Yang Yuqi, Huang Qiong, Xiao Zuoxiu, Liu Min, Zhu Yan, Chen Qiaohui, Li Yumei, Ai Kelong
Department of Pharmacy, Xiangya Hospital, Central South University, Changsha, Hunan, 410008, PR China.
National Clinical Research Center for Geriatric Disorders, Xiangya Hospital, Central South University, Changsha, Hunan, 410008, PR China.
Mater Today Bio. 2022 Feb 15;13:100218. doi: 10.1016/j.mtbio.2022.100218. eCollection 2022 Jan.
The grand challenges of ovarian cancer early diagnosis have led to an alarmingly high mortality rate from ovarian cancer (OC) in the past half century. In vitro diagnosis (IVD) has great potential in the early diagnosis of OC through non-invasive and dynamic analysis of biomarkers. However, common IVDs often fail to provide reliable test results due to lack of sensitivity, specificity, and convenience. In recent years, the discovery of new biomarkers and the progress of nanomaterials can solve the shortcomings of traditional IVD for early OC. These emerging biosensors based on nanomaterials offer great improvements in convenience, speed, selectivity, and sensitivity of IVD. In this review, we firstly systematically summarized the limits of commercial IVD biosensors of OC and the latest discovery of new biomarkers for OC. The representative optimization strategies for six potential ovarian cancer biomarkers are systematically discussed with emphasis on nanomaterial selection and the design of detection principles. Then, various strategies adopted by emerging biosensors based on nanomaterials are also introduced in detail, including optical, electrochemical, microfluidic, and surface plasmon sensors. Finally, current challenges of early OC IVD are proposed, and future research directions on this promising field are also discussed.
卵巢癌早期诊断面临的巨大挑战导致在过去半个世纪中卵巢癌(OC)的死亡率高得惊人。体外诊断(IVD)通过对生物标志物进行非侵入性和动态分析,在OC早期诊断中具有巨大潜力。然而,由于缺乏敏感性、特异性和便利性,常见的IVD往往无法提供可靠的检测结果。近年来,新生物标志物的发现和纳米材料的进展能够解决传统IVD在OC早期诊断方面的不足。这些基于纳米材料的新型生物传感器在IVD的便利性、速度、选择性和敏感性方面有了很大改进。在本综述中,我们首先系统总结了OC商业IVD生物传感器的局限性以及OC新生物标志物的最新发现。系统讨论了六种潜在卵巢癌生物标志物的代表性优化策略,重点是纳米材料的选择和检测原理的设计。然后,还详细介绍了基于纳米材料的新型生物传感器所采用的各种策略,包括光学、电化学、微流控和表面等离子体传感器。最后,提出了OC早期IVD当前面临的挑战,并讨论了这一有前景领域未来的研究方向。