Recombinant maxi-K channels on transistor, a prototype of iono-electronic interfacing (original) (raw)

References

  1. Hille, B. Ionic channels of excitable membranes. (Sinauer, Sunderland; 1992).
    Google Scholar
  2. Scheller, F.W., Schubert, F. & Fedrowitz, H. (eds) Frontiers in biosensorics. (Birkhäuser, Berlin;1996).
    Book Google Scholar
  3. Fromherz, P. Extracellular recording with transistors and the distribution of ionic conductances in a cell membrane. Eur. Biophys. J. 28, 254–258 (1999).
    Article CAS Google Scholar
  4. Fromherz, P., Offenhäusser, A., Vetter, T. & Weis. J. A neuron-silicon junction: a Retzius cell of the leech on an insulated-gate field-effect transistor. Science 252, 1290–1293 (1991).
    Article CAS Google Scholar
  5. Weis, R. & Fromherz, P. Frequency dependent signal transfer in neuron-transistors. Phys. Rev. E 55, 877–889 (1997).
    Article Google Scholar
  6. Schätzthauer, R. & Fromherz, P. Neuron-silicon junction with voltage-gated ionic currents. Eur. J. Neurosci. 10, 1956–1962 (1998).
    Article Google Scholar
  7. Vassanelli, S. & Fromherz, P. Transistor probes local K+ conductances in the adhesion region of cultured rat hippocampal neurons. J. Neurosci. 19, 6767–6773 (1999).
    Article CAS Google Scholar
  8. Zhu, G., Zhang, Y., Xu, H. & Jiang, C. Identification of endogenous outward currents in the human embryonic kidney (HEK 293) cell line. J. Neurosci. Methods 81, 73–83 (1998).
    Article CAS Google Scholar
  9. Tseng-Crank, J. et al. Cloning, expression, and distribution of functionally distinct Ca2+-activated K+ channel isoforms from human brain. Neuron 13, 1315–1330 (1994).
    Article CAS Google Scholar
  10. DiChiara, T.J. & Reinhart, P.H. Distinct effects of Ca2+ and voltage on the activation and deactivation of cloned Ca2+-activated K+ channels. J. Physiol. (Lond.) 489, 403–418 (1995).
    Article CAS Google Scholar
  11. DiChiara, T.J. & Reinhart, P.H. Redox modulation of hSlo Ca2+-activated K+ channels. J. Neurosci. 17, 4942–4955 (1997).
    Article CAS Google Scholar
  12. Meera, P., Wallner, M., Song, M. & Toro, L. Large conductance voltage- and calcium-dependent K+ channel, a distinct member of voltage-dependent ion channels with seven N-terminal transmembrane segments (S0–S6), an extracellular N-terminus, and an intracellular (S9–S10) C-terminus. Proc. Natl. Acad .Sci. USA 94, 14066–14071 (1997).
    Article CAS Google Scholar
  13. Ahring, P.K., Strobaek, D., Christophersen, P., Olesen, S.P. & Johansen, T.E. Stable expression of the human large-conductance Ca2+ activated K+ channel α and β subunits in HEK293 cells. FEBS Lett. 415, 67–70 (1997).
    Article CAS Google Scholar
  14. Valverde, M.A. et al. Acute activation of maxi-K channels (hSlo) by estradiol binding to the β subunit. Science 285, 1929–1931 (1999).
    Article CAS Google Scholar
  15. Rentschler, M. & Fromherz, P. Membrane-transistor cable. Langmuir 14, 547–551 (1998).
    Article CAS Google Scholar
  16. Kiessling, V., Müller, B. & Fromherz, P. Extracellular resistance in cell adhesion measured with a transistor probe. Langmuir 16, 3517–3521 (2000).
    Article CAS Google Scholar
  17. Hamill, O.P., Marty, A., Neher, E., Sakmann, B. & Sigworth, F.J. Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches. Pflügers Arch. 391, 85–100 (1981).
    Article CAS Google Scholar
  18. Sakmann, B. & Neher, E. (eds) Single channel recording. (Plenum Press, New York; 1995).
    Book Google Scholar
  19. Lambacher, A. & Fromherz, P. Fluorescence interference-contrast microscopy on oxidized silicon using a monomolecular dye layer. Appl. Phys. A 63, 207–216 (1996).
    Article Google Scholar
  20. Braun, D. & Fromherz, P. Fluorescence interferometry of neuronal cell adhesion on microstructured silicon. Phys. Rev. Lett. 81, 5241–5244 (1998).
    Article CAS Google Scholar
  21. Hirokawa, N. & Heuser, J.E. Internal and external differentiations of the postsynaptic membrane at the neuromuscular junction. J. Neurocytol. 11, 487–510 (1982).
    Article CAS Google Scholar

Download references