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Nanobiodevice based single molecule and cell sensing for cancer diagnosis and in vivo imaging for stem cell therapy

机译:基于纳米生物设备的单分子和细胞传感技术,用于癌症诊断和干细胞治疗的体内成像

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摘要

Nanobiodevices are developed to analyze biomolecules and cells for genome and proteome analysis. In this article, I will describe numerous advantages of nanobiodivces, especially in the biological, medical, and clinical applications I also describe the development of nanopillar device for the ultrafast separation of DNA and nanoball materials for the fast separation of wide range of DNA fragments. I developed new synthetic method of quantum dots (QDs) based on the appropriate cluster confirmation by the ab initio molecular orbital calculation. QDs are applied to in vivo imaging of stem cell for stem cell therapy and the theranostic device for cancer diagnosis and therapy. Because of the high efficiency of nanobiodevice in the biomolecular and cellular analysis, numerous types of nanobiodevices are developed and applied to the diagnosis of diseases, including cancer, diabetes, hypertension, and infection diseases.
机译:纳米生物设备被开发用于分析生物分子和细胞以进行基因组和蛋白质组分析。在本文中,我将描述纳米生物多样性的众多优势,尤其是在生物学,医学和临床应用中。我还将描述用于超快分离DNA的纳米柱装置的开发以及用于快速分离各种DNA片段的纳米球材料的开发。我基于从头算分子轨道计算得出的适当簇确认,开发了新的量子点(QDs)合成方法。 QD用于干细胞的体内成像以进行干细胞治疗,以及用于肿瘤诊断和治疗的治疗治疗仪。由于纳米生物装置在生物分子和细胞分析中的高效性,因此开发了多种类型的纳米生物装置并将其用于疾病的诊断,包括癌症,糖尿病,高血压和感染性疾病。

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