首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Preparation and solid-state characterization of ball milled saquinavir mesylate for solubility enhancement
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Preparation and solid-state characterization of ball milled saquinavir mesylate for solubility enhancement

机译:球磨甲磺酸沙奎那韦的制备及固相表征

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Saquinavir is an anti-retroviral drug with very low oral bioavailability (e.g. 0.7-4.0%) due to its affinity toward efflux transporters (P-gp) and metabolic enzymes (CYP3A4). The aim of this study was to characterize the effects of high-energy ball milling on saquinavir solid-state characteristics and aqueous solubility for the design of effective buccal drug delivery systems. The solubility of saquinavir mesylate was evaluated in simulated saliva before and after milling for 1, 3, 15, 30, 50, and 60 h. To elucidate changes in crystallinity and long-range structure in the drug, analyses of the milled powders were performed using XRD, ATR-IR, DSC/TGA, BET surface area, EDX and SEM. In addition, the effects of milling time on saquinavir solubility were statistically correlated using repeated measures ANOVA. Results of this study indicate that the milling of saquinavir mesylate produces nanoporous particles with unique surface structures, thermal properties, and increased aqueous solubility. Optimal milling time occurred at 3 h and corresponded to a 9-fold solubility enhancement in simulated saliva. Thermal analysis revealed only a slight decrease in melting point (T m) from 242 °C to 236 °C after 60 h milling. XRD diffractograms indicate a gradual crystalline-to- amorphous transition with some residual crystallinity remaining after 60 h milling time. Unstable polymorphic structures appeared between 15 and 30 h which were converted to more stable isomorphs at 60 h. Aggregate formation also seems to occur after 15 h but no metal contamination of the drug was observed during the milling process as determined by EDX analysis. In conclusion, high-energy ball milling may be a method of choice for improving the solubility of saquinavir and facilitating novel drug formulations design.
机译:沙奎那韦是一种抗逆转录病毒药物,由于其对外排转运蛋白(P-gp)和代谢酶(CYP3A4)的亲和力,口服生物利用度非常低(例如0.7-4.0%)。这项研究的目的是表征高能球磨对沙奎那韦固态特性和水溶性的影响,以设计有效的口腔药物递送系统。在研磨1、3、15、30、50和60 h之前和之后,在模拟的唾液中评估了甲磺酸沙奎那韦的溶解度。为了阐明药物的结晶度和远距离结构的变化,使用XRD,ATR-IR,DSC / TGA,BET表面积,EDX和SEM对粉末进行了分析。另外,使用重复测量方差分析,研磨时间对沙奎那韦溶解度的影响在统计上相关。这项研究的结果表明,对沙奎那韦甲磺酸盐的研磨产生具有独特表面结构,热性质和增加的水溶性的纳米多孔颗粒。最佳研磨时间发生在3小时,相当于在模拟唾液中溶解度提高了9倍。热分析显示,研磨60小时后,熔点(T m)从242°C降至236°C仅有轻微降低。 XRD衍射图表明,在60小时的研磨时间后,晶体逐渐向非晶态过渡,并保留了一些残余结晶度。在15至30小时之间出现不稳定的多态结构,在60小时时将其转变为更稳定的同晶型。 15小时后似乎也发生了聚集物形成,但通过EDX分析确定,在研磨过程中未观察到药物的金属污染。总之,高能球磨可能是提高沙奎那韦溶解度并促进新型药物配方设计的一种选择方法。

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