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Measurement of Enhanced Photothermal Effects of CuO-encapsulated Polymeric Nanospheres

机译:Cuo包封聚合物纳米球增强光热效应的测量

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Copper oxide nanoparticles (CuO-NPs) have the potential of serving as an anticancer theranostic agent with photothermal capabilities. In order to control their toxicity and release, the CuO NPs were encapsulated within polymeric nanospheres composed of poly(lactic-co-glycolic acid) (PLGA) core and polydopamine (PDA)/polyethylene glycol (PEG) shell. After the characterization of synthesized nanospheres, their photothermal response to different near-infrared laser sources (808 nm, 940 nm and 1064 nm) was assessed in terms of the measured temperature. Arrays of sub-millimetric fiber Bragg grating sensors were employed to achieve an optimal spatial resolution for resolving the temperature increase in samples embedding the nanospheres. The results have shown that the designed structure of CuO@PLGA/PDA/PEG nanospheres substantially augments the temperature elevation. A maximum of 30 °C temperature increase, in comparison with the control solution, was achieved for the 808 nm laser source. These results indicate that the designed structure of CuO@PLGA/PDA/PEG nanospheres is suitable for further applications towards chemo-photothermal therapy combined with diagnostic imaging for the treatment of cancer.
机译:氧化铜纳米颗粒(CuO-NPS)具有用作具有光热能力的抗癌治疗剂的可能性。为了控制其毒性和释放,CuO NPS被包封在由聚(乳酸二乙醇酸)(PLGA)核和聚德多样(PDA)/聚乙二醇(PEG)壳组成的聚合物纳米球内。在合成纳米球的表征之后,在测量温度下评估它们对不同近红外激光源(808nm,940nm和1064nm)的光热响应。采用亚毫米光纤布拉格光栅传感器的阵列来实现最佳的空间分辨率,以解决嵌入纳米球的样品中的温度增加。结果表明,CuO @ PLGA / PDA / PEG纳米体的设计结构显着增加了温度升高。与对照溶液相比,最多30°C温度升高,对于808nm激光源。这些结果表明CuO / PDA / PEG纳米球的设计结构适用于进一步应用化学光热疗法与治疗癌症的诊断成像相结合。

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