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Magneto-Fluorescent Microbeads for Bacteria Detection Constructed from Superparamagnetic Fe3O4 Nanoparticles and AIS/ZnS Quantum Dots

机译:用于从超顺磁Fe3O4纳米颗粒和AIS / ZnS量子点构建的细菌检测的磁荧光微珠

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摘要

The efficient and sensitive detection of pathogenic microorganisms in aqueous environments, such as water used in medical applications, drinking water, and cooling water of industrial plants, requires simple and fast methods suitable for multiplexed detection such as flow cytometry (FCM) with optically encoded carrier beads. For this purpose, we combine fluorescent Cd-free Ag-In-S ternary quantum dots (t-QDs) with fluorescence lifetimes (LTs) of several hundred nanoseconds and superparamagnetic Fe3O4 nanoparticles (SPIONs) with mesoporous CaCO3 microbeads to a magneto-fluorescent bead platform that can be surface-functionalized with bioligands, such as antibodies. This inorganic bead platform enables immuno-magnetic separation, target enrichment, and target quantification with optical readout. The beads can be detected with steady-state and time-resolved fluorescence microscopy and flow cytometry (FCM). Moreover, they are suited for readout by time gated emission. In the following, the preparation of these magneto-fluorescent CaCO3 beads, their spectroscopic and analytic characterization, and their conjugation with bacteria-specific antibodies are presented as well as proof-of-concept measurements with Legionella pneumophila including cell cultivation and plating experiments for bacteria quantification. Additionally, the possibility to discriminate between the long-lived emission of the LT-encoded capture and carrier CaCO3 beads and the short-lived emission of the dye-stained bacteria with time-resolved fluorescence techniques and single wavelength excitation is demonstrated.
机译:水性环境中的病原微生物的高效和敏感性检测,例如医疗应用,饮用水和工厂的冷却水,需要简单且快速的方法,适用于多路复用检测,例如具有光学编码的载体的流式细胞术(FCM)珠子。为此目的,我们将荧光CD的AG-IN-S三元量子点(T-QDS)与几百纳秒和超顺磁Fe3O4纳米颗粒(SpION)的荧光寿命(LTS)与中孔CaCO 3微珠相结合至磁荧光珠粒可以用Bioligands表面官能化的平台,例如抗体。该无机胎圈平台使免疫磁分离,目标富集和具有光学读数的目标定量。可以用稳态和时间分辨荧光显微镜和流式细胞术(FCM)检测珠子。此外,它们适用于读出时代门控发射。在下文中,提出了这些磁荧光CaCO3珠粒,它们的光谱和分析表征的制备及其与细菌特异性抗体的缀合以及由军团菌肺炎的概念验证测量,包括细胞培养和细菌的电镀实验量化。另外,对具有时间分辨荧光技术和单波长激发的染料染色细菌的长寿命的长寿命发射和染料染色细菌的短寿命发射的可能性。

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  • 来源
    《Analytical chemistry》 |2019年第20期|共9页
  • 作者单位

    BAM Fed Inst Mat Res &

    Testing Div Biophoton Richard Willstaetter Str 11 D-12489 Berlin Germany;

    BAM Fed Inst Mat Res &

    Testing Div Biophoton Richard Willstaetter Str 11 D-12489 Berlin Germany;

    BAM Fed Inst Mat Res &

    Testing Div Biophoton Richard Willstaetter Str 11 D-12489 Berlin Germany;

    Trinity Coll Dublin Sch Chem Dublin 2 Ireland;

    Trinity Coll Dublin Sch Chem Dublin 2 Ireland;

    ITMO Univ 49 Kronverksky Prospekt St Petersburg 197101 Russia;

    Trinity Coll Dublin Sch Chem Dublin 2 Ireland;

    ITMO Univ 49 Kronverksky Prospekt St Petersburg 197101 Russia;

    BAM Fed Inst Mat Res &

    Testing Div Biophoton Richard Willstaetter Str 11 D-12489 Berlin Germany;

    BAM Fed Inst Mat Res &

    Testing Div Biodeteriorat &

    Reference Organisms Unter Eichen 87 D-12205 Berlin Germany;

    Trinity Coll Dublin Sch Chem Dublin 2 Ireland;

    BAM Fed Inst Mat Res &

    Testing Div Biophoton Richard Willstaetter Str 11 D-12489 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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