Nanobiodevice for single biomolecular and cellular analysis for cancer diagnosis and in vivo imaging

来源 :第2届大连国际色谱学术报告会、第37届国际高效液相色谱及相关技术会议、第18届全国色谱学术报告会 | 被引量 : 0次 | 上传用户:q3356367
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Nanobiodevice is a piece of contrivance, equipment, machine, or component, which is created by the overlapping multidisciplinary activities associated with nanotechnology and biotechnology, intended for biological, medical, and clinical purposes.During the past decade, nanobiodevice has progressively begun to focus on the establishment of main four fields of biomedical applications of nanotechnology, including 1) diagnostic devices, 2) molecular imaging, 3) regenerative medicine, and 4) drug delivery systems.In this lecture, I will describe the development of nanobiodevices to analyze biomolecules and cells towards biomedical applications.[1-10] I developed numerous diagnostic nanodevices based on the single biomolecular separation and detection.These devices are also applicable to fast and low invasive blood marker detection of cancer with pM-fM detection sensitivity.Additionally, 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 the development of nanobiodevice for single cancer cell diagnosis, single molecular epigenetic analysis, in vivo imaging for stem cell therapy and theranostic device for cancer diagnosis and therapy.
其他文献
目的:建立一种高效液相色谱-荧光检测法检测给药大鼠早孕胚胎组织中苯并芘的方法,为后续临床研究提供更可靠依据. 方法:采用高效液相色谱-荧光检测法检测给药大鼠早孕胚
本实验首次将磁性纳米颗粒用于食品基质中农药多残留分析。研究发现磁性纳米颗粒本身是一种新颖和优良的吸附材料。实验改进了QuEChERS前处理方法,采用添加磁性纳米粒子的混合
液质联用(Liquid Chromatography-Mass,LC-MS)是以高效液相色谱与质谱仪联合而成,能对已知或未知物进行科学、快速、准确的定性定量分析,提供复杂样品的分子量、分子结构信息
地质工作已开展了从矿业资源地学向环境地学的演变.新一轮国土资源大调查的实施,西部大开发工作的启动,为地质实验测试开辟了更加广阔的发展空间.文章分析了加强环境生态建设
《基础教育课程改革纲要(实验稿)》指出:教材是课程资源,但不是唯一资源;教学不是简单的传递、灌输课本知识,而是结合具体的教育情境创造地运用教材的过程;教师不但是教材的
  Bacteria were used as chiral selectors to separate enantiomers, and platelet was employed as the target cell to screen active components from traditional Ch
  Recently, we have utilized micro/nanometer-scale bare silica capillaries to separate DNA molecules under pressure-driven flow conditions.After a fluorescenc
会议
  The structural complexity and diversity of oligosaccharides in glycoproteins posed significant analytical challenges.The development of new approaches to ch
会议