Nanoplasmonic On-Chip PCR for Rapid Precision Molecular Diagnostics
Наноплазмонная ПЦР на чипе для быстрой прецизионной молекулярной диагностики
2020-02-26
SCID: 54.1/avvggh9k
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gold nanoislandsmolecular diagnosticsnanoplasmonic on-chip PCRphotothermal heatingultrafast thermal cycling
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Abstract (AI)
Emerging molecular diagnosis requires ultrafast polymerase chain reaction (PCR) on chip for rapid precise detection of infectious diseases in the point-of-care test. Here, we report nanoplasmonic on-chip PCR for rapid precision molecular diagnostics. The nanoplasmonic pillar arrays (NPA) comprise gold nanoislands on the top and sidewall of large-scale glass nanopillar arrays. The nanoplasmonic pillars enhance light absorption of a white light-emitting diode (LED) over the whole visible range due to strong electromagnetic hotspots between the nanoislands. As a result, they effectively induce photothermal heating for ultrafast PCR thermal cycling. The temperature profile of NPA exhibits 30 cycles between 98 and 60 °C for a total of 3 min and 30 s during the cyclic excitation of white LED light. The experimental results also demonstrate the rapid DNA amplification of both 0.1 ng μL –1 of λ-DNA in 20 thermal cycles and 0.1 ng μL –1 of complementary DNA of Middle East respiratory syndrome coronavirus in 30 thermal cycles using a conventional PCR volume of 15 μL. This nanoplasmonic PCR technique provides a new opportunity for rapid precision molecular diagnostics.
Key Findings
1
Nanoplasmonic pillar arrays with gold nanoislands enhance broadband white-LED absorption through electromagnetic hotspots, enabling photothermal PCR heating.
2
The nanoplasmonic platform completes 30 thermal cycles between 98 and 60 °C in 3 minutes 30 seconds.
3
The platform amplifies 0.1 ng μL−1 complementary DNA from Middle East respiratory syndrome coronavirus within 30 thermal cycles.
4
The system amplifies 0.1 ng μL−1 λ-DNA within 20 thermal cycles using a conventional 15 μL PCR volume.
5
The technique enables ultrafast on-chip PCR and supports rapid precision molecular diagnostics for point-of-care infectious-disease testing.
Research Object
Nanoplasmonic on-chip PCR system based on gold nanoisland-decorated glass nanopillar arrays
Research Subject
Photothermally induced ultrafast thermal cycling and rapid DNA amplification for precise infectious-disease diagnostics
Publication Details
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2020-02-26
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