Pressure Induced Hydration Dynamics of Membranes
F. Osterberg, M. Kriechbaum, A. Polcyn, V. Skita, M. W. Tate, P. T. C. So, S. M. Gruner, Shyamsunder Erramilli
Abstract
Pressure-jump initiated time-resolved x-ray diffraction studies of dynamics of the hydration of the hexagonal phase in biological membranes show that (i) the relaxation of the unit cell spacing is non-exponential in time; (ii) the Bragg peaks shift smoothly to their final positions without significant broadening or loss in crystalline order. This suggests that the hydration is not diffusion limited but occurs via a rather homogeneous swelling of the whole lattice, described by power law kinetics with an exponent β= 1.3 0.2.
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