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比较单脉冲和双脉冲激光诱导击穿光谱法检测标记有上转换光子纳米粒子的生物分子。

Comparison of single and double pulse laser-induced breakdown spectroscopy for the detection of biomolecules tagged with photon-upconversion nanoparticles.

机构信息

Department of Biochemistry, Faculty of Science, Masaryk University, Kamenice 5, 625 00, Brno, Czech Republic.

Central European Institute of Technology, Brno University of Technology, Purkyňova 656/123, 612 00, Brno, Czech Republic.

出版信息

Anal Chim Acta. 2024 Apr 22;1299:342418. doi: 10.1016/j.aca.2024.342418. Epub 2024 Feb 27.

Abstract

BACKGROUND

Laser-induced breakdown spectroscopy (LIBS) is a well-recognized analytical technique used for elemental analysis. This method is gaining considerable attention also in biological applications thanks to its ability for spatial mapping and elemental imaging. The implementation of LIBS in the biomedical field is based on the detection of metals or other elements that either naturally occur in the samples or are present artificially. The artificial implementation of nanoparticle labels (Tag-LIBS) enables the use of LIBS as a readout technique for immunochemical assays. However, one of the biggest challenges for LIBS to meet immunoassay readout standards is its sensitivity.

RESULTS

This paper focuses on the improvement of LIBS sensitivity for the readout of nanoparticle-based immunoassays. First, the LIBS setup was optimized on photon-upconversion nanoparticle (UCNP) droplets deposited on the microtiter plate wells. Two collection optics systems were compared, with single pulse (SP) and collinear double pulse (DP) LIBS arrangements. By deploying the second laser pulse, the sensitivity was improved up to 30 times. The optimized SP and DP setups were then employed for the indirect detection of human serum albumin based on immunoassay with UCNP-based labels. Compared to our previous LIBS study, the detection limit was enhanced by two orders of magnitude, from 10 ng mL to 0.29 ng mL. In addition, two other immunochemical methods were used for reference, based on the readout of upconversion luminescence of UCNPs and absorbance measurement with enzyme labels. Finally, the selectivity of the assay was tested and the practical potential of Tag-LIBS was demonstrated by the successful analysis of urine samples.

SIGNIFICANCE AND NOVELTY

In this work, we improved the sensitivity of the Tag-LIBS method by combining new labels based on UCNPs with the improved collection optics and collinear DP configuration. In the instrumental setup optimization, the DP LIBS showed better sensitivity and signal-to-noise ratio than SP. The optimizations allowed the LIBS readout to surpass the sensitivity of enzyme immunoassay, approaching the qualities of upconversion luminescence readout, which is nowadays a state-of-the-art readout technique.

摘要

背景

激光诱导击穿光谱(LIBS)是一种用于元素分析的公认分析技术。由于其具有空间映射和元素成像的能力,该方法在生物应用中也受到了极大的关注。LIBS 在生物医学领域的应用基于对样品中天然存在或人工存在的金属或其他元素的检测。纳米颗粒标签(Tag-LIBS)的人工实现使得 LIBS 可以用作免疫化学分析的读出技术。然而,LIBS 要满足免疫分析读出标准的最大挑战之一是其灵敏度。

结果

本文重点介绍了提高 LIBS 灵敏度以用于读出基于纳米颗粒的免疫分析的方法。首先,在微滴定板孔中沉积的上转换纳米颗粒(UCNP)液滴上优化了 LIBS 装置。比较了两种收集光学系统,分别为单脉冲(SP)和共线双脉冲(DP)LIBS 配置。通过部署第二激光脉冲,灵敏度提高了 30 倍。然后,将优化后的 SP 和 DP 装置用于基于 UCNP 标记的免疫分析间接检测人血清白蛋白。与我们之前的 LIBS 研究相比,检测限提高了两个数量级,从 10ng mL 到 0.29ng mL。此外,还使用了另外两种免疫化学方法作为参考,基于 UCNP 的上转换发光的读出和酶标记的吸光度测量。最后,通过成功分析尿液样本,测试了该测定的选择性并证明了 Tag-LIBS 的实际潜力。

意义和新颖性

在这项工作中,我们通过将基于 UCNP 的新型标签与改进的收集光学器件和共线 DP 配置相结合,提高了 Tag-LIBS 方法的灵敏度。在仪器设置优化中,DP-LIBS 比 SP 显示出更好的灵敏度和信噪比。优化使 LIBS 读出超过了酶免疫测定的灵敏度,接近当今最先进的读出技术——上转换发光读出的质量。

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