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Prussian blue nanosphere-embedded in situ hydrogel for photothermal therapy by peritumoral administration

机译:普鲁士蓝纳米球包埋的原位水凝胶用于肿瘤周围给药的光热疗法

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摘要

To establish an injectable hydrogel containing Prussian blue (PB) nanospheres for photothermal therapy against cancer, PB nanospheres were prepared by one-pot synthesis and the thermosensitive Pluronic F127 was used as the hydrogel matrix. The PB nanospheres and the hydrogel were characterized by shape, particle size, serum stability, photothermal performance upon repeated 808 nm laser irradiation, as well as the rheological features. The effect of the PB nanospheres and the hydrogel were evaluated qualitatively and quantitatively in 4T1 mouse breast cancer cells. The retention, photothermal efficacy, therapeutic effects and systemic toxicity of the hydrogel were assessed in a tumor-bearing mouse model. The PB nanospheres had a diameter of about 150 nm and exhibited satisfactory serum stability, photo-heat convert ability and repeated laser exposure stability. The hydrogel encapsulation did not negatively influence the above features of the photothermal agent. The nanosphere-containing hydrogel showed a phase transition at body temperature and, as a result, a long retention time in vivo. The photothermal agent-embedded hydrogel displayed promising photothermal therapeutic effects in the tumor-bearing mouse model with little-to-no systemic toxicity after peritumoral administration.
机译:为了建立用于光热疗法治疗癌症的含普鲁士蓝(PB)纳米球的可注射水凝胶,通过一锅法合成制备PB纳米球,并将热敏性Pluronic F127用作水凝胶基质。 PB纳米球和水凝胶的特征在于形状,粒径,血清稳定性,重复808 nm激光照射后的光热性能以及流变学特性。在4T1小鼠乳腺癌细胞中定性和定量地评估了PB纳米球和水凝胶的作用。在荷瘤小鼠模型中评估了水凝胶的保留,光热功效,治疗效果和全身毒性。 PB纳米球的直径约为150 nm,表现出令人满意的血清稳定性,光热转换能力和重复的激光曝光稳定性。水凝胶包封不会对光热剂的上述特征产生负面影响。含纳米球的水凝胶在人体温度下显示出相变,因此在体内的保留时间较长。包埋有光热剂的水凝胶在荷瘤小鼠模型中显示出有希望的光热治疗效果,在肿瘤周围给药后几乎没有系统毒性。

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