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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Photosan-Ⅱ loaded hollow silica nanoparticles: Preparation and its effect in killing for QBC939 cells
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Photosan-Ⅱ loaded hollow silica nanoparticles: Preparation and its effect in killing for QBC939 cells

机译:载有Photosan-Ⅱ的空心二氧化硅纳米粒子:制备及其对QBC939细胞的杀伤作用

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Background: Nanoparticles have been explored recently as an efficient means to deliver photo-sensitizers for photodynamic therapy. However, it is largely unknown if polyhematoporphyrin (C_(34)H_(38)N_4NaO_5, Photosan-Ⅱ, PS) or other photosensitizers can be efficiently delivered by hollow silica nanoparticles (HSNP). Methods: Polyhematoporphyrin (C_(34)H_(37)N_4NaO_5, Photosan-Ⅱ, PS) was loaded into hollow silica nanoparticles (HSNP) by one-step wet chemical-based synthetic route. Dynamic light scattering (DLS) and polydispersive index (PDI) were used for measurement of the particles size and size distribution. Transmission electron microscope and scanning electron microscopy were used for the microstructure, morphological and chemical composition analysis. Fourier transform infrared spectrometry spectra and fluorescence emission spectrum were obtained. The photo-biological activity of the PS-loaded HSNP was evaluated on human cholangiocarcinoma QBC939 cells. The cellular viability was determined by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetra-zolium bromide (MTT) assay. Apoptotic and necrotic cells were measured by flow cytometry. Results: DLS measurements showed that the size of the particles is in the range of 25-90 nm. PDI of the PS-loaded HSNP is 0.121 ±0.01, indicating that samples have excellent quality with narrow size distribution to monomodal systems. In MTT assay, PS-loaded HSNP and free PS of the same concentration killed about 95.3% ±2.0% and 55.7%±1.9% of QBC939 cells, respectively. The flow cytometry demonstrated that the laser induced cell death with PS-loaded HSNP was much more severe than that of free PS (P< 0.05). Conclusions: Photosan-Ⅱ-loaded hollow silica nanoparticles not only can quickly deliver Photosan-Ⅱ into cells but also can reach a more high concentration than free Photosan-Ⅱ. HSNP is a desirable vehicle and the release system that shows promises for photodynamic therapy use, which not only improve the aqueous solubility, stability and transport efficiency of PS, but also increase its photodynamic efficacy compared to free PS.
机译:背景:近年来,人们已经探索了纳米颗粒作为递送光敏剂用于光动力疗法的有效手段。然而,很大程度上未知的是中空二氧化硅纳米粒子(HSNP)能否有效地传递聚血卟啉(C_(34)H_(38)N_4NaO_5,Photosan-Ⅱ,PS)或其他光敏剂。方法:通过一步法湿化学合成法将聚杂卟啉(C_(34)H_(37)N_4NaO_5,Photosan-Ⅱ,PS)装入空心二氧化硅纳米粒子(HSNP)中。动态光散射(DLS)和多分散指数(PDI)用于测量颗粒尺寸和尺寸分布。透射电子显微镜和扫描电子显微镜用于组织,形态和化学成分分析。获得了傅立叶变换红外光谱和荧光发射光谱。评估了载有PS的HSNP对人胆管癌QBC939细胞的光生物学活性。通过3-(4,5-二甲基噻唑-2-基)-2,5-二苯基溴化四唑(MTT)测定法确定细胞活力。通过流式细胞术测量凋亡和坏死细胞。结果:DLS测量显示颗粒大小在25-90 nm之间。载有PS的HSNP的PDI为0.121±0.01,表明样品具有优异的质量,并且在单峰系统中的粒径分布较窄。在MTT测定中,相同浓度的PS负载的HSNP和游离PS分别杀死QBC939细胞的约95.3%±2.0%和55.7%±1.9%。流式细胞仪表明,PS加载的HSNP激光诱导的细胞死亡比游离PS严重得多(P <0.05)。结论:装载有光SAN-Ⅱ的空心二氧化硅纳米颗粒不仅可以将光SAN-Ⅱ快速递送到细胞中,而且可以达到比游离光SAN-Ⅱ更高的浓度。 HSNP是一种理想的载体和释放系统,显示了光动力疗法的应用前景,与游离PS相比,它不仅改善了PS的水溶性,稳定性和运输效率,而且还提高了其光动力功效。

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