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Methods in Molecular Biology (Clifton, N.J.)|June 16, 2011
A method to map spatiotemporal pH changes inside living cells using a pH-triggered DNA nanoswitchSouvik Modi, Yamuna Krishnan
Cell Calcium|October 24, 2022
The evolution of organellar calcium mapping technologiesMatthew Zajac, Souvik Modi, Yamuna Krishnan
Chemical Communications (Cambridge, England)|April 11, 2008
The RNA2-PNA2 hybrid i-motif-a novel RNA-based building blockSaikat Chakraborty, Souvik Modi, Yamuna Krishnan
Nucleic Acids Research|August 29, 2006
The PNA-DNA hybrid I-motif: implications for sugar-sugar contacts in i-motif tetramerizationSouvik Modi, Ajazul Hamid Wani, Yamuna Krishnan
Nanoscale|December 4, 2013
Recombinant antibody mediated delivery of organelle-specific DNA pH sensors along endocytic pathwaysSouvik Modi, Saheli Halder, Clément Nizak, et al.
Nature Nanotechnology|May 28, 2013
Two DNA nanomachines map pH changes along intersecting endocytic pathways inside the same cellSouvik Modi, Clément Nizak, Sunaina Surana, et al.
Nature Nanotechnology|May 8, 2009
A DNA nanomachine that maps spatial and temporal pH changes inside living cellsSouvik Modi, Swetha M G, Debanjan Goswami, et al.
Methods in Molecular Biology (Clifton, N.J.)|April 3, 2013
A method to map spatiotemporal pH changes in a multicellular living organism using a DNA nanosensorSunaina Surana, Yamuna Krishnan
Chemical Society Reviews|October 24, 2006
First blueprint, now bricks: DNA as construction material on the nanoscaleSethuramasundaram Pitchiaya, Yamuna Krishnan
Nucleic Acids Research|September 22, 2017
A structural map of oncomiR-1 at single-nucleotide resolutionSaikat Chakraborty, Yamuna Krishnan
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