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Low-Field Nuclear Magnetic Resonance Relaxometry - A Tool in Monitoring the Melting Transition of Polymeric Capsules with Applications in Drug Delivery

机译:低场核磁共振弛豫法-监测聚合物胶囊熔融转变及其在药物输送中的应用的工具

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Polymeric micro and nanocapsules are often used as drug delivery systems. Their main advantage is that the active substances can be placed inside the capsule and released at the position of the diseased tissue or organ. The release can be performed gradually, owing to a continuous exchange process, eventually influenced by temperature, or suddenly as a consequence of melting the capsule wall. In the last case the determination of the melting transition tempera ture of the fabricated capsules is an important issue. In the present contribution we are showing that low field nuclear magnetic resonance (NMR) relaxometry can be used as a valu able tool in monitoring the melting transition of polymeric capsules prepared by an interfacial polymerization technique. The NMR relaxation experiments were performed at a proton resonance frequency of 20 MHz. The data were analyzed using a numerical Laplace inversion algorithm that allowed us the determination of the melting point for the fabricated capsules.
机译:聚合物微胶囊和纳米胶囊通常用作药物输送系统。它们的主要优点是可以将活性物质置于胶囊内,并在患病组织或器官的位置释放。由于连续的交换过程,释放可以逐渐进行,最终受温度影响,或者由于胶囊壁熔化而突然释放。在最后一种情况下,确定制成的胶囊的熔融转变温度是重要的问题。在目前的贡献中,我们表明低场核磁共振弛豫法可以用作监测通过界面聚合技术制备的聚合物胶囊的熔融转变的有价值的工具。 NMR弛豫实验是在20 MHz的质子共振频率下进行的。使用数值拉普拉斯反演算法分析数据,该算法可让我们确定所制成胶囊的熔点。

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