| Literature DB >> 34041910 |
Jingyue Xu1,2, Xue Qiu3,4, Niko Hildebrandt1,2.
Abstract
Isothermal nucleic acid amplification strategies have been combined with nanotechnology for advanced biosensing, material design, and biomedical applications. However, merging phenomena and materials of different nanoscales with the aim of exploiting all their benefits at once has remained a challenging endeavor. Here, we exemplify the various problems one can encounter when combining the nanodimensions of lanthanide complexes (∼2 nm), Förster resonance energy transfer (FRET, ∼5 nm), quantum dots (QDs, ∼20 nm), and rolling circle amplification (RCA, ∼250 nm) into a single microRNA biosensor and how these challenges can be overcome. Six different approaches, including simple FRET-RCA, enzyme-digesting FRET-RCA, and FRET-hyperbranched-RCA were investigated. We demonstrated specific miR-21 detection with 80 fM limit of detection and multiplexing capability with FRET from a Tb complex to different QDs. The detailed view on the various complex multi-nanodimensional assay systems elucidated the limited clinical translation of such sophisticated multicomponent nanobiosensors.Entities:
Keywords: diagnostics; miRNA; quantum dots; rolling circle amplification; terbium
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Year: 2021 PMID: 34041910 DOI: 10.1021/acs.nanolett.1c01351
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189