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Photostability effect of silica nanoparticles encapsulated fluorescence dye

机译:二氧化硅纳米粒子包封荧光染料的光稳定性效应

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Fluorescence dyes are based on small organic molecules have become of interest in chemical biology and widely used for cell and intracellular imaging. However, fluorescence dyes have limitations such as photo bleaching, poor photochemical stability and has a short Stokes shift. It is less valuable for long-term cell tracking strategies and has very short lifetime. In order to overcome the problems, dye-incorporated nanomaterials become of interest. Nanomaterials encapsulation provides a protection layer around the fluorescence dye which improves the stability of fluorescence dye. In this study, silica nanoparticles encapsulated with 1,1%-dioctadecyl-3,3,3%,3%-tetramethylindocarbocyanine perchlorate (Dil) was successfully synthesised by using micelle entrapment method to investigate the effect of encapsulation of nanoparticles towards the properties of fluorescent dye. The synthesised nanoparticles (SiDil) was characterised by particle size analyser, Transmission Electron Microscopy (TEM), UV-Vis spectrometer and Fluorescent spectrometer. Observation using TEM showed spherical shape of nanoparticles with 53 nm diameter. Monodispersed and well nanoparticles distribution was confirmed by low polydispersity index of 0.063 obtained by particle size analyser. Furthermore, the photoluminescence properties of the SiDil were evaluated and compared with bare Dil dye. Both SiDil and bare Dil was radiated under 200 W of Halogen lamp for 60 minutes and the absorbance intensity was measured using UV-Vis spectrometer. The result showed more stable absorbance intensity for SiDil compared to bare Dil dye, which indicated that Si nanoparticles encapsulation improved the photostability property.
机译:荧光染料基于小型有机分子已成为化学生物学的感兴趣,广泛用于细胞和细胞内成像。然而,荧光染料具有诸如照片漂白,光化学稳定性差的限制,并且具有短的斯托克斯偏移。对于长期细胞跟踪策略并具有非常短的寿命,这对它不太有价值。为了克服问题,染料掺入的纳米材料成为感兴趣的。纳米材料封装在荧光染料周围提供保护层,从而提高了荧光染料的稳定性。在该研究中,通过使用胶束夹紧方法成功地合成了用1,1%-diOctadeCyl-3,3,3,3,3,3,3%,3%-tamethylindo碳碳键氰酸锰(DIL)的二氧化硅纳米粒子被成功地合成了米隆菌藏方法,以研究纳米颗粒的封装朝向性能的影响荧光染料。合成的纳米颗粒(SIDIL)的特征在于粒度分析仪,透射电子显微镜(TEM),UV-Vis光谱仪和荧光光谱仪。使用TEM观察显示纳米颗粒的球形,直径为53nm。通过粒度分析仪获得的低多分散指数为0.063的低多分散指数来确认单分散和良好的纳米颗粒分布。此外,评价SIDIL的光致发光性质并与裸稀染料进行比较。 SIDIL和裸稀钛在200W的卤素灯下辐射到60分钟,使用UV-Vis光谱仪测量吸光度强度。与裸稀染料相比,该结果表明Sidil的吸光度强度更稳定,这表明Si纳米颗粒包封改善了光稳定性性能。

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