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Fast Drug Release Using Rotational Motion of Magnetic Gel Beads

机译:利用磁性凝胶珠的旋转运动快速释放药物

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Accelerated drug release has been achieved by means of the fast rotation of magnetic gel beads. The magnetic gel bead consists of sodium alginate crosslinked by calcium chlorides, which contains barium ferrite of ferrimagnetic particles, and ketoprofen as a drug. The bead underwent rotational motion in response to rotational magnetic fields. In the case of bead without rotation, the amount of drug release into a phosphate buffer solution obeyed non-Fickian diffusion. The spontaneous drug release reached a saturation value of 0.90 mg at 25 minutes, which corresponds to 92% of the perfect release. The drug release was accelerated with increasing the rotation speed. The shortest time achieving the perfect release was approximately 3 minutes, which corresponds to 1/8 of the case without rotation. Simultaneous with the fast release, the bead collapsed probably due to the strong water flow surrounding the bead. The beads with high elasticity were hard to collapse and the fast release was not observed. Hence, the fast release of ketoprofen is triggered by the collapse of beads. Photographs of the collapse of beads, time profiles of the drug release, and a pulsatile release modulated by magnetic fields were presented.
机译:借助于磁性凝胶珠的快速旋转已经实现了加速的药物释放。磁性凝胶珠由通过氯化钙交联的海藻酸钠(其中包含亚铁磁性颗粒的钡铁氧体和酮洛芬)组成。胎圈响应于旋转磁场而经历旋转运动。在珠子不旋转的情况下,释放到磷酸盐缓冲溶液中的药物量遵循非菲克式扩散。自发释放的药物在25分钟时达到0.90μmg的饱和值,相当于完美释放的92%。随着旋转速度的增加,药物释放被加速。实现完美释放的最短时间约为3分钟,相当于不旋转情况下的1/8。与快速释放同时,珠子可能由于珠子周围强大的水流而倒塌。具有高弹性的珠粒难以塌陷并且没有观察到快速释放。因此,酮洛芬的快速释放是由珠子的崩溃触发的。呈现了珠子塌陷的照片,药物释放的时间曲线以及受磁场调制的脉冲释放。

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