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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Spectrofluorimetric cytosensing of colorectal cancer cells using terbium-doped dendritic fibrous nano-silica functionalized by folic acid: A novel optical cytosensor for cancer detection
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Spectrofluorimetric cytosensing of colorectal cancer cells using terbium-doped dendritic fibrous nano-silica functionalized by folic acid: A novel optical cytosensor for cancer detection

机译:叶酸官能化的铽掺杂树枝状纤维纳米二氧化硅的光谱氟化物细胞溶解:一种新型光学胞嘧体,用于癌症检测

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摘要

A novel fluorescent probe for detection of HT 29 cancer cells was developed based on terbium-doped dendritic fibrous nanosilica functionalized by folic acid (Tb@KCC-1-NH2-FA). Using this probe, fluorescence signals was emitted by Tb@KCC-1-NH2-FA at 490 nm by applying 380 nm as excitation wavelength. The reported probe is based on the interaction between FA decorated on the surface of Tb@KCC-1-NH2-FA and folate receptor (FR) which is overexpressed on the surface of the most of cancer cells. Fluorescence microscopy and flow cytometry were utilized to verify the uptake of Tb@KCC-1-NH2-FA with FR-positive HT 29 cancer cells. The specificity of Tb@KCC-1-NH2-FA towards FR-positive cells was approved by staining HEK 293 cells as FR-negative cells with Tb@KCC-1-NH(2)(-)FA which obtained results approved selective differentiation of normal cells with the FA-decorated nanomaterials. The cytotoxicity of Tb@KCC-1-NH2-FA was evaluated by MTT assay which confirmed their biocompatible nature. Under optimum conditions, this cytosensor is able to detect HT 29 colon cancer from 500 to 6.5 x 10(3) cells/mL with lower limit of detection (LLOQ) of 500 cells/mL. Due to the room temperature stability of Tb@KCC-1-NH2-FA, this cytosensor could be developed in a simple way with exceptional specificity which may show potential applications for early stage detection of colon cancer. (C) 2019 Elsevier B.V. All rights reserved.
机译:用于检测HT 29癌细胞的新型荧光探针是基于叶酸(TB-KCC-1-NH2-FA)官能化的铽掺杂树突纤维状纳米胺。使用该探针,通过将380nm作为激发波长施加380nm,通过Tb @ Kcc-1-NH2-FA发射荧光信号。报告的探针基于FA之间的相互作用,在TB @ Kcc-1-NH2-FA和叶酸受体(FR)表面上装饰,其在大多数癌细胞的表面上过表达。使用荧光显微镜和流式细胞术用于验证与FR阳性HT 29癌细胞的TB @ Kcc-1-NH2-Fa的摄取。通过染色HEK 293细胞作为具有TB @ KCC-1-NH(2)( - )FA的FR阴性细胞来批准Tb @ Kcc-1-NH2-FA朝向FR阳性细胞的特异性获得批准的结果批准的选择性分化具有FA装饰纳米材料的正常细胞。通过MTT测定法评估Tb @ Kcc-1-NH2-Fa的细胞毒性,所述MTT测定证实了它们的生物相容性性质。在最佳条件下,这种胞质传感器能够检测来自500至6.5×10(3)个细胞/ ml的HT 29结肠癌,其中500细胞/ ml的检测限度下限(LLOQ)。由于Tb @ Kcc-1-NH2-FA的室温稳定性,这种胞质传感器可以以简单的方式开发出特殊的特异性,这可能显示出对结肠癌早期检测的潜在应用。 (c)2019 Elsevier B.v.保留所有权利。

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