Nano-pore Lipid Bilayer Formed by Self-spreading Method

Author:

Peng Zugui1,Shimba Kenta2,Miyamoto Yoshitaka1,Yagi Tohru1

Affiliation:

1. School of Engineering Department of Mechanical Engineering, Tokyo Institute of Technology

2. School of Engineering, The University of Tokyo

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering

Reference18 articles.

1. (1) A. Korgh, B. Larsson, G. Von Heijne, and E. L. L. Sonnhammer : “Predicting transmembrane protein topology with a hidden Markov model: Application to complete genomes”, J. Mol. Catal., Vol. 305, No. 3, pp. 567-580 (2001)

2. (2) M. Rask-Andersen, M. S. Almén, and H. B. Schiöth : “Trends in the exploitation of novel drug targets”, Nat. Rev. Drug. Discovery, Vol. 10, No. 8, pp. 579-590 (2011)

3. (3) G. Favero, L. Campanella, S. Cavallo, A. D'Anniebale, M. Perrella, E. Mattei, and T. Ferri : “Glutamate receptor incorporated in a mixed hybrid bilayer lipid membrane array, as a sensing element of a biosensor working under flowing conditions”, J. Am. Chem. Soc., Vol. 127, No. 22, pp. 8103-8111 (2005)

4. (4) W. Romer and C. Steinem : “Impedance Analysis and Single-Channel Recordings on Nano-Black Lipid Membranes Based on Porous Alumina”, Biophys. J., Vol. 107, pp. 11245-11254 (2003)

5. (5) Z. Zhu, Y. Wang, X. Zhang, C. Sun, M. Li, J. Yan, and B. Mao : “Electrochemical Impedance Spectroscopy and Atomic Force Microscopic Studies of Electrical and Mechanical Properties of Nano-Black Lipid Membranes and Size Dependence”, Langmuir., Vol. 28, No. 41, pp. 14739-14746 (2012)

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