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用于卵巢癌诊断的可拉伸光子晶体辅助糖蛋白鉴定

Stretchable Photonic Crystal-Assisted Glycoprotein Identification for Ovarian Cancer Diagnosis.

作者信息

Jian Xinyi, Chen Fei, Wei Wei, Zhang Xiaoyu, Cheng Nan, Li Jundong, Li Fengyu

机构信息

College of Chemistry and Materials Science, Guangdong Provincial Key Laboratory of Speed Capability Research, Su Bingtian Center for Speed Research and Training, Jinan University, Guangzhou 510632, China.

Sun Yat-Sen University Cancer Center, Guangzhou 528403, China.

出版信息

Anal Chem. 2024 Apr 30;96(17):6700-6706. doi: 10.1021/acs.analchem.4c00269. Epub 2024 Apr 15.

Abstract

Photonic crystals with specific wavelengths can realize surface-enhanced excitation and emission intensities of fluorophores and enhance the fluorescence signals of fluorescent molecules. Herein, stretchable photonic crystals with good mechanochromic properties provide continuously adjustable forbidden wavelengths by stretching to change the lattice spacing, with reflectance peaks blue-shifted up to 110 nm to match indicators of different wavelengths and produce differentiated optical enhancement effects. Glycoproteins are significantly identified as clinical markers. However, the wide participation of glycoproteins in various life processes poses enormous complexity and critical challenges for rapid, facile, high-throughput, and accurate clinical analysis or health assessment. In this work, we proposed a stretchable photonic crystal-assisted glycoprotein identification approach for early ovarian cancer diagnosis. Stretchable photonic crystals can provide rich optical information to efficiently identify glycoproteins in complex matrices. A double-indicator fluorescence sensor was designed to respond to the protein trunk and oligosaccharide segment of glycoproteins separately for improved recognition accuracy. Seven typical glycoproteins could be discriminated from proteins, saccharides, or mixture interferents. Clinical ovarian cancer samples for early, intermediate, and advanced ovarian cancer and healthy subjects were verified with 100% accuracy. This strategy of stretchable photonic crystal-assisted glycoprotein identification provides an effective method for accurate, rapid ovarian cancer diagnosis and timely clinical treatment.

摘要

具有特定波长的光子晶体可以实现荧光团的表面增强激发和发射强度,并增强荧光分子的荧光信号。在此,具有良好机械变色性能的可拉伸光子晶体通过拉伸改变晶格间距,提供连续可调的禁带波长,反射峰蓝移高达110 nm,以匹配不同波长的指示剂并产生差异化的光学增强效果。糖蛋白被明确认定为临床标志物。然而,糖蛋白广泛参与各种生命过程,给快速、简便、高通量和准确的临床分析或健康评估带来了巨大的复杂性和严峻挑战。在这项工作中,我们提出了一种用于早期卵巢癌诊断的可拉伸光子晶体辅助糖蛋白识别方法。可拉伸光子晶体可以提供丰富的光学信息,以有效识别复杂基质中的糖蛋白。设计了一种双指示剂荧光传感器,分别对糖蛋白的蛋白质主干和寡糖片段做出响应,以提高识别准确性。七种典型糖蛋白可以与蛋白质、糖类或混合干扰物区分开来。对早期、中期和晚期卵巢癌的临床卵巢癌样本以及健康受试者进行了验证,准确率达100%。这种可拉伸光子晶体辅助糖蛋白识别策略为准确、快速的卵巢癌诊断和及时的临床治疗提供了一种有效方法。

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