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A novel potential nanophototherapeutic based on the assembly of an amphiphilic cationic ß-cyclodextrin and an anionic porphyrin

机译:一种基于两亲性阳离子ß-环糊精和阴离子卟啉组装的新型潜在纳米光疗剂

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摘要

The development of cyclodextrin nanoassemblies as useful carriers for photosensitizer drugs (PS) delivery in biological environment is a topic of increasing interest. In this paper, we present a spectroscopic investigation on a nanosystem based on an amphiphilic cationic ß-cyclodextrin derivative (CD-N) and an anionic porphyrin (TPPS). Nanoassemblies were prepared by hydration of an organic film containing the two species. The system was characterized by complementary techniques such as UV-vis, stationary and time-resolved fluorescence, and Dynamic Light Scattering (DLS) at different TPPS/CD-N molar ratios. Time-resolved fluorescence data showed that, at all the investigated molar ratios, TPPS is present both as self-aggregated species and monomers forming supramolecular adducts with CD-N. Moreover, DLS measurements evidenced families of aggregates having hydrodynamic radii ranging between 50 and 350 nm and the size distribution profile depending on the TPPS/CD-N molar ratio. At the highest CD-N concentration, the hydrodynamic radii of the aggregates were nearly the same as those of neat CD-N in the absence of TPPS (50 nm). No aging phenomena were registered, pointing out the high stability of these nanoassemblies in aqueous solution for at least a month. Preliminary studies on the internalization in tumoral cells and subsequent irradiation for PDT application were carried out. The results support the feasibility of these nanoaggregates to promote PS internalization in HeLa cells, inducing cell death upon visible light irradiation. © 2017 World Scientific Publishing Company.
机译:作为在生物环境中光敏剂药物(PS)传递的有用载体的环糊精纳米组装件的开发是越来越引起人们关注的主题。在本文中,我们提出了基于两亲性阳离子β-环糊精衍生物(CD-N)和阴离子卟啉(TPPS)的纳米系统的光谱研究。通过水合含有两种物质的有机膜来制备纳米组件。该系统的特征在于互补技术,例如紫外可见光,固定和时间分辨的荧光以及在不同TPPS / CD-N摩尔比下的动态光散射(DLS)。时间分辨的荧光数据表明,在所有研究的摩尔比下,TPPS均以自聚集形式存在,并与CD-N形成超分子加合物。此外,DLS测量证明聚集体家族具有的流体力学半径在50到350 nm之间,并且其尺寸分布曲线取决于TPPS / CD-N摩尔比。在最高的CD-N浓度下,聚集体的流体力学半径几乎与在没有TPPS(50 nm)的情况下,纯净的CD-N的流体力学半径相同。没有发现老化现象,表明这些纳米组件在水溶液中至少一个月具有很高的稳定性。初步研究了肿瘤细胞的内在化和随后的PDT照射。结果支持了这些纳米聚集体在HeLa细胞中促进PS内在化,在可见光照射下诱导细胞死亡的可行性。 ©2017世界科学出版公司。

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