Hostname: page-component-cd9895bd7-gvvz8 Total loading time: 0 Render date: 2024-12-28T18:56:53.407Z Has data issue: false hasContentIssue false

Dynamical Heterogeneity in Supported Lipid Bilayers

Published online by Cambridge University Press:  31 January 2011

Get access

Abstract

Planar-supported phospholipid bilayers are responsive surfaces that reconstruct when macromolecules adsorb. This review outlines the phenomenon of lipid diffusion “slaved” to or significantly controlled by that of macromolecular adsorbates. To elucidate such systems, we discuss the value of spatially resolved experiments at the few-molecule level, lipid diffusion compared in outer and inner leaflets of the supported bilayer, and a simple method to minimize defects by the strategy of “electrostatic stitching.”

Type
Research Article
Copyright
Copyright © Materials Research Society 2006

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1Hooper, N.M., Mol. Membr. Biol. 16 (1999) p.145.CrossRefGoogle Scholar
2Binder, W.H., Barragan, V., and F.M. Menger, Angew. Chem. Int. Ed. 42 (2003) p.5802.CrossRefGoogle Scholar
3Cao, H., Tokutake, N., and Regen, S.L., J. Am. Chem. Soc. 125 (2003) p.16182.CrossRefGoogle Scholar
4Feigenson, G.W. and Buboltz, J.T., Biophys. J. 80 (2001) p.2775.CrossRefGoogle Scholar
5Wagner, M.L. and Tamm, L.K., Biophys. J. 81 (2001) p.266.CrossRefGoogle Scholar
6Filippov, A., Orädd, G., and Lindblom, G., Bio-phys. J. 84 (2003) p.3079.Google Scholar
7Filippov, A., Orädd, G., and Lindblom, G., Bio-phys. J. 86 (2004) p.891.Google Scholar
8Raudino, A. and Castelli, F., Macromolecules 30 (1997) p.2495.CrossRefGoogle Scholar
9Yamazaki, V., Sirenko, O., Schafer, R.J., and Groves, J.T., J.Am. Chem. Soc. 127 (2005) p.2826.CrossRefGoogle Scholar
10Yuan, Y., Velev, O.D., and Lenhoff, A.M., Langmuir 19 (2003) p.3705.CrossRefGoogle Scholar
11Krylov, A.V., Rokitskaya, T.I., Kotova, E.A., Yaroslavov, A.A., and Antonenko, Y.N., J. Membrane Biol. 189 (2002) p.119.CrossRefGoogle Scholar
12Ratto, T.V. and Longo, M.L., Langmuir 19 (2003) p.1788.CrossRefGoogle Scholar
13Ratto, T.V. and Longo, M.L., Biophys. J. 83 (2002) p.3380.CrossRefGoogle Scholar
14Deverall, M.A., Gindl, E., Sinner, E.-K., Besir, H., Ruehe, J., Saxton, M.J., and Naumann, C.A., Biophys. J. 88 (2005) p.1875.CrossRefGoogle Scholar
15Cremer, P.S., Groves, J.T., Kung, L.A., and Boxer, S.G., Langmuir 15 (1999) p.3893.CrossRefGoogle Scholar
16Thompson, N.L., Lieto, A.M., and Allen, N.W., Curr. Opin. Struc. Biol. 12 (2002) p.634.CrossRefGoogle Scholar
17Zhang, L. and Granick, S., Proc. Natl. Acad. Sci. USA 102 (2005) p.9118.CrossRefGoogle Scholar
18Eigen, M. and Rigler, R., Proc. Natl. Acad. Sci. USA 91 (1994) p.5740.CrossRefGoogle Scholar
19Stone, H.A. and Ajdari, A.J., J. Fluid Mech. 369 (1998) p.151.CrossRefGoogle Scholar
20Maier, B. and Rädler, J.O., Phys. Rev. Lett. 82 (1999) p.1911.CrossRefGoogle Scholar
21Maier, B. and Rädler, J.O., Macromolecules 33 (2000) p.7185.CrossRefGoogle Scholar
22Hiergeist, C., Indrani, V.A., and Lipowsky, R., Europhys. Lett. 36 (1996) p.491.Google Scholar
23Breidenich, M., Netz, R. R., and Lipowsky, R., Europhys. Lett. 49 (2000) p.431.CrossRefGoogle Scholar
