Prithwish Pal

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The electrophoretic transport of single-stranded DNA through biological nanopores such as alpha-hemolysin (αHL) is a promising and cost-effective technology with the potential to revolutionize genomics. The rational design of pores with the controlled polymer translocation rates and high contrast between different nucleotides could improve significantly(More)
T 55th Annual Meeting of the Biophysical Society held at Baltimore in early March was attended by over 6000 scientists from over 20 different nations. The diversity in nationality was matched by the diversity of science presented at the conference. Over the course of 5 days, more than 30 symposia and over 3000 short platform sessions and posters presented a(More)
Although significant progress has recently been made towards realizing the goal of direct nanopore based DNA sequencing [1], there are still numerous hurdles that need to be overcome. One such hurdle associated with the use of the biological nanopore α-hemolysin (αHL) is the fact that the wild type channel contains three very distinct recognition or sensing(More)
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