An electrochemiluminescence resonance energy transfer biosensor for the detection of circulating tumor DNA from blood plasma
A liquid biopsy is a noninvasive approach for detecting double-stranded circulating tumor DNA (ctDNA) of 90–320 nucleotides in blood plasma from patients with cancer. Most techniques employed for ctDNA detection are time consuming and require expensive DNA purification kits. Electrochemiluminescence...
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Veröffentlicht in: | iScience 2021-09, Vol.24 (9), p.103019, Article 103019 |
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Sprache: | eng |
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Zusammenfassung: | A liquid biopsy is a noninvasive approach for detecting double-stranded circulating tumor DNA (ctDNA) of 90–320 nucleotides in blood plasma from patients with cancer. Most techniques employed for ctDNA detection are time consuming and require expensive DNA purification kits. Electrochemiluminescence resonance energy transfer (ECL-RET) biosensors exhibit high sensitivity, a wide response range, and are promising for straightforward sensing applications. Until now, ECL-RET biosensors have been designed for sensing short single-stranded oligonucleotides of less than 45 nucleotides. In this work, an ECL-RET biosensor comprising graphitic carbon nitride quantum dots was assessed for the amplification-free detection in the blood plasma of DNA molecules coding for the EGFR L858R mutation, which is associated with non-small-cell lung cancer. Following a low-cost pre-treatment, the highly specific ECL-RET biosensor quantified double-stranded EGFR L858R DNA of 159 nucleotides diluted into the blood within a linear range of 0.01 fM to 1 pM, demonstrating its potential for noninvasive biopsies.
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•An ECL-RET biosensor with g-CNQDs was developed for liquid biopsies of ctDNA•The biosensor detected DNA molecules coding for the lung cancer EGFR L858R mutation•EGFR L858R DNA molecules of 18 and 159 nucleotides activated the biosensor•The biosensor detected ctDNA-like EGFR L858R molecules diluted in blood plasma
Sensor; Optical imaging; Biomolecules |
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ISSN: | 2589-0042 2589-0042 |
DOI: | 10.1016/j.isci.2021.103019 |