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一种用于检测骨肉瘤标志物蛋白的生物催化肽生物传感分子桥。

A biocatalytic peptidobiosensing molecular bridge for detecting osteosarcoma marker protein.

作者信息

Jing Pengwei, Wang Ying, Sun Weixue, Li Guishi, Zhang Zuofu, Xu Qiang, Li Hao

机构信息

Articulation Surgery and Sport Medicine Ward, Yantai Yuhuangding Hospital, Yantai, China.

Department of Otolaryngology Head and Neck Surgery, Yantai Yuhuangding Hospital, Yantai, China.

出版信息

Front Chem. 2023 Jan 12;10:1112111. doi: 10.3389/fchem.2022.1112111. eCollection 2022.

Abstract

A biosensing scheme requiring only one-step sample incubation before signal collection, and using a compact "three-in-one" probe of target-binding, signal conversion, and amplification, may greatly simplify the design of biosensors. Therefore, sparing the multi-step addition of enzymes, protein, and nanomaterial, as well as the associated complexity and non-specific interactions. In this work, a peptide probe aimed at such compact features has been designed, based on protein-triggered, conformation-driven, and Cu (II) facilitated side-chain di-tyrosine cyclization. This design can use target-probe recognition to induce discriminated cross-linking and self-cleavage of the probe, resulting in retention or dissociation of a signal amplification motif from the search and consequently quantitative detection performance. The method has also been tested preliminarily in fractioned osteosarcoma clinical samples, showing an acceptable coherence between signal readout and clinical diagnosis. On the basis of these early findings, it is reasonable to assume that the proposed probe will be beneficial for the next development of tumor screening and prognosis sensors.

摘要

一种生物传感方案,在信号采集前仅需一步样品孵育,并使用紧凑的“三合一”探针进行靶标结合、信号转换和放大,这可能会大大简化生物传感器的设计。因此,无需多步添加酶、蛋白质和纳米材料,以及相关的复杂性和非特异性相互作用。在这项工作中,基于蛋白质触发、构象驱动和铜(II)促进的侧链二酪氨酸环化,设计了一种具有这种紧凑特征的肽探针。这种设计可以利用靶标-探针识别来诱导探针的特异性交联和自切割,从而导致信号放大基序与搜索元件的保留或解离,进而实现定量检测性能。该方法也已在骨肉瘤临床样本中进行了初步测试,结果表明信号读数与临床诊断之间具有可接受的一致性。基于这些早期发现,可以合理地假设所提出的探针将有利于肿瘤筛查和预后传感器的进一步发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1ea/9877232/2fa85134da2a/FCHEM_fchem-2022-1112111_wc_sch1.jpg

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