2009
A DNA nanomachine that maps spatial and temporal pH changes inside living cells
Nature Nanotechnology 4 (5), 325–330. PubMed
2011
An autonomous DNA nanomachine maps spatiotemporal pH changes in a multicellular living organism
Nature Communications 2 (1), 340. PubMed
2012
Two DNA nanomachines map pH changes along intersecting endocytic pathways inside the same cell
Nature Nanotechnology 8 (6), 459. PubMed
2015
A pH-independent DNA nanodevice for quantifying chloride transport in organelles of living cells
Nature Nanotechnology 10 (7), 645–651. Nature
2017
High lumenal chloride in the lysosome is critical for lysosome function
eLife 6, e28862. PubMed
2019
A DNA nanomachine chemically resolves lysosomes in live cells
Nature Nanotechnology 14 (2), 176–183. Nature
2019
A pH-correctable, DNA-based fluorescent reporter for organellar calcium
Nature Methods 16 (1), 95–102. PubMed
2019
A DNA-based fluorescent reporter maps HOCl production in the maturing phagosome
Nature Chemical Biology 15 (12), 1165–1172. PubMed
2019
DNA nanodevices map enzymatic activity in organelles
Nature Nanotechnology 14 (3), 252–259. Nature
2019
Visualization of calcium ion loss from rotavirus during cell entry
Journal of Virology 92 (24), e01327-18. PubMed
2020
DNA-based fluorescent probes of NOS2 activity in live brains
PNAS 117 (26), 14694–14702. PubMed
2021
A DNA-based voltmeter for organelles
Nature Nanotechnology 16, 96–103. Nature
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