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基于聚吡咯薄膜和石墨烯量子点的纳米结构基因传感器平台用于检测高危型人乳头瘤病毒。

Nanostructured genosensor platform based on polypyrrole film and graphene quantum dots for the detection of high-risk HPV.

作者信息

Santos Luiza G T, Silva-Junior Alberto G, Costa Maurília P, Avelino Karen Y P S, Lucena-Silva Norma, Andrade Cesar A S, Oliveira Maria D L

机构信息

Programa de Pós-Graduação em Inovação Terapêutica, Universidade Federal de Pernambuco, Recife, PE 50670-901, Brazil; Laboratório de Biodispositivos Nanoestruturados, Departamento de Bioquímica, Universidade Federal de Pernambuco, Recife, PE 50670-901, Brazil.

Departamento de Imunologia-Instituto Aggeu Magalhaes-Fiocruz, Recife, PE 50670-420, Brazil.

出版信息

J Pharm Biomed Anal. 2025 Sep 15;263:116920. doi: 10.1016/j.jpba.2025.116920. Epub 2025 Apr 24.

Abstract

Human Papillomavirus (HPV) is a globally prevalent infection that contributes to both benign and malignant diseases. While low-risk HPV types cause warts, high-risk strains are linked to cervical cancer and other malignancies. The most prevalent HPV subtypes, HPV 16 and 18, are accountable for over 70 % of cervical cancer cases globally. The virus poses a significant public health burden, particularly in low-resource settings. The electrochemical genosensor stands out as a promising tool for detecting and screening HPV and other cancer-related viruses. For this reason, we developed an electrochemical genosensor for the detection of high-risk HPV. A nanostructured electropolymerized polypyrrole (PPy) film and graphene quantum dots (GQD) were designed for the immobilization of the HPV MY09 probe. The sensing platform was characterized using cyclic voltammetry (CV) and atomic force microscopy (AFM) to evaluate biological samples of cDNA from infected patients. Topographical analysis revealed increased peaks and roughness regarding the hybridization process between the sensing platform and patient samples. Electrochemically, the proposed biosensor exhibited a sensitive response to recombinant plasmid and cDNA samples, revealing a limit of detection (LOD) of 0.62 pg/mL and 0.85 pg/mL for plasmid and cDNA samples, respectively. Moreover, the genosensor presented excellent selectivity over negative patient samples and interfering molecules. Therefore, our results highlight the ability of the PPy-GQD-MY09probe-BSA genosensor platform to detect different HPV genotypes, displaying a higher affinity for HPV 16 and 18. The developed sensor strategy stands out as a promising tool for HPV diagnosis and follow-up treatment.

摘要

人乳头瘤病毒(HPV)是一种全球流行的感染源,可引发良性和恶性疾病。低风险HPV类型会导致疣,而高风险毒株则与宫颈癌和其他恶性肿瘤有关。最常见的HPV亚型HPV 16和18,在全球超过70%的宫颈癌病例中起作用。该病毒构成了重大的公共卫生负担,尤其是在资源匮乏地区。电化学基因传感器是检测和筛查HPV及其他癌症相关病毒的一种很有前景的工具。因此,我们开发了一种用于检测高风险HPV的电化学基因传感器。设计了一种纳米结构的电聚合聚吡咯(PPy)膜和石墨烯量子点(GQD)来固定HPV MY09探针。使用循环伏安法(CV)和原子力显微镜(AFM)对传感平台进行表征,以评估感染患者的cDNA生物样本。形貌分析显示,传感平台与患者样本之间的杂交过程中峰值和粗糙度增加。在电化学方面,所提出的生物传感器对重组质粒和cDNA样本表现出灵敏响应,质粒和cDNA样本的检测限(LOD)分别为0.62 pg/mL和0.85 pg/mL。此外,该基因传感器对阴性患者样本和干扰分子具有出色的选择性。因此,我们的结果突出了PPy-GQD-MY09探针-BSA基因传感器平台检测不同HPV基因型的能力,对HPV 16和18表现出更高的亲和力。所开发的传感器策略是HPV诊断和后续治疗的一种很有前景的工具。

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