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Luminescent dye-doped or rare-earth-doped monodisperse silica nanospheres as efficient labels in DNA microarrays

机译:发光染料掺杂或稀土掺杂的单分散二氧化硅纳米球作为DNA微阵列中的有效标记

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摘要

Luminescent nanoparticles are gaining more and more interest in bio-labeling and bio-imaging applications, like for example DNA microarray. This is a high-throughput technology used for detection and quantification of nucleic acid molecules and other ones of biological interest. The analysis is resulting by specific hybridization between probe sequences deposited in array and a target ss-DNA usually expressed by PCR and functionalized by a fluorescent dye. These organic labels have well known disadvantages like photobleaching and limited sensitivity. Quantum dots may be used as alternatives, but they present troubles like blinking, toxicity and excitation wavelengths out of the usual range of commercial instruments, lowering their efficiency. Therefore in this work we investigate a different strategy, based on the use of inorganic silica nanospheres incorporating standard luminescent dyes or rare earth doped nanocrystals. In the first case it is possible to obtain a high luminescence emission signal, due to the high number of dye molecules that can be accommodated into each nanoparticle, reduced photobleaching and environmental protection of the dye molecules thanks to the encapsulation in the silica matrix. In the second case, rare earths exhibit narrow emission bands (easy identification), large Stokes shifts (efficient discrimination of excitation and emission) and long luminescence lifetimes (possibility to perform time-delayed analysis) which can be efficiently used for the improvement of signal to noise ratio. The synthesis and characterization of good luminescent silica spheres either by organic dye-doping or by rare-earth-doping are investigated and reported. Moreover, their application in the DNA microarray technology in comparison to the use of standard molecular fluorophores or commercial quantum dots is discussed. The cheap and easy synthesis of these luminescent particles, the stability in water, the surface functionalization and bio-compatibility makes them very promising for present and future applications in bio-labeling and bio-imaging.
机译:发光纳米颗粒在生物标记和生物成像应用中越来越受到关注,例如DNA微阵列。这是一种用于检测和定量核酸分子以及其他生物学感兴趣的高通量技术。该分析是通过阵列中沉积的探针序列与通常通过PCR表达并通过荧光染料功能化的靶标ss-DNA之间的特异性杂交而得出的。这些有机标签具有众所周知的缺点,例如光漂白和灵敏度有限。量子点可以用作替代方法,但是它们会带来诸如闪烁,毒性和激发波长之类的麻烦,超出了商用仪器的常规范围,从而降低了效率。因此,在这项工作中,我们基于结合了标准发光染料或稀土掺杂纳米晶体的无机二氧化硅纳米球的使用,研究了不同的策略。在第一种情况下,由于可以容纳到每个纳米颗粒中的染料分子数量众多,由于封装在二氧化硅基质中,染料分子的光漂白和环境保护降低,因此可以获得高的发光信号。在第二种情况下,稀土元素显示出窄的发射带(易于识别),大的斯托克斯频移(有效区分激发和发射)和长的发光寿命(可以进行时延分析),可以有效地用于改善信号噪声比。研究并报道了通过有机染料掺杂或稀土掺杂合成的良好发光二氧化硅球的表征。此外,与标准分子荧光团或商业量子点的使用相比,还讨论了它们在DNA微阵列技术中的应用。这些发光粒子的廉价,容易合成,在水中的稳定性,表面功能化和生物相容性,使其在生物标记和生物成像中的当前和未来应用中非常有前途。

著录项

  • 来源
    《Nanophotonic materials VI》|2009年|P.73930M.1-73930M.10|共10页
  • 会议地点 San Diego CA(US)
  • 作者单位

    CIVEN and Nanofab, via delle Industrie 5, 30175 Marghera (VE) - ITALY;

    rnCIVEN and Nanofab, via delle Industrie 5, 30175 Marghera (VE) - ITALY;

    rnCIVEN and Nanofab, via delle Industrie 5, 30175 Marghera (VE) - ITALY;

    rnCIVEN and Nanofab, via delle Industrie 5, 30175 Marghera (VE) - ITALY;

    rnCIVEN and Nanofab, via delle Industrie 5, 30175 Marghera (VE) - ITALY;

    rnCIVEN and Nanofab, via delle Industrie 5, 30175 Marghera (VE) - ITALY;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 材料;
  • 关键词

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