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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Photophysical properties and photodynamic therapy activities of detonated nanodiamonds-BODIPY-phthalocyanines nanoassemblies
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Photophysical properties and photodynamic therapy activities of detonated nanodiamonds-BODIPY-phthalocyanines nanoassemblies

机译:引爆纳米金刚石-BODIPY-酞菁纳米组件的光物理性质和光动力治疗活性

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摘要

This work reports on the synthesis of nanoassemblies of supramolecular hybrids containing detonated nano-diamonds (DNDs) covalently linked to halogenated BODIPY (DNDs-BODIPY) by an amide bond, followed by pi-pi, stacking of 2,9,16,23-tetrakis [4-(N-methylpyridyloxy)]-phthalocyanine (ZnTPPcQ) on the DNDs-BODIPY conjugate, to form nanoassembly represented as ZnTPPcQ-DNDs-BODIPY. ZnTPPcQ-DNDs-BODIPY has a higher singlet oxygen quantum yield of 0.50 in water. Therefore, the construction of a three component photodynamic therapy agent (ZnTPPcQ-DNDs-BODIPY) as a single photosentisiser improved singlet quantum yields of the Pc. Zeta potential studies of ZnTPPcQ-DNDs-BODIPY under various temperatures, concentrations and pH conditions, showed the conjugate is more stable at pHs 2, 4 and 7 and at high concentrations (50 mu g/mL) and temperatures (80 degrees C). ZnTPPcQ-DNDs-BODIPY showed high photodynamic therapy (PDT) activity with a low MCF-7 cell viability of 21 +/- 5% when compared to 31 +/- 2%, 30 +/- 2% and 28 +/- 2% cell viability at the highest tested concentration of 50 mu g/mL for DNDs, ZnTPPcQ-DND and DNDs-BODIPY, respectively.
机译:这项工作报告了超分子杂化体的纳米组装体的合成,该超分子杂种体包含通过酰胺键与卤代BODIPY(DNDs-BODIPY)共价连接的引爆纳米金刚石(DND),然后进行pi-pi,堆叠2,9,16,23- DNDs-BODIPY共轭物上的四[4-(N-甲基吡啶氧基)]-酞菁(ZnTPPcQ),形成表示为ZnTPPcQ-DNDs-BODIPY的纳米组件。 ZnTPPcQ-DNDs-BODIPY在水中的单重态氧量子产率更高,为0.50。因此,将三组分光动力治疗剂(ZnTPPcQ-DNDs-BODIPY)构造为单一光敏剂可提高Pc的单重态量子产率。 ZnTPPcQ-DNDs-BODIPY在各种温度,浓度和pH条件下的Zeta电位研究表明,该缀合物在pHs 2、4和7以及高浓度(50μg / mL)和温度(80摄氏度)下更稳定。与31 +/- 2%,30 +/- 2%和28 +/- 2相比,ZnTPPcQ-DNDs-BODIPY显示高光动力疗法(PDT)活性,而MCF-7细胞活力低至21 +/- 5%。 DND,ZnTPPcQ-DND和DNDs-BODIPY的最高测试浓度分别为50μg / mL时的细胞活力百分比。

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