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Enhancing the Sensitivity of DNA MicroarrayUsing Dye-Doped Silica Nanoparticles:Detection of Human Papilloma Virus

机译:增强DNA微阵列染料掺杂二氧化硅纳米粒子的敏感性:检测人乳头瘤病毒

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DNA microarray is a high-throughput technology used for detection and quantification of nucleic acid molecules and others of biological interest. The analysis is based on the specific hybridization between probe sequences deposited in array and a target ss-DNA amplified by PCR and functionalized by a fluorescent dye. Organic labels have well known disadvantages like photobleaching and low signal intensities, which put a limitation to the lower amount of DNA material that can be detected. Therefore for trace analysis the development of more efficient biomarkers is required. With this aim we present in this paper the synthesis and application of alternative hybrid nanosystems obtained by incorporating standard fluorescent molecules into monodisperse silica nanoparticles. Efficient application to the detection of Human Papilloma Virus is demonstrated. This virus is associated to the formation of cervical cancer, a leading cause of death by cancer for women worldwide. It is shown that the use of the novel biomarkers increases the optical signal of about one order of magnitude with respect to the free dyes or quantum dots in conventional instruments. This is due to the high number of molecules that can be accommodated into each nanoparticle, to the reduced photobleaching and to the improved environmental protection of the dyes when encapsulated in the silica matrix. The cheap and easy synthesis of these luminescent particles, the stability in water, the surface functionalizability and bio-compatibility make them very promising for present and future bio-labeling and bio-imaging applications.·
机译:DNA微阵列是用于检测和定量核酸分子和其他生物利益的高通量技术。该分析基于诸如阵列中沉积的探针序列的特定杂交和通过PCR扩增的靶SS-DNA,并通过荧光染料官能化。有机标签具有众所周知的缺点,如光漂白和低信号强度,其对可以检测的较低量的DNA材料进行限制。因此,对于痕量分析,需要开发更有效的生物标志物。通过这种目的,我们在本文中存在,通过将标准荧光分子掺入单分散二氧化硅纳米粒子来获得替代杂化纳米系统的合成和应用。证实了对人乳头瘤病毒检测的有效应用。该病毒与宫颈癌的形成有关,癌症在全球癌症的主要死因。结果表明,新型生物标志物的使用在传统仪器中相对于自由染料或量子点增加了大约一个级的光信号。这是由于可以容纳在每个纳米颗粒中的大量分子,以减少光博,并且在硅胶基质中包封时染料的改善的环境保护。这些发光颗粒的廉价易易合成,水中的稳定性,表面官能化和生物兼容性使其非常有前途的目前和未来的生物标签和生物成像应用。·

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