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水散型可活化纳米探针用于通过近红外二区荧光成像检测可食作物中镉离子诱导的氧化应激。

Water-Dispersible Activatable Nanoprobe for Detecting Cadmium-Ion-Induced Oxidative Stress in Edible Crops via Near-Infrared Second-Window Fluorescence Imaging.

机构信息

State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates, College of Materials Science and Engineering, South China University of Technology, Wushan Road 381, Guangzhou 510640, China.

出版信息

Anal Chem. 2022 Oct 11;94(40):14021-14028. doi: 10.1021/acs.analchem.2c03404. Epub 2022 Sep 26.

Abstract

Edible crops are important in terms of food security and sustainable agriculture. Heavy-metal-ion contamination of water/soil has deleterious impacts on the growth of edible crops. Among the heavy metals, cadmium (Cd) is toxic to plants, people, and animals, as it is widely used in industry; it has become the most important metal ion in the soil/water pollution. Once the toxic Cd ion enters edible crops via the water/soil in which the crops grow, it will induce oxidative stress (overproduction of reactive oxygen species with HO being the most abundant) in the crops, and strong oxidative stress leads to the crops' growth depression or inhibition. Hence, it is of great significance to accurately monitor the oxidative stress induced by Cd ions in edible crops, as the monitoring results could be employed for the early warning of Cd-ion pollution in water/soil. Herein, we design an activatable nanoprobe that can detect Cd-ion-induced oxidative stress in edible crops via near-infrared second-window (NIR-II) fluorescence imaging. The molecular probe IXD-B contains the diphenylamine-modified xanthene group acting as the electron-donating unit, bis(methylenemalononitrile)indan as the electron-accepting unit, and the methenephenylboronic acid group as the recognition moiety for HO and the fluorescence quencher. The probe molecules being encapsulated by the amphiphilic DSPE-PEG2000 render the water-dispersible nanoprobe (IXD-B@DSPE-PEG2000). When the nanoprobe enters the edible crops, it can be activated by the overexpressed HO therein and consequently emit strong NIR-II fluorescence signals for visualizing and tracking the oxidative stress in edible crops induced by Cd ions.

摘要

食用作物在粮食安全和可持续农业方面具有重要意义。水/土壤中重金属离子的污染对食用作物的生长有有害影响。在重金属中,镉(Cd)对植物、人和动物都有毒,因为它在工业中广泛使用;它已成为土壤/水污染中最重要的金属离子。一旦有毒的 Cd 离子通过作物生长的水/土壤进入食用作物,它将在作物中诱导氧化应激(活性氧的过度产生,其中 HO 是最丰富的),强烈的氧化应激导致作物生长受到抑制或抑制。因此,准确监测食用作物中 Cd 离子诱导的氧化应激具有重要意义,因为监测结果可用于水/土壤中 Cd 离子污染的早期预警。在这里,我们设计了一种可激活的纳米探针,可通过近红外二区(NIR-II)荧光成像来检测食用作物中 Cd 离子诱导的氧化应激。分子探针 IXD-B 包含作为供电子单元的二苯胺修饰的呫吨基团、作为电子接受单元的双(亚甲基马来腈)茚和作为 HO 识别部分和荧光猝灭剂的亚甲基苯硼酸基团。被两亲性 DSPE-PEG2000 包裹的探针分子使水可分散的纳米探针(IXD-B@DSPE-PEG2000)。当纳米探针进入食用作物时,它可以被其中过表达的 HO 激活,从而发出强烈的 NIR-II 荧光信号,用于可视化和跟踪 Cd 离子诱导的食用作物中的氧化应激。

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