delivery has always been a difficult task for formulation scientists. Lurasidone hydrochloride is one such agent which is used to control bipolar depre-ssion. The objective of this study was to formulate and optimize lurasi-done nanosuspension, further formulating optimized nanosuspensions as fast disintegrating tablets for improved patient compliance. In the present study, lurasidone nanosuspension was prepared by nanomilling technique. Optimized nanosuspension has mean particle diameter of 248.9 nm, polydispersity index of 0.127 and zeta potential of 18.1 mV. The lyophilized optimized nanocrystals, optimize nanosuspension as granulating fluid and as top spraying dispersion for granulation in fluid bed granulator being used to formulate fast disintegrating tablets with suitable super disintegrant. Croscarmellose sodium was found to be best superdisintegrant compared to sodium starch glycolate and crospovidone, as its acts by both mechanism swelling and wicking. Its swells 4-8 folds in less than 10 s. Many folds increase in the rate of drug release observed compare to micronized lurasidone and marketed product. There was no change in crystalline nature after nanomilling as characterized by XRD and FTIR, and it was found to be chemically stable with high drug content. The developed fast disintegrating tablets would be an alternative better formulation than its conventional formulation to address its bioavailability issue and for improved patient compliance. However, this should be further confirmed by appropriate in vivo studies.
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