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Two-Photon Excitation and Confocal Microscopy Investigation of Nanostructured Polyelectrolyte Shells

机译:纳米结构聚电解质壳的双光子激发和共聚焦显微镜研究

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Two photon excitation (TPE) and confocal laser scanning microscopy (CLSM) allow obtaining structural and functional information at sub-micron resolution of three-dimensional specimens. We are interested in the relationship between the architectural motifs and functional properties of organized assemblies of nanostructured polyelectrolyte shells. Stepwise adsorption of oppositely charged polyelectrolytes onto micrometer sized organic and inorganic cores followed by core dissolution results in the formation of hollow polyelectrolyte shells, named nanocapsules. Nanocapsules can be used as protected environments for guest molecules allowing controlled release or entrance of substances. They are of both biological and medical interest since can be used for the controlled release and targeting of drugs as well as for the protection of enzymes and proteins. The structure and the permeability properties of the shells in hydrated state were investigated by a TPE architecture based on a compact CLSM, Nikon PCM2000, in which the ability to operate as a standard CLSM was preserved. Imaging was also probed by scanning force microscopy measurements on dried shells. We also plan to check other strategies for core removal and to perform confined experiments into the nanocaspules, including photopatterning and photobleaching ones.
机译:两个光子激发(TPE)和共聚焦激光扫描显微镜(CLSM)允许以三维样品的亚微米分辨率获得结构和功能信息。我们对纳米结构聚电解质壳的有组织的组装的结构图案和功能特性之间的关系感兴趣。将带相反电荷的聚电解质逐步吸附到微米尺寸的有机和无机核上,然后进行核溶解,导致形成中空的聚电解质壳,称为纳米胶囊。纳米胶囊可用作客体分子的受保护环境,允许物质的受控释放或进入。它们具有生物学和医学意义,因为它们可用于药物的控制释放和靶向以及酶和蛋白质的保护。通过基于紧凑型CLSM的尼康PCM2000的TPE体系结构研究了水合状态下壳的结构和渗透性,该结构保留了用作标准CLSM的能力。还通过在干燥的壳上进行扫描力显微镜测量来探测成像。我们还计划检查其他去除芯的策略,并对纳米粒子进行有限的实验,包括光图案化和光漂白。

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