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基于一次性双适体的荧光纳米传感器的快速、灵敏、无标记检测骨膜蛋白的研制。

Development of a one-shot dual aptamer-based fluorescence nanosensor for rapid, sensitive, and label-free detection of periostin.

机构信息

Department of Chemistry, Pohang University of Science and Technology, 77, Cheongam-ro, Nam-gu, Pohang, Gyeongbuk, 37673, Republic of Korea.

出版信息

Sci Rep. 2023 Jun 23;13(1):10224. doi: 10.1038/s41598-023-37418-0.

Abstract

Periostin is associated with several diseases, including cancers. Therefore, monitoring blood periostin levels is a powerful tool for diagnosing various diseases and identifying their severity. However, conventional detection methods pose several challenges, including high costs. To address these issues, we developed a novel one-shot dual aptamer-based fluorescence nanosensor for detecting periostin. The proposed nanosensor facilitates rapid, label-free, and sensitive detection of periostin using gold nanoprobes constructed by rhodamine-b isothiocyanate, PL2 aptamer, and gold nanoparticles and silver nanoprobes fabricated by the PL5 aptamer and silver nanoparticles. The two nanoprobes form a core-satellite structure by interacting with periostin, and the nanosensor detects periostin through the fluorescence regenerated by the increased proximity between them. The nanosensor successfully detected periostin with remarkable detection limits of 106.68 pM in buffer and 463.3 pM in serum-spiked conditions within 30 min without additional washing or signal amplification processes. Considering serum periostin levels in various diseases, the proposed nanosensor provides a suitable method for identifying patients with various diseases and determining disease severity. Moreover, the platform can be helpful as a practical method for on-site medical diagnosis because it can be adapted to detect other biomarkers simply by replacing the aptamer with other detection probes.

摘要

纤连蛋白在包括癌症在内的多种疾病中都有相关作用。因此,监测血液中的纤连蛋白水平是诊断各种疾病并确定其严重程度的有力工具。但是,传统的检测方法存在一些挑战,包括成本高。为了解决这些问题,我们开发了一种新颖的基于双适体的一次性荧光纳米传感器来检测纤连蛋白。该纳米传感器使用由罗丹明异硫氰酸酯、PL2 适体和金纳米粒子构建的金纳米探针和由 PL5 适体和银纳米粒子构建的银纳米探针,实现了对纤连蛋白的快速、无标记和灵敏检测。这两种纳米探针通过与纤连蛋白相互作用形成核-卫星结构,纳米传感器通过它们之间的接近度增加来检测纤连蛋白,从而产生荧光再生。该纳米传感器在缓冲液中以 106.68 pM 的显著检测限,在血清加标条件下以 463.3 pM 的检测限,在 30 分钟内成功检测到纤连蛋白,无需额外的洗涤或信号放大过程。考虑到各种疾病中的血清纤连蛋白水平,该纳米传感器为识别各种疾病患者和确定疾病严重程度提供了一种合适的方法。此外,由于该平台可以通过用其他检测探针替换适体来简单地适应检测其他生物标志物,因此它可以作为一种实用的现场医疗诊断方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eef1/10290134/33d7d7d154e4/41598_2023_37418_Fig1_HTML.jpg

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