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Seed Mediated One-pot Growth of Versatile Heterogeneous Upconversion Nanocrystals for Multimodal Bioimaging

机译:种子介导的多态生物成像的多功能异构上转换纳米晶体的一锅生长。

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摘要

The rapid development of a variety of molecular contrast agents makes the multimodality bioimaging highly attractive towards higher resolution, more sensitive, informative diagnosis. The key lies in the development of facile material synthesis that allows the integration of multiple contrast agents, ideally in a way that each of the components should be logically assembled to maximize their performances. Here, we report the one-pot programmable growth of multifunctional heterogeneous nanocrystal with tunable size, shape, composition, and properties. We demonstrated a facile one-pot hot-injection method to enable the highly selectively controlled growth of different sodium lanthanide fluoride nanomaterials in either longitudinal or transversal directions with atomic scale precision. This technique allows the upconversion luminescence signal, MRI signal and x-ray signal logically integrated and optimized within one single versatile nanoplatform for multimode bioimaging. These findings suggest that the facile strategy developed here have the promising to get the desired heterogeneous nanocrystals as an all-in-one contrast agent for integrated and self-correlative multimodal bioimaging.
机译:各种分子造影剂的迅速发展,使得多模态生物成像技术对高分辨率,更灵敏,信息量大的诊断极具吸引力。关键在于开发易于合成的材料,该材料允许集成多种造影剂,理想情况下,应以逻辑方式组装每个组件以使其性能最大化。在这里,我们报告多功能异质纳米晶体具有可调大小,形状,组成和特性的一锅可编程增长。我们展示了一种简便的一锅法热注入方法,能够以原子尺度精度在纵向或横向方向上高度选择性地控制不同镧系氟化钠纳米材料的生长。该技术允许在一个单一的多用途纳米平台内对上转换发光信号,MRI信号和X射线信号进行逻辑集成和优化,以进行多模生物成像。这些发现表明,此处开发的简便策略有望获得所需的异质纳米晶体,作为集成和自相关多峰生物成像的多合一造影剂。

著录项

  • 来源
    《SPIE biophotonics Australasia》|2016年|1001315.1-1001315.7|共7页
  • 会议地点 Adelaide(AU)
  • 作者单位

    Institute for Biomedical Materials and Devices, Faculty of Science, University of Technology Sydney, NSW, 2007, Australia,Advanced Cytometry Labs, ARC Centre of Excellence for Nanoscale BioPhotonics, Macquarie University, Sydney, NSW, 2109, Australia;

    Institute for Biomedical Materials and Devices, Faculty of Science, University of Technology Sydney, NSW, 2007, Australia,ARC Research Hub for Integrated Device for End-user Analysis at Low-levels (IDEAL), Faculty of Science, University of Technology, Sydney, New South Wales 2007, Australia,Advanced Cytometry Labs, ARC Centre of Excellence for Nanoscale BioPhotonics, Macquarie University, Sydney, NSW, 2109, Australia,State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, People's Republic of China;

    Institute for Biomedical Materials and Devices, Faculty of Science, University of Technology Sydney, NSW, 2007, Australia,ARC Research Hub for Integrated Device for End-user Analysis at Low-levels (IDEAL), Faculty of Science, University of Technology, Sydney, New South Wales 2007, Australia,Advanced Cytometry Labs, ARC Centre of Excellence for Nanoscale BioPhotonics, Macquarie University, Sydney, NSW, 2109, Australia;

    Institute for Biomedical Materials and Devices, Faculty of Science, University of Technology Sydney, NSW, 2007, Australia,ARC Research Hub for Integrated Device for End-user Analysis at Low-levels (IDEAL), Faculty of Science, University of Technology, Sydney, New South Wales 2007, Australia,Advanced Cytometry Labs, ARC Centre of Excellence for Nanoscale BioPhotonics, Macquarie University, Sydney, NSW, 2109, Australia;

    Institute for Superconducting and Electronic Materials, Innovation Campus, University of Wollongong, NSW, 2522, Australia;

    Australian Institute for Innovative Materials (AIIM), Innovation Campus, University of Wollongong, North Wollongong, NSW, 2522, Australia;

    Advanced Cytometry Labs, ARC Centre of Excellence for Nanoscale BioPhotonics, Macquarie University, Sydney, NSW, 2109, Australia,Faculty of Medicine Health Sciences, Macquarie University, Sydney, NSW, 2109, Australia;

    State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, People's Republic of China;

    Institute for Biomedical Materials and Devices, Faculty of Science, University of Technology Sydney, NSW, 2007, Australia,ARC Research Hub for Integrated Device for End-user Analysis at Low-levels (IDEAL), Faculty of Science, University of Technology, Sydney, New South Wales 2007, Australia,Advanced Cytometry Labs, ARC Centre of Excellence for Nanoscale BioPhotonics, Macquarie University, Sydney, NSW, 2109, Australia;

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

    Upconversion nanocrystals, one-pot synthesis, heterogeneous growth, partitioned doping, multimode imaging;

    机译:上转换纳米晶体,一锅合成,异质生长,分区掺杂,多模成像;
  • 入库时间 2022-08-26 13:45:26

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