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用于术中快速病理诊断和肿瘤组织学分级的NAD(P)H激活荧光探针

NAD(P)H Activated Fluorescent Probe for Rapid Intraoperative Pathological Diagnosis and Tumor Histological Grading.

作者信息

Yang Chaojie, Jiang Chenxia, Yang Majun, Bai Qingqing, Zhen Yaya, Zhang Yuxue, Yin Weiyi, Wang Jian, Zhou Xiaobo, Li Guo, Wu Mingmin, Qin Yuling, Wang Qi, Ji Haiwei, Wu Li

机构信息

School of Public Health, Nantong Key Laboratory of Public Health and Medical Analysis, Nantong University, Nantong, 226019, P. R. China.

Department of Pathology, The Affiliated Hospital of Nantong University, 226001 Nantong, P. R. China.

出版信息

Chem Biomed Imaging. 2023 Aug 25;1(8):738-749. doi: 10.1021/cbmi.3c00076. eCollection 2023 Nov 27.

Abstract

Rapid and accurate intraoperative pathological diagnosis (IOPD) is essential for intraoperative decision-making to improve patients' outcomes and avoid reoperations. In this study, using a NAD(P)H-activated fluorescent probe, a multifunctional fluorescent indicator has been developed to selectively identify tumor cells from normal tissue and to achieve cancer grading identification. This rapid response probe, CyQ-1, features unprecedented sensitivity and rapid response toward NADH at low nanomolar levels under physiological conditions. Moreover, this indicator allows both colorimetric and fluorescent NADH detection in HeLa, A549, MDA-MB-231, 4T1, MCF-7, HePG2, HUVEC, and HL-7702 cells. Expanding the use of this indicator to advanced tissue models, its ability to visualize NADH in 120 paraffin-embedded colorectal sections and 20 cases of intraoperative frozen sections of lung cancer was further verified. CyQ-1-based cancer grading identification shows an overall 92.5 and 100% agreement with the "gold standard test" of histologic grading toward paraffin and frozen sections, respectively. The sensitivity and specificity for discriminating poorly, moderately, and well-differentiated tumor sections were all above 90%. In a word, the rapid and accurate NADH detection ability for clinical sections makes this proposed indicator a potential candidate for clinical IOPD quantification and tumor differentiation grade recognition.

摘要

快速准确的术中病理诊断(IOPD)对于术中决策以改善患者预后并避免再次手术至关重要。在本研究中,使用一种NAD(P)H激活的荧光探针,开发了一种多功能荧光指示剂,用于从正常组织中选择性识别肿瘤细胞并实现癌症分级鉴定。这种快速响应探针CyQ-1在生理条件下对低纳摩尔水平的NADH具有前所未有的灵敏度和快速响应。此外,该指示剂能够在HeLa、A549、MDA-MB-231、4T1、MCF-7、HePG2、HUVEC和HL-7702细胞中进行比色和荧光NADH检测。将该指示剂的应用扩展到高级组织模型,进一步验证了其在120个石蜡包埋的结肠直肠切片和20例肺癌术中冰冻切片中可视化NADH的能力。基于CyQ-1的癌症分级鉴定与石蜡切片和冰冻切片组织学分级的“金标准测试”总体一致性分别为92.5%和100%。区分低分化、中分化和高分化肿瘤切片的灵敏度和特异性均高于90%。总之,该指示剂对临床切片具有快速准确的NADH检测能力,使其成为临床IOPD定量和肿瘤分化等级识别的潜在候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17c6/11503956/555c111436bc/im3c00076_0001.jpg

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