Advancements and Future Predictions on Diagnostic Approaches towards Cervical Cancer through Nanotechnology-Based Sensors for the Detection of Human Papillomavirus

S. Pareek, U. Jain, Mayukh Tikadar, Prabhanshu Kumar, R. Pudake, N. Chauhan
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Abstract

Cervical cancer has the highest mortality rate worldwide. In the quest for reducing such a high mortality rate, advancements in diagnosis as well as treatment are being undertaken at various scales across the globe. With the recent advancements in the applications of nanotechnology, simple, rapid and inexpensive diagnostic methods for cervical cancer, i.e., human papillomavirus (HPV), especially high-risk oncogenic subtypes 16 and 18 have started to gain attention of health care practitioners. This review outlines the current applications of biosensors for the diagnosis of HPV, as compared to the conventional techniques for measuring HPV that have some limitations. The traditional methods used for cervix cancer are less sensitive, whereas nanotechnology has greatly improved the sensitivity. Due to cancer incidence and mortality growing rapidly worldwide, the prevalence and risk factors are also discussed in this review.
基于纳米技术的人乳头瘤病毒传感器检测宫颈癌诊断方法的进展和未来预测
宫颈癌是世界上死亡率最高的疾病。为了降低如此高的死亡率,全球各地正在不同程度上提高诊断和治疗水平。随着近年来纳米技术应用的进步,宫颈癌,即人乳头瘤病毒(HPV),特别是高风险致癌亚型16和18的简单、快速和廉价的诊断方法已开始引起保健医生的注意。这篇综述概述了目前生物传感器在HPV诊断中的应用,与传统的HPV测量技术相比,这些技术有一些局限性。传统的宫颈癌检测方法灵敏度较低,而纳米技术大大提高了检测灵敏度。由于世界范围内癌症发病率和死亡率的快速增长,本文还讨论了癌症的流行和危险因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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