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The Effect of Colloidal Silica Nanoparticles Encapsulated Fluorescein Dye Using Micelle Entrapment Method

机译:胶体硅胶纳米粒子用胶束夹紧法封装荧光素染料的影响

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The advancement of nanoparticle-based approaches such as quantum dots (QDs), metallic (Au and Ag) NPs, silica NPs and other types of nanomaterial have led to a large variety of biomolecular imaging and labelling reagents with controlled size and shaped to overcome the limitation of conventional organic dye. In this study, the yellowish green color of fluorescein dye was encapsulated into colloidal silica nanoparticles by using micelle entrapment approach. Two different size of silica nanoparticles encapsulated fluorescein dye (27.7 ± 5.6 and 46.73 ± 4.3 nm) with spherical and monodispered of nanoparticles were synthesised by varying the volume of co-solvent during the synthesis process. The particles size, particles morphology, absorption spectrum and the photo stability of fluorescein dye was measured by using dynamic light scaterring (DLS), Transmission Electron Microscope (TEM) and UV-Vis spectrometer. Furthermore, the effect of photo stability of of silica nanoparticles encapsulated fluorescein dye was measured under radiation of 200 W of Halogen lamp for 60 minutes. The silica nanoparticles encapsulated fluorescein dye was more stable compared to bare fluorescein dye after the exposure. In conclusion, the photo stability of silica nanoparticles encapsulated fluorescein dye was improved compared to bare fluorescein dye, thus silica nanoparticles encapsulation successfully provides protection from the photobleaching and photodegradation of fluorescein dye.
机译:基于纳米粒子的方法,如量子点(QDS),金属(Au和Ag)NP,二氧化硅NP和其他类型的纳米材料的进步导致了各种各样的生物分子成像和具有控制尺寸的标记试剂,以克服克服常规有机染料的限制。在这项研究中,通过使用胶束夹紧方法将荧光素染料的黄绿色包封到胶体二氧化硅纳米粒子中。通过改变合成过程中的共溶剂的体积,合成两种不同尺寸的二氧化硅纳米粒子(27.7±5.6和46.73±4.73nm),通过改变共溶剂的体积来合成纳米颗粒。通过使用动态光谱(DLS),透射电子显微镜(TEM)和UV-Vis光谱仪测量颗粒尺寸,颗粒形态,吸收光谱和荧光素染料的光稳定性。此外,在200W的卤素灯的辐射下测量了二氧化硅纳米粒子的光稳定性的影响荧光素染料60分钟。与裸荧光素染料在暴露后相比,硅纳米粒子包封荧光素染料更稳定。总之,与裸荧光素染料相比,改善了二氧化硅纳米粒子的光稳定性,因此,硅纳米粒子包封成功地提供了荧光疫苗染料和光降解的保护。

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