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基于集成光纤和实时单细胞拉曼光谱的高灵敏度微流控传感器,用于胰腺癌的诊断。

Highly sensitive microfluidic sensor using integrated optical fiber and real-time single-cell Raman spectroscopy for diagnosis of pancreatic cancer.

机构信息

Health Science Center, Ningbo University, Ningbo, 315211, China.

Key Laboratory of Photoelectric Materials and Devices of Zhejiang Province, Ningbo University, Ningbo, 315211, China; Engineering Research Center for Advanced Infrared Photoelectric Materials and Devices of Zhejiang Province, Ningbo University, Ningbo, 315211, China.

出版信息

Biosens Bioelectron. 2024 Nov 15;264:116616. doi: 10.1016/j.bios.2024.116616. Epub 2024 Aug 3.

Abstract

Pancreatic cancer is notoriously lethal due to its late diagnosis and poor patient response to treatments, posing a significant clinical challenge. This study introduced a novel approach that combines a single-cell capturing platform, tumor-targeted silver (Ag) nanoprobes, and precisely docking tapered fiber integrated with Raman spectroscopy. This approach focuses on early detection and progression monitoring of pancreatic cancer. Utilizing tumor-targeted Ag nanoparticles and tapered multimode fibers enhances Raman signals, minimizes light loss, and reduces background noise. This advanced Raman system allows for detailed molecular spectroscopic examination of individual cells, offering more practical information and enabling earlier detection and accurate staging of pancreatic cancer compared to conventional multicellular Raman spectroscopy. Transcriptomic analysis using high-throughput gene screening and transcriptomic databases confirmed the ability and accuracy of this method to identify molecular changes in normal, early, and metastatic pancreatic cancer cells. Key findings revealed that cell adhesion, migration, and the extracellular matrix are closely related to single-cell Raman spectroscopy (SCRS) results, highlighting components such as collagen, phospholipids, and carotene. Therefore, the SCRS approach provides a comprehensive view of the molecular composition, biological function, and material changes in cells, offering a novel, accurate, reliable, rapid, and efficient method for diagnosing and monitoring pancreatic cancer.

摘要

胰腺癌由于其诊断较晚以及患者对治疗的反应较差而具有致命性,这给临床带来了巨大的挑战。本研究引入了一种新的方法,该方法结合了单细胞捕获平台、肿瘤靶向银(Ag)纳米探针和精确对接的锥形光纤与拉曼光谱结合在一起。该方法专注于胰腺癌的早期检测和进展监测。利用肿瘤靶向 Ag 纳米颗粒和锥形多模光纤增强了拉曼信号,最大限度地减少了光损耗并降低了背景噪声。与传统的多细胞拉曼光谱相比,这种先进的拉曼系统允许对单个细胞进行详细的分子光谱检查,提供更实用的信息,并能够更早地检测和准确分期胰腺癌。使用高通量基因筛选和转录组数据库进行的转录组分析证实了该方法能够识别正常、早期和转移性胰腺癌细胞中分子变化的能力和准确性。主要发现表明,细胞黏附、迁移和细胞外基质与单细胞拉曼光谱(SCRS)结果密切相关,突出了胶原蛋白、磷脂和类胡萝卜素等成分。因此,SCRS 方法提供了对细胞内分子组成、生物功能和物质变化的全面了解,为诊断和监测胰腺癌提供了一种新颖、准确、可靠、快速和高效的方法。

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