环介导等温扩增
核酸
荧光素酶
生物发光
热稳定性
DNA
化学
生物化学
分子生物学
分子信标
寡核苷酸
组合化学
基质(水族馆)
分子探针
生物传感器
核酸热力学
杂交探针
核酸法
生物物理学
重组酶聚合酶扩增
化学发光
插层(化学)
核酸检测
A-DNA
生物
锁核酸
检出限
作者
Yosta de Stigter,Harmen J. van der Veer,Sterre de Lignie,Robbert J. de Haas,Renko de Vries,Joost P. H. Schoeber,Anne J. M. Loonen,Adriaan J. C. van den Brule,Maarten Merkx
摘要
Integrated nucleic acid amplification and detection methods that can be conducted at the point of care are critical to advancing infectious disease diagnostics. We previously developed luciferase-intercalating dye conjugates ("LUMIDs") that allow for direct detection of double-stranded DNA (dsDNA) through a simple, ratiometric bioluminescent readout. However, their limited thermostability hampers integration with isothermal nucleic acid amplification methods that provide the specificity and sensitivity required for diagnostics. In this work, we re-engineered LUMID to allow for one-pot integration with loop-mediated isothermal amplification (LAMP) and real-time monitoring of DNA amplification. Luciferase activity and DNA binding were retained at LAMP temperatures (60°C-65°C) by employing a thermostable NanoLuc luciferase variant and an additional thermostable DNA binding protein. To enable continuous monitoring, we additionally introduced a caged luciferin substrate with esterase-controlled release kinetics for sustained light output. These combined advances enabled one-pot LAMP-LUMID assays to detect cancer-associated human papillomavirus (HPV) subtypes with attomolar sensitivity and within ∼ 30 min. Using a simple digital camera as readout, LAMP-LUMID demonstrated robust assay performance in patient samples, showcasing its potential as a rapid and sensitive platform for molecular diagnostics that is particularly attractive for low-resource settings.
科研通智能强力驱动
Strongly Powered by AbleSci AI