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基于 LAMP 的电化学平台,用于监测与宫颈癌进展风险较高相关的 HPV 基因组整合的 mRNA 水平。

LAMP-based electrochemical platform for monitoring HPV genome integration at the mRNA level associated with higher risk of cervical cancer progression.

机构信息

Research Centre for Applied Molecular Oncology, Masaryk Memorial Cancer Institute, Brno, Czech Republic.

National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, Czech Republic.

出版信息

J Med Virol. 2024 Oct;96(10):e70008. doi: 10.1002/jmv.70008.

DOI:10.1002/jmv.70008
PMID:39420658
Abstract

Human papillomaviruses (HPVs) represent a diverse group of double-stranded DNA viruses associated with various types of cancers, notably cervical cancer. High-risk types of HPVs exhibit their oncogenic potential through the integration of their DNA into the host genome. This integration event contributes significantly to genomic instability and the progression of malignancy. However, traditional detection methods, such as immunohistochemistry or PCR-based assays, face inherent challenges, and thus alternative tools are being developed to fasten and simplify the analysis. Our study introduces an innovative biosensing platform that combines loop-mediated amplification with electrochemical (EC) analysis for the specific detection of HPV16 integration. By targeting key elements like the E7 mRNA, a central player in HPV integration, and the E2 viral gene transcript lost upon integration, we show clear distinction between episomal and integrated forms of HPV16. Our EC data confirmed higher E7 expression in HPV16-positive cell lines having integrated forms of viral genome, while E2 expression was diminished in cells with fully integrated genomes. Moreover, we revealed distinct expression patterns in cervical tissue of patients, correlating well with digital droplet PCR, qRT-PCR, or immunohistochemical staining. Our platform thus offers insights into HPV integration in clinical samples and facilitates further advancements in cervical cancer research and diagnostics.

摘要

人乳头瘤病毒(HPV)是一组具有多种双链 DNA 病毒,与各种癌症有关,尤其是宫颈癌。高危型 HPV 通过将其 DNA 整合到宿主基因组中,表现出其致癌潜能。这种整合事件对基因组不稳定性和恶性进展有重大贡献。然而,传统的检测方法,如免疫组织化学或基于 PCR 的检测,面临着固有挑战,因此正在开发替代工具以加速和简化分析。我们的研究介绍了一种创新的生物传感平台,该平台将环介导扩增与电化学(EC)分析相结合,用于 HPV16 整合的特异性检测。通过针对 HPV 整合的关键要素,如 E7 mRNA 和整合后丢失的 E2 病毒基因转录本,我们在 HPV16 的游离和整合形式之间显示出明显的区别。我们的 EC 数据证实,在具有整合形式病毒基因组的 HPV16 阳性细胞系中,E7 表达更高,而在具有完全整合基因组的细胞中,E2 表达减少。此外,我们在患者的宫颈组织中揭示了不同的表达模式,与数字液滴 PCR、qRT-PCR 或免疫组织化学染色很好地相关。因此,我们的平台为 HPV 在临床样本中的整合提供了深入了解,并促进了宫颈癌研究和诊断的进一步发展。

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LAMP-based electrochemical platform for monitoring HPV genome integration at the mRNA level associated with higher risk of cervical cancer progression.基于 LAMP 的电化学平台,用于监测与宫颈癌进展风险较高相关的 HPV 基因组整合的 mRNA 水平。
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