School of Materials Science and Engineering, and Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Sun Yat-sen University, Guangzhou, 510006, People's Republic of China.
Zhang Dayu School of Chemistry, Dalian University of Technology, Dalian, 116024, People's Republic of China.
ACS Nano. 2023 Nov 14;17(21):21935-21946. doi: 10.1021/acsnano.3c08315. Epub 2023 Nov 3.
Noninvasive testing and continuous monitoring of ultralow-concentration hormones in biofluids have attracted increasing interest for health management and personalized medicine, in which saliva could fulfill the demand. Steroid sex hormones such as progesterone (P4) and β-estradiol (E2) are crucial for female wellness and reproduction; however, their concentrations in saliva can vary down to sub-pM and constantly fluctuate over several orders of magnitude. This remains a major obstacle toward user-friendly and reliable monitoring at home with low-cost flexible biosensors. Herein we introduce a 3D micropyramidal electrode architecture to address such challenges and achieve an ultrasensitive flexible electrochemical immunosensor with sub-fM-level detection capability of salivary sex hormones within a few minutes. This is enabled by micropyramidal electrode arrays consisting of a poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) (PEDOT:PSS) thin film as the coating layer and electrochemically decorated gold nanoparticles (AuNPs) to improve the antibody immobilization. The enhanced mass transport around the 3D tips provided by the micropyramidal architecture is discovered to improve the detection limit by 3 orders of magnitude, pushing it to as low as ∼100 aM for P4 and ∼20 aM for E2, along with a wide linear range up to μM. Accordingly, these hormones down to sub-fM in >1000-fold-diluted saliva samples can be accurately measured by the printed soft immunosensors, thus allowing at-home testing through simple saliva dilution to minimize the interfering substances instead of centrifugation. Finally, monitoring of the female ovarian hormone cycle of both P4 and E2 is successfully demonstrated based on the centrifuge-free saliva testing during a period of 4 weeks. This ultrasensitive and soft 3D microarchitected electrode design is believed to provide a universal platform for a diverse variety of applications spanning from accurate clinical diagnostics and counselling and detection of bioactive species to environmental and food quality tracing.
非侵入性检测和生物流体中超低浓度激素的连续监测越来越受到健康管理和个性化医疗的关注,而唾液可以满足这一需求。甾体性激素,如孕酮(P4)和β-雌二醇(E2),对女性健康和生殖至关重要;然而,它们在唾液中的浓度可低至亚皮摩尔(pM),并在几个数量级范围内不断波动。这仍然是一个主要障碍,阻碍了使用低成本柔性生物传感器在家中进行用户友好和可靠的监测。在这里,我们引入了一种 3D 微金字塔电极结构来解决这些挑战,并实现了一种超灵敏的柔性电化学免疫传感器,可在几分钟内检测唾液中的性荷尔蒙,检测限达到亚皮摩尔(fM)级。这是通过由聚(3,4-亚乙基二氧噻吩):聚(4-苯乙烯磺酸盐)(PEDOT:PSS)薄膜作为涂层和电化学修饰的金纳米颗粒(AuNPs)组成的微金字塔电极阵列来实现的,以提高抗体固定化效率。发现 3D 尖端周围增强的传质,将检测限提高了 3 个数量级,使 P4 的检测限低至约 100aM,E2 的检测限低至约 20aM,线性范围宽达μM。因此,通过简单的唾液稀释进行家庭测试,可以准确测量稀释 1000 倍以上的唾液样本中的这些激素,从而达到亚皮摩尔(fM)水平,同时可以尽量减少干扰物质,而无需离心。最后,在 4 周的时间内,通过无需离心的唾液测试成功地实现了对女性卵巢激素周期中 P4 和 E2 的监测。这种超灵敏和柔软的 3D 微架构电极设计有望为各种应用提供一个通用平台,涵盖从精确的临床诊断和咨询到生物活性物质的检测,再到环境和食品安全的追踪。