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N、P 共掺杂碳纳米点用于食品基质净化、抗癌潜力和细胞生物成像应用。

N,P-Doped Carbon Nanodots for Food-Matrix Decontamination, Anticancer Potential, and Cellular Bio-Imaging Applications.

出版信息

J Biomed Nanotechnol. 2020 Mar 1;16(3):283-303. doi: 10.1166/jbn.2020.2899.

DOI:10.1166/jbn.2020.2899
PMID:32493540
Abstract

We report a facile one-step thermal treatment method for the synthesis of biocompatible, fluorescent nitrogen-phosphorus-doped carbon nanodots (NPCDs) as multifunctional agents for the food matrix decontamination, cancer targeting, and cellular bio-imaging. NPCDs exhibit high toxicity towards , as illustrated by fluorescent live-dead cell counting, disruption of membrane permeability/potential, changes in the levels of cellular ions, genetic materials, and proteins, as well as intracellular production of reactive oxygen species. The tryptophan and protein peaks released in NPCDs treated cells contributed to indole ring breathing and correlated with induced cell death. NPCDs significantly inhibited bacterial biofilm formation on a solid substrate. NPCDs-coated low-density polyethylene (LDPE) film crosslinked with 1% aminopropyltriethoxy silane (APTES) via silane-hydroxyl linking as a food-grade wrap significantly reduced bacterial counts in a raw chicken food model. Furthermore, NPCDs induced apoptosis in HeLa cervical cancer cells, as confirmed by the distorted cell morphology, fluorescence microscopic analysis, presence of fragmented nuclei and the qPCR results of mRNA expression levels of apoptotic markers. Moreover, NPCDs were also applicable in utilized for the cellular bio-imaging of KM12-C colon cancer cells under confocal microscopy owing to their excellent luminescence properties. Overall, NPCDs represent a promising platform to reduce the environmental health risks associated with hazardous pathogens, anticancer targeting, and their application in cellular bio-imaging as multifunctional targets/nanocarriers.

摘要

我们报告了一种简便的一步热处理方法,用于合成生物相容性的、荧光氮磷掺杂的碳纳米点(NPCDs),作为多功能试剂,用于食品基质的净化、癌症靶向和细胞生物成像。NPCDs 对 表现出高毒性,如图所示,通过荧光死活细胞计数、膜通透性/电位的破坏、细胞离子、遗传物质和蛋白质水平的变化以及细胞内活性氧的产生来证明。在 NPCDs 处理的细胞中释放的色氨酸和蛋白质峰有助于吲哚环呼吸,并与诱导的细胞死亡相关。NPCDs 显著抑制了固体基质上的细菌生物膜形成。通过硅烷-羟基键合,用 1%氨丙基三乙氧基硅烷(APTES)交联的 NPCDs 涂层的低密度聚乙烯(LDPE)薄膜作为食品级包装,显著减少了生鸡肉食品模型中的细菌数量。此外,NPCDs 通过细胞形态的扭曲、荧光显微镜分析、核碎片的存在以及凋亡标志物的 mRNA 表达水平的 qPCR 结果,证实了其在 HeLa 宫颈癌细胞中的诱导凋亡作用。此外,由于 NPCDs 具有优异的发光性能,也可用于共聚焦显微镜下 KM12-C 结肠癌细胞的细胞生物成像。总之,NPCDs 代表了一种有前途的平台,可以降低与有害病原体相关的环境健康风险,实现抗癌靶向,并将其应用于细胞生物成像作为多功能靶标/纳米载体。

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