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Scaling up nano-milling of poorly water soluble compounds using a rotation/revolution pulverizer

机译:使用旋转/旋转粉碎机扩大水溶性差的化合物的纳米研磨

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We previously reported that a rotation/revolution pulverizer (NP-100) could mill a small amount of a drug (0.1 g) into nanoparticles in several minutes. In this investigation, scale up from the milligram to the kilogram scale of the nano-milling process by the rotation/revolution pulverizer was studied. Phenytoin was used as a model drug with low solubility in water. After confirming the improvement of the phenytoin bioavailability by milling to nanoparticles using NP-100, scaling parameters were evaluated using NP-100 and the middle scale model of NP-100 (ARV-3000T). A theoretical equation for the specific collisional energy was adapted for wet milling; this suggested that the relative centrifugal acceleration of revolution (revolution G) and the drug concentration in the suspension were the two most important parameters. The results obtained using NP-100 and ARV-3000T correlated well when these two parameters were identical. These results were applied to the large scale model of NP-100 (ARV-10KT), where 2 kg (1 kgx2) of phenytoin nanoparticles were obtained in 60 min. The results from PXRD and DSC indicated that the milled phenytoin by ARV-3000T and ARV-10KT maintained its crystallinity. These results suggest nano-milling using a rotation/revolution pulverizer will be widely applicable to the development of nano-medicine.
机译:我们之前曾报道过旋转/旋转粉碎机(NP-100)可以在几分钟内将少量药物(0.1 g)研磨成纳米颗粒。在这项研究中,研究了通过旋转/旋转粉碎机将纳米研磨过程的毫克级放大到公斤级。苯妥英钠用作模型药物,在水中的溶解度低。在通过使用NP-100研磨成纳米颗粒确认苯妥英生物利用​​度得到改善后,使用NP-100和NP-100的中比例模型(ARV-3000T)评估了比例缩放参数。将比碰撞能量的理论方程式用于湿磨。这表明旋转的相对离心加速度(旋转G)和悬浮液中的药物浓度是两个最重要的参数。当这两个参数相同时,使用NP-100和ARV-3000T获得的结果具有很好的相关性。这些结果应用于NP-100(ARV-10KT)的大规模模型,其中在60分钟内获得了2 kg(1 kgx2)的苯妥英钠纳米颗粒。 PXRD和DSC的结果表明ARV-3000T和ARV-10KT研磨的苯妥英钠保持其结晶度。这些结果表明,使用旋转/旋转粉碎机进行纳米研磨将广泛应用于纳米药物的开发。

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