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Localization of magnetic pills

机译:磁性药丸的定位

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摘要

Numerous therapeutics demonstrate optimal absorption or activity at specific sites in the gastrointestinal (GI) tract. Yet, safe, effective pill retention within a desired region of the Gl remains an elusive goal. We report a safe, effective method for localizing magnetic pills. To ensure safety and efficacy, we monitor and regulate attractive forces between a magnetic pill and an external magnet, while visualizing internal dose motion in real time using biplanar video-fluoroscopy. Real-time monitoring yields direct visual confirmation of localization completely noninvasively, providing a platform for investigating the therapeutic benefits imparted by localized oral delivery of new and existing drugs. Additionally, we report the in vitro measurements and calculations that enabled prediction of successful magnetic localization in the rat small intestines for 12 h. The designed system for predicting and achieving successful magnetic localization can readily be applied to any area of the GI tract within any species, including humans. The described system represents a significant step forward in the ability to localize magnetic pills safely and effectively anywhere within the GI tract. What our magnetic pill localization strategy adds to the state of the art, if used as an oral drug delivery system, is the ability to monitor the force exerted by the pill on the tissue and to locate the magnetic pill within the test subject all in real time. This advance ensures both safety and efficacy of magnetic localization during the potential oral administration of any magnetic pill-based delivery system.
机译:许多疗法在胃肠道(GI)的特定部位均表现出最佳的吸收或活性。然而,将安全,有效的药丸保留在G1的期望区域内仍然是难以实现的目标。我们报告了一种安全有效的方法来定位磁性药丸。为确保安全性和有效性,我们监控并调节磁性药丸和外部磁体之间的吸引力,同时使用双平面视频荧光透视术实时可视化内部剂量运动。实时监测可完全无创地直接视觉确认定位,从而为研究新药和现有药物的局部口服给药所带来的治疗益处提供了一个平台。此外,我们报告了体外的测量和计算,能够预测大鼠小肠中成功磁定位12 h。用于预测和实现成功的磁定位的设计系统可以很容易地应用于包括人类在内的任何物种的胃肠道的任何区域。所描述的系统代表了在胃肠道内任何地方安全有效地定位磁性药丸的能力的重大进步。如果用作口服药物输送系统,我们的磁性药丸定位策略将增加现有技术的水平,即能够实时监测药丸对组织施加的力并将磁药丸真正定位在测试对象中的能力时间。这一进步确保了任何基于磁性药丸的给药系统的潜在口服给药过程中磁性定位的安全性和有效性。

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