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Multifunctional polyelectrolyte microcapsules as a contrast agent for photoacoustic imaging in blood

机译:多功能聚电解质微胶囊作为血液中光声成像的造影剂

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The polyelectrolyte microcapsules that can be accurate either visualized in biological media or in tissue would enhance their further in vivo application both as a carrier of active payloads and as a specific sensor. The immobilization of active species, for instance fluorescent dyes, quantum dots, metal nanoparticles, in polymeric shell enables visualization of capsules by optical imaging techniques in aqueous solution. However, for visualization of capsules in complex media an instrument with high contrast modality requires. Herein, we show for the first time photoacoustic imaging (PAI) of multifunctional microcapsules in water and in blood. The microcapsules exhibit greater photoacoustic intensity compare to microparticles with the same composition of polymeric shell presumably their higher thermal expansion. Photoacoustic intensity form microcapsules dispersed in blood displays an enhancement (2-fold) of signal compare to blood. Photoacoustic imaging of microcapsules might contribute to non-invasive carrier visualization and further their in vivo distribution.
机译:既可以在生物介质中也可以在组织中可视化的聚电解质微胶囊,既可以作为有效负载的载体,又可以作为特定的传感器,从而增强了它们在体内的进一步应用。将活性物质例如荧光染料,量子点,金属纳米颗粒固定在聚合物壳中使得能够通过水溶液中的光学成像技术使胶囊可视化。然而,为了使胶囊在复杂介质中可视化,需要具有高对比度模态的仪器。本文中,我们首次显示了多功能微胶囊在水和血液中的光声成像(PAI)。与具有相同聚合物壳组成的微粒相比,微囊表现出更大的光声强度,推测其具有更高的热膨胀性。与血液相比,分散在血液中的微胶囊的光声强度显示出增强的信号(2倍)。微胶囊的光声成像可能有助于无创载体的可视化,并进一步促进其在体内的分布。

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