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可调节的 3D 打印植物抗体载体制备平台,用于海洋水中微囊藻毒素-LR 的微尺度亲和提取和比率型前沿荧光检测。

Modulable 3D-printed plantibody-laden platform enabling microscale affinity extraction and ratiometric front-face fluorescence detection of microcystin-LR in marine waters.

机构信息

CLECEM Group, Department of Analytical Chemistry, University of Valencia, C/ Doctor Moliner, 50, 46100, Burjassot, Valencia, Spain.

Department of Chemistry, Chair of Analytical Chemistry and Water Chemistry, Technical University Munich, TUM School of Natural Sciences, Lichtenbergstrasse 4, 85748, Garching, Germany.

出版信息

Mikrochim Acta. 2024 Jul 27;191(8):490. doi: 10.1007/s00604-024-06547-2.

Abstract

A 3D-printed stereolithographic platform for selective biorecognition is designed to enable convective microscale affinity extraction of microcystin-LR (MC-LR) followed by direct solid-phase optosensing exploiting ratiometric front-face fluorescence spectroscopy. For this purpose, a recombinant monoclonal plantibody (recAb) is covalently attached to a 3D-printed structure for sorptive immunoextraction, whereupon the free and unbound primary amino moieties of the recAb are derivatized with a fluorescent probe. The fluorophore-recAb-MC-LR laden device is then accommodated in the cuvette holder of a conventional fluorometer without any instrumental modification for the recording of the solid-phase fluorescence emission. Using Rodbard's four-parameter sigmoidal function, the 3D-printed bioselective platform features a limit of detection (LOD) of 28 ng L using a sample volume of 500 mL, device-to-device reproducibility down to 12%, and relative recoveries ranging from 91 to 100% in marine waters. Printed prototypes are affordable, just 0.4 € per print and ≤ 10 € per device containing recAb. One of the main assets of the miniaturized immunoextraction device is that it performs comparably well in terms of analytical figures of merit with costly mass spectrometric-based analytical methodologies, such as HPLC-MS/MS. The device is readily applicable to high-matrix samples, such as seawater, as opposed to previous biosensing platforms, just applied to freshwater systems.

摘要

一种用于选择性生物识别的 3D 打印立体光刻平台旨在实现微囊藻毒素-LR(MC-LR)的对流微尺度亲和提取,然后利用比率型正面荧光光谱法直接进行固相光传感。为此,将重组单克隆植物抗体(recAb)共价附着到 3D 打印结构上以进行吸附免疫提取,随后将 recAb 的游离和未结合的伯氨基部分用荧光探针衍生化。然后将负载荧光染料的 recAb- MC-LR 的设备容纳在常规荧光计的比色皿支架中,而无需进行任何仪器修改即可记录固相荧光发射。使用 Rodbard 的四参数 S 形函数,3D 打印的生物选择性平台在使用 500 mL 样品体积的情况下具有 28 ng L 的检测限(LOD),设备间重现性低至 12%,并且在海洋水中的相对回收率在 91%至 100%之间。打印原型价格实惠,每个打印件仅需 0.4 欧元,每个包含 recAb 的设备不超过 10 欧元。小型免疫提取设备的主要优势之一是,它在分析质量方面与昂贵的基于质谱的分析方法(如 HPLC-MS/MS)相当。该设备可轻松应用于高基质样品,如海水,与以前的生物传感平台不同,以前的生物传感平台仅适用于淡水系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79d3/11283425/179637f5efb8/604_2024_6547_Fig1_HTML.jpg

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