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基于双适体的DNA逻辑门控串联灯探针与特定膜蛋白结合用于灵敏准确的癌细胞识别

Lighting Up Dual-Aptamer-Based DNA Logic-Gated Series Lamp Probes with Specific Membrane Proteins for Sensitive and Accurate Cancer Cell Identification.

作者信息

Zhou Xiaoyu, Yu Chenghao, Wei Xiaoling, Jia Haiyan, Zheng Ling, Shen Zhifa, Wu Rong, Xue Chang

机构信息

Key Laboratory of Laboratory Medicine, Ministry of Education, Zhejiang Provincial Key Laboratory of Medical Genetics, Cixi Biomedical Research Institute, School of Laboratory Medicine and Life sciences, Wenzhou Medical University, Wenzhou 325035, China.

出版信息

Anal Chem. 2025 Jan 21;97(2):1309-1317. doi: 10.1021/acs.analchem.4c05505. Epub 2025 Jan 9.

DOI:10.1021/acs.analchem.4c05505
PMID:39786914
Abstract

Accurate identification of cancer cells under complex physiological environments holds great promise for noninvasive diagnosis and personalized medicine. Herein, we developed dual-aptamer-based DNA logic-gated series lamp probes (Apt-SLP) by coupling a DNA cell-classifier (DCC) with a self-powered signal-amplifier (SSA), enabling rapid and sensitive identification of cancer cells in a blood sample. DCC is endowed with two extended-aptamer based modules for recognizing the two cascade cell membrane receptors and serves as a DNA logic gate to pinpoint a particular and narrow subpopulation of cells from a larger population of similar cells. DCC leverages a dual-receptor co-recognition strategy for enhanced specificity of cell identification by performing the matching operation between aptamer and receptor twice on cell membranes. SSA is a signal converter attached at the end of DCC that changes the cell identification process into detectable signals, as well as a signal amplifier to output amplified signals by using a simple and efficient hybridization chain reaction. Unique from those who are multicomponent systems, Apt-SLP is an all-in-one compact DNA nanodevice, exhibiting an enhanced nuclease-degradation resistance and targeting ability. In vitro feasibility, cell imaging, and flow cytometry analysis showed that the Apt-SLP system successfully operated under buffered solution and physiological environment and precisely differentiated the target cell from large populations of similar cells. Benefiting from its integrated design and single-step cancer cell identification with high sensitivity and accuracy, the Apt-SLP system is a practical tool in personalized medicine and biomedical engineering.

摘要

在复杂生理环境下准确识别癌细胞对非侵入性诊断和个性化医疗具有巨大潜力。在此,我们通过将DNA细胞分类器(DCC)与自供电信号放大器(SSA)相结合,开发了基于双适体的DNA逻辑门控串联灯探针(Apt-SLP),能够快速、灵敏地识别血液样本中的癌细胞。DCC具有两个基于延伸适体的模块,用于识别两种级联细胞膜受体,并作为DNA逻辑门,从大量相似细胞中精确找出特定且狭窄的细胞亚群。DCC利用双受体共识别策略,通过在细胞膜上对适体和受体进行两次匹配操作,增强细胞识别的特异性。SSA是连接在DCC末端的信号转换器,它将细胞识别过程转化为可检测信号,同时也是一个信号放大器,通过简单高效的杂交链式反应输出放大信号。与那些多组分系统不同,Apt-SLP是一种一体化的紧凑型DNA纳米器件,具有增强的核酸酶降解抗性和靶向能力。体外可行性、细胞成像和流式细胞术分析表明,Apt-SLP系统在缓冲溶液和生理环境下成功运行,并能从大量相似细胞中精确区分出目标细胞。得益于其集成设计和单步癌细胞识别的高灵敏度和准确性,Apt-SLP系统是个性化医疗和生物医学工程中的一种实用工具。

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