24Breidenich, M., Netz, R.R., and Lipowsky, R., Eur. Phys. J.E 5 (2001) p.403.CrossRefGoogle Scholar
25Bickel, T., Jeppesen, C., and Marques, C.M., Eur. Phys. J.E 4 (2001) p.33.CrossRefGoogle Scholar
26Fournier, J.-B., Eur. Phys. J. B 11 (1999) p.261.CrossRefGoogle Scholar
27Brooks, J.T., Marques, C.M., and Cates, M.E., J.Phys. II 1 (1991) p.673.Google Scholar
28Kim, Y.W. and Sung, W., Europhys. Lett. 47 (1999) p.292.CrossRefGoogle Scholar
29Gennes, P.G. de, New Trends in Physics and Physical Chemistry of Polymers (Plenum, New York, 1990).Google Scholar
30Fleer, G.J., Stuart, M.A. Cohen, Scheut-jens, J.M., Cosgrove, T., and Vincent, B., Polymers at Interfaces (Chapman & Hall, London, 1993).Google Scholar
31Mayer, L.D., Krishna, R., Webb, M., and Bally, M., J.Lipid Res. 10 (2000) p.99.Google Scholar
32Nair, R.R., Rodgers, J.R., and Schwarz, L.A., Mol. Ther. 5 (2002) p.455.CrossRefGoogle Scholar
33Vogt, T.C.B. and Bechinger, B., J. Biol. Chem. 274 (1999) p.29115.CrossRefGoogle Scholar
34Douglas, J.F., Johnson, H.E., and Granick, S., Science 262 (1993) p.2010.CrossRefGoogle Scholar
35Frantz, P. and Granick, S., Macromolecules 27 (1994) p.2553.CrossRefGoogle Scholar
36Xie, A.F. and Granick, S., Nature Mater. 1 (2002) p.129.CrossRefGoogle Scholar
37Feng, Z.V., Granick, S., and Gewirth, A.A., Langmuir 20 (2004) p.8796.CrossRefGoogle Scholar
38Liu, H. and Chakrabarti, A., Polymer 40 (1999) p.7285.CrossRefGoogle Scholar
39Gennis, R.B., Biomembranes: Molecular Structure and Function (Springer, New York, 1989).CrossRefGoogle Scholar
40Pas, J.C. van de, Olsthoorn, Th.M., Schep-ers, F.J., Vries, C.H.E. de, and Buytenhek, C.J., Col-loids Surf. A 85 (1994) p.221.Google Scholar
41Rider, K.B., Hwang, K.S., Salmeron, M., and Somorjai, G.A., Phys. Rev. Lett. 86 (2001) p.4330.CrossRefGoogle Scholar
42Hetzer, M., Heinz, S., Grage, S., and Bay-erl, T.M., Langmuir 14 (1998) p.982.CrossRefGoogle Scholar
43Wagner, M.L. and Tamm, L.K., Biophys. J. 79 (2000) p.1400.CrossRefGoogle Scholar
44Naumann, C.A., Prucker, O., Lehmann, T., Rühe, J., and Frank, C.W., BioMacromolecules 3 (2002) p.27.CrossRefGoogle Scholar
45Liu, J. and Conboy, J.C., J.Am. Chem. Soc. 126 (2004) p.8376.CrossRefGoogle Scholar
46Liu, J. and Conboy, J.C., Biophys. J. 89 (2005) p.2522.CrossRefGoogle Scholar
47Zhang, L. and Granick, S., J. Chem. Phys. 123 211104 (2005).CrossRefGoogle Scholar
48Evans, E. and Sackmann, E., J. Fluid Mech. 194 (1988) p.553.CrossRefGoogle Scholar
49Xie, A.F., Yamada, R., Gewirth, A.A., and Granick, S., Phys. Rev. Lett. 89 246103 (2002).CrossRefGoogle Scholar
50Keller, D., Larsen, N.B., Møller, I.M., and Mouritsen, O.G., Phys. Rev. Lett. 94 025701 (2005).CrossRefGoogle Scholar
51Feng, Z.V., Spurlin, T.A., and Gewirth, A.A., Biophys. J. 88 (2005) p.2154.CrossRefGoogle Scholar
52Charrier, A. and Thibaudau, F., Biophys. J. 89 (2005) p.1094.CrossRefGoogle Scholar
53Gurtovenko, A.A., Patra, M., Karttunen, M., and Vattulainen, I., Biophys. J. 86 (2004) p. 3461.CrossRefGoogle Scholar
54Zhang, L., Spurlin, T.A., Gewirth, A.A., and Granick, S., J.Phys. Chem. B 110 (2006) p.33.CrossRefGoogle Scholar
55Torchilin, V.P., Nat. Rev. Drug Disc. 4 (2005) p.145.CrossRefGoogle Scholar
56Zhang, L. and Granick, S., Nano Lett. 6 (2006) p.694.CrossRefGoogle Scholar