Anal Chem 2008, 80:4651–4658 CrossRef 29 Fologea D, Ledden B, Mc

Anal Chem 2008, 80:4651–4658.CrossRef 29. Fologea D, Ledden B, McNabb DS, Li J: Electrical characterization of signaling pathway protein molecules by a solid-state nanopore. Appl Phys Lett 2007, 91:539011.CrossRef 30. Hyun C, Kaur H, Rollings R, Xiao M, Li J: Threading immobilized DNA molecules through a LY3039478 solid-state nanopore at >100 μs per base rate. ACS Nano 2013, 7:5892–5900.CrossRef 31. Niedzwiecki DJ, Grazul J, Movileanu L: Single-molecule

observation of protein adsorption onto an inorganic surface. J Am Chem Soc 2010, 132:10816–10822.CrossRef 32. Sexton LT, Mukaibo H, Katira P, Hess H, Sherrill SA, Horne LP, Martin CR: An adsorption-based model for pulse duration in resistive-pulse protein sensing. J Am Chem Soc 2010, 132:6755–6763.CrossRef 33. Tsutsui M, He Y, Furuhashi M, Rahong S, Taniguchi M, Kawai T: Transverse electric field dragging of DNA in a nanochannel. Sci Rep 2012, 2:394. 34. Yeh LH, Fang KY, Hsu JP, Tseng S: Influence of boundary

on the effect of double-layer polarization and the electrophoretic behavior of soft biocolloids. Colloids Surf B: Biointerfaces 2011, 88:559–567.CrossRef 35. Wanunu M, Morrison W, Rabin Y, Grosberg AY, Meller A: Electrostatic focusing of unlabelled DNA into nanoscale pores using a salt gradient. Nat Nanotechnol 2010, 5:160–165.CrossRef selleck chemicals llc 36. Jiang DE, Jin Z, Wu J: Oscillation of capacitance inside nanopores. Nano Lett 2011, 11:5373–5377.CrossRef 37. Luan B, Stolovitzky G: An electro-hydrodynamics-based model for the ionic conductivity of solid-state nanopores during DNA translocation. Nanotechnology 2013, 24:195702.CrossRef Tideglusib 38. Kocer A, Tauk L, Dejardin P: Nanopore sensors: from hybrid to abiotic systems. Biosens Bioelectron 2012, 38:1–10.CrossRef 39. Liu L, Zhu LZ, Ni ZH, Chen YF: Detecting a single molecule using a micropore-nanopore hybrid chip. Nanoscale Res Lett 2013, 8:498.CrossRef 40. Liu Q, Wu H, Wu L, Xie X, Kong J, Ye X, Liu L: Voltage-driven translocation of DNA through

a high throughput conical solid-state nanopore. PLoS One 2012, 7:e46014.CrossRef 41. Hall AR, van Dorp S, Lemay SG, Dekker C: Electrophoretic force on a protein-coated DNA molecule in a solid-state nanopore. Nano Lett 2009, 9:4441–4445.CrossRef 42. Yusko EC, Johnson JM, Majd S, Prangkio P, Rollings RC, Li J, Yang J, Mayer M: Controlling protein translocation through nanopores with bio-inspired fluid walls. Nat Nanotechnol 2011, 6:253–260.CrossRef 43. Yeh LH, Zhang M, Qian S: Ion transport in a pH-regulated nanopore. Anal Chem 2013, 85:7527–7534.CrossRef 44. Gershow M, Golovchenko JA: Recapturing and trapping single molecules with a solid-state nanopore. Nat Nanotechnol 2007, 2:775–779.CrossRef 45. Smeets RMM, Keyser UF, Dekker NH, Dekker C: Noise in solid-state nanopores. PNAS 2008, 105:417–421.CrossRef 46.

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