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首页> 外文期刊>Journal of magnetism and magnetic materials >Temperature controlled camptothecin release from biodegradable magnetic PLGA microspheres
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Temperature controlled camptothecin release from biodegradable magnetic PLGA microspheres

机译:温控喜树碱从可生物降解的磁性PLGA微球中释放

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摘要

Drug loaded magnetic microspheres (MMS) can be magnetically guided to a target area within the body, where the pharmaceutical agent is released passively. For a faster release, the microspheres have to be disintegrated actively, e.g., by an increase of the temperature of the MMS. In the here presented study, poly(lactic-co-glycolic) acid (PLGA) microspheres were prepared. Magnetic nanoparticles with high magnetic heating performance and the drug camptothecin were embedded into the PLGA matrix. Resulting microspheres were characterized by means of dynamic light scattering, scanning electron microscopy, magnetometry, magnetic calorimetry, and UV/Vis spectrophotometry for determination of the drug release as a function of time and temperature. The MMS diameter is about 1.5 mu m and the MMS show a content of magnetic material of up to 16 wt% and a drug loading of about 0.5 wt%. The MMS have a specific heating power of 161 W/g(MMS), which enables sufficient magnetic heating for enforced drug release from the MMS in tissue concentrations of 2% by mass. Depending on the applied temperatures and the used PLGA type, the loaded drug is released within hours to days and a temperature increase from 37 to 43 degrees C leads to a significant faster drug release. The principle of magnetically triggered drug release is demonstrated by magnetic hyperthermia induced release of a drug from the MMS.
机译:可以将载有药物的磁性微球(MMS)磁性引导至体内的目标区域,在此处药物可以被动释放。为了更快地释放,必须例如通过提高MMS的温度来使微球主动崩解。在本文介绍的研究中,制备了聚乳酸-乙醇酸(PLGA)微球。具有高磁性加热性能的磁性纳米颗粒和喜树碱药物被嵌入PLGA基质中。通过动态光散射,扫描电子显微镜,磁力法,磁热法和UV / Vis分光光度法对所得微球进行表征,以测定随时间和温度变化的药物释放。 MMS直径约为1.5微米,MMS的磁性材料含量高达16 wt%,药物载量约为0.5 wt%。 MMS的比热功率为161 W / g(MMS),可实现足够的磁力加热,以在2质量%的组织浓度下从MMS强制释放药物。根据所施加的温度和所用的PLGA类型,所装载的药物会在数小时至数天之内释放出来,并且温度从37摄氏度升高至43摄氏度会导致明显更快的药物释放。磁触发药物释放的原理由磁热诱导的MMS药物释放证明。

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