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Fabrication of an activatable hybrid persistent luminescence nanoprobe for background-free bioimaging-guided investigation of food-borne aflatoxin in vivo

机译:制备可激活的杂化持久发光纳米探针,用于无背景生物成像指导的体内食源性黄曲霉毒素的研究

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The development of in situ and real-time analytical methods for specifically probing food-borne hazardous substances is promising for clarifying their harmful behaviors and related disease mechanisms inside the living body through in situ investigation of their in vivo behaviors. Herein, optical nanoimaging with the ability of in situ non-damage detection and real-time monitoring was introduced for specific recognition of aflatoxin in cellular levels and in vivo via the fluorescence resonance energy transfer (FRET) protocol. Persistent luminescence nanophosphors (PLNPs) with distinct advantages of improved sensitivity and signal-to-noise ratio were employed in in vivo bioimaging as photoluminescence nanoprobes, while copper sulfide nanoparticles were utilized as the quencher. Due to their long-lasting afterglow, PLNPs do not require external illumination before imaging, effectively eliminating the scattering light and autofluorescence from the biological matrix that can occur during in situ excitation. The proposed FRET imaging assay achieved high sensitivity and specificity as well as improved imaging resolution for the target aflatoxin present in vivo . This study will provide insights towards advanced methodology for the applications of bioimaging in food safety, and could potentially provide an advisory roadmap for bioimaging-guided exploration and mediation of food-borne hazards to human health.
机译:专门研究食源性有害物质的原位实时分析方法的发展有望通过对它们的体内行为进行原位调查来阐明其有害行为和相关的疾病机制。本文中,通过荧光共振能量转移(FRET)协议,引入了具有原位无损检测和实时监控能力的光学纳米成像技术,以在细胞水平和体内特异性识别黄曲霉毒素。在体内生物成像中,具有改善的灵敏度和信噪比的显着优势的持久发光纳米磷光体(PLNP)被用作光致发光纳米探针,而硫化铜纳米颗粒被用作淬灭剂。由于其持久的余辉,PLNP在成像之前不需要外部照明,从而有效地消除了生物基质中原位激发过程中可能发生的散射光和自发荧光。拟议的FRET成像分析实现了高灵敏度和特异性,并提高了成像分辨率的目标黄曲霉毒素在体内存在。这项研究将为生物成像技术在食品安全中的应用提供先进的方法学见解,并有可能为生物成像指导的探索和调解食源性危害人类健康提供咨询路线图。

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