Nanoplasmonic On-Chip PCR for Rapid Precision Molecular Diagnostics

Наноплазмонная ПЦР на чипе для быстрой прецизионной молекулярной диагностики
Youngseop Lee, Byoung‐Hoon Kang, Minhee Kang, Doo Ryeon Chung, Gwan‐Su Yi, Luke P. Lee, Ki‐Hun Jeong
2020-02-26

gold nanoislandsmolecular diagnosticsnanoplasmonic on-chip PCRphotothermal heatingultrafast thermal cycling
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.
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.

Nanoplasmonic on-chip PCR system based on gold nanoisland-decorated glass nanopillar arrays

Photothermally induced ultrafast thermal cycling and rapid DNA amplification for precise infectious-disease diagnostics

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2020-02-26
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Authors
Youngseop Lee
Byoung‐Hoon Kang
Minhee Kang
Doo Ryeon Chung
Gwan‐Su Yi
Luke P. Lee
Ki‐Hun Jeong
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