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Self-assembled silver nanoparticle-DNA on a dielectrode microdevice for determination of gynecologic tumors

机译:在偶极微电流微粒微型纳米粒子-DNA上测定妇科肿瘤

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摘要

Nanoscale materials have been employed in the past 2 decades in applications such as biosensing, therapeutics and medical diagnostics due to their beneficial optoelectronic properties. In recent years, silver nanoparticles (AgNPs) have gained attention due to their higher plasmon excitation efficiency than gold nanoparticles, as proved by sharper and stronger plasmon resonance peaks. The current work is focused on utilizing self-assembled DNA-AgNPs on microdevices for the detection of gynecological cancers. Human papilloma virus (HPV) mostly spreads through sexual transmittance and can cause various gynecological cancers, including cervical, ovarian and endometrial cancers. In particular, oncogene E7 from the HPV strain 16 (HPV-16 E7) is responsible for causing these cancers. In this research, the target sequence of HPV-16 E7 was detected by an AgNP-conjugated capture probe on a dielectrode sensor. The detection limit was in the range between 10 and 100 aM (by 3a estimation). The sensitivity of the AgNP-conjugated probe was 10 aM and similar to the sensitivity of gold nanoparticle conjugation sensors, and the mismatched control DNA failed to detect the target, proving selective HPV detection. Morphological assessments on the AgNPs and the sensing surfaces by high-resolution microscopy revealed the surface arrangement. This sensing platform can be expanded to develop sensors for the detection various clinically relevant targets.
机译:纳米级材料已在过去的二十年中雇用,例如由于其有益的光电性能,如生物腐蚀,治疗剂和医学诊断。近年来,由于其较高的等离子体激发效率而不是金纳米颗粒,银纳米颗粒(AgNPS)的注意力较高,如锐利和更强的等离子体共振峰。目前的工作专注于利用自组装的DNA-AGNP在微生物上用于检测妇科癌症。人乳头瘤病毒(HPV)主要通过性透射率传播,可引起各种妇科癌症,包括宫颈癌,卵巢和子宫内膜癌症。特别地,来自HPV菌株16的癌基因E7(HPV-16 E7)是导致这些癌症的原因。在该研究中,通过在二电极传感器上通过AgNP缀合的捕获探针检测HPV-16 E7的靶序列。检测限为10至100 AM(通过3A估计)。 AgNP缀合探针的敏感性为10M,类似于金纳米颗粒共轭传感器的敏感性,并且错配的对照DNA未能检测到靶,证明选择性HPV检测。通过高分辨率显微镜对AgNP和传感表面的形态学评估显示了表面布置。可以扩展该传感平台以开发用于检测各种临床相关目标的传感器。

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  • 来源
    《Biomedical Microdevices》 |2020年第4期|67.1-67.8|共8页
  • 作者单位

    Department of Gynecology Hanzhong Central Hospital Hanzhong City 723000 Shaanxi Province China;

    Faculty of Chemical Engineering Technology Universiti Malaysia Perlis 02600 Arau Perlis Malaysia Institute of Nano Electronic Engineering Universiti Malaysia Perlis 01000 Kangar Perlis Malaysia;

    Institute of Nano Electronic Engineering Universiti Malaysia Perlis 01000 Kangar Perlis Malaysia;

    Department of Biological Engineering College of Engineering Inha University Incheon 402-751 Republic of Korea;

    Mechanical Engineering Department Universiti Teknologi PETRONAS 32610 Seri Iskandar Perak Darul Ridzuan Malaysia;

    Department of Laboratory The Second People's Hospital of Lianyungang Lianyungang 222000 Jiangsu China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DNA sensor; Cervical cancer; Interdigitated electrode sensor; Human papilloma virus;

    机译:DNA传感器;宫颈癌;interdigated电极传感器;人乳头瘤病毒;

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