Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, College of Biology, Aptamer Engineering Center of Hunan Province, Hunan University, Changsha, Hunan 410082, China.
Department of Pathology, Zhejiang Cancer Hospital, Key Laboratory of Zhejiang Province for Aptamers and Theranostics, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences, Hangzhou, Zhejiang 310022, China.
ACS Nano. 2024 Apr 9;18(14):9958-9968. doi: 10.1021/acsnano.3c10216. Epub 2024 Mar 28.
Single-molecule fluorescence in situ hybridization (smFISH) represents a promising approach for the quantitative analysis of nucleic acid biomarkers in clinical tissue samples. However, low signal intensity and high background noise are complications that arise from diagnostic pathology when performed with smFISH-based RNA imaging in formalin-fixed paraffin-embedded (FFPE) tissue specimens. Moreover, the associated complex procedures can produce uncertain results and poor image quality. Herein, by combining the high specificity of split DNA probes with the high signal readout of ZnCdSe/ZnS quantum dot (QD) labeling, we introduce QD split-FISH, a high-brightness smFISH technology, to quantify the expression of mRNA in both cell lines and clinical FFPE tissue samples of breast cancer and lung squamous carcinoma. Owing to its high signal-to-noise ratio, QD split-FISH is a fast, inexpensive, and sensitive method for quantifying mRNA expression in FFPE tumor tissues, making it suitable for biomarker imaging and diagnostic pathology.
单分子荧光原位杂交(smFISH)是一种很有前途的方法,可以对临床组织样本中的核酸生物标志物进行定量分析。然而,当在福尔马林固定石蜡包埋(FFPE)组织标本中进行基于 smFISH 的 RNA 成像时,低信号强度和高背景噪声是诊断病理学中出现的并发症。此外,相关的复杂程序可能会产生不确定的结果和较差的图像质量。在此,我们通过将分裂 DNA 探针的高特异性与 ZnCdSe/ZnS 量子点(QD)标记的高信号读出相结合,引入了 QD 分裂-FISH,这是一种高亮度的 smFISH 技术,用于定量检测乳腺癌和肺鳞癌细胞系和临床 FFPE 组织样本中 mRNA 的表达。由于其高信噪比,QD 分裂-FISH 是一种快速、廉价、灵敏的方法,可用于定量检测 FFPE 肿瘤组织中的 mRNA 表达,非常适合生物标志物成像和诊断病理学。