首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >On the interaction between up-converting NaYF4:Er3+,Yb3+ nanoparticles and Rose Bengal molecules constrained within the double core of multifunctional nanocarriers
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On the interaction between up-converting NaYF4:Er3+,Yb3+ nanoparticles and Rose Bengal molecules constrained within the double core of multifunctional nanocarriers

机译:关于上转换NayF4:ER3 +,YB3 +纳米颗粒和玫瑰孟加拉分子之间的相互作用受到多功能纳米载体的双核的约束

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摘要

The designed interaction between up-converting nanoparticles and photosensitizers allows for near infrared triggered photodynamic therapy. Depending on their optical properties and spatial arrangement the light energy harvested by the nanoparticles can be transferred to the neighbor photosensitizer molecules via static- or dynamic-type interactions. To study the possibility of photodynamic effect enhancement in such a hybrid system we have engineered polymeric nanocapsules with a structured double compartment core feasible for constraining hydrophobic up-converting NaYF4:Er3+,Yb3+ nanoparticles and hydrophilic Rose Bengal molecules. Due to the chosen encapsulation method there was no necessity for surface functionalization of nanoparticles nor any chemical modification of photosensitizers, thus both of the chromophores exhibited unchanged optical properties. We have obtained a series of nanocarrier samples having a constant amount of up-converting nanoparticles and an increasing amount of Rose Bengal molecules for detailed spectroscopic (up-conversion emission spectra and kinetics) and theoretical (density functional theory based calculations) studies on their mutual interaction. The obtained results show the possibility of both up-conversion emission enhancement in the presence of Rose Bengal molecules, and static-type energy transfer from nanoparticles to photosensitizers. The applicability of the obtained nanocapsules in photodynamic based cancer treatments was further evaluated based on the reactive oxygen species, including singlet oxygen, generation upon near infrared excitation. Additionally, the other surface of the nanocontainers was functionalized with PEG-ylated hyaluronic acid to assure the "stealth" effect and selective accumulation in cancer cells.
机译:上转换纳米粒子和光敏剂之间的设计相互作用允许近红外触发的光动力疗法。取决于它们的光学性质和空间布置,通过静态或动态型相互作用可以将由纳米颗粒收获的光能量通过静态或动态型相互作用转移到邻居的光敏剂分子上。为了研究这种混合系统中光动力学效应增强的可能性,我们具有具有结构化双隔室核心的工程化的聚合物纳米胶囊,可用于约束疏水性上转换NayF4:ER3 +,YB3 +纳米颗粒和亲水升升孟加拉分子。由于所选择的封装方法,纳米颗粒的表面官能化也不需要光敏剂的任何化学改性,因此两种发色团都表现出不变的光学性质。我们已经获得了一系列纳米载体样品,其具有恒定量的上升纳米颗粒和升高量的玫瑰孟加拉分子,用于详细的光谱(上转化发射光谱和动力学)和理论(密度函数理论基于基于计算)的相互研究相互作用。所得结果表明,在玫瑰孟加拉分子的存在下,从载升孟加拉分子的存在和从纳米颗粒到光敏剂的静态能量转移的可能性。基于反应性氧物种,在近红外激发近的激发时,进一步评估所得纳米胶囊在光动力学的癌症处理中的适用性。另外,纳米容器的另一表面用PEG-ylated透明质酸官能化,以确保“隐形”效应和癌细胞中的选择性积累。

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