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Biophys. J. BioFAST: First Published September 14, 2007. doi:10.1529/biophysj.107.113340
© 2007 by the Biophysical Society.


A more recent version of this article appeared on January 15, 2008.
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BIOPHYSICAL THEORY AND MODELING

Approximate analytical time-dependent solutions to describe large-amplitude local calcium transients in the presence of buffers

Sergej L Mironov 1* and Lidia A Mironova 1

1 Georg-August-University

* To whom correspondence should be addressed. E-mail: smirono{at}gwdg.de.

Submitted on May 22, 2007
Revised on June 20, 2007
Accepted on 15 August 2007


   Abstract
Local Ca2+ signalling controls many neuronal functions, which selective triggering is often achieved through spatial localization of Ca2+ signals. These nanodomains are formed due to combined effects of Ca2+ diffusion and binding to the cytoplasmic buffers. In this paper we derived simple analytical expressions to describe Ca2+ diffusion in the presence of mobile and immobile buffers. A non-linear character of the reaction-diffusion problem was circumvented by introducing a logarithmic approximation of the concentration term. The obtained formulas reproduce free Ca2+ levels up to 50 µM and their changes in millisecond range. Derived equations can be useful to predict spatiotemporal profiles of large-amplitude [Ca2+] transients, which participate in various physiological processes.

Key Words: Calcium buffering, Explicit solution, Fast diffusion, Local calcium transients, Multiple buffers, Spatiotemporal profiles




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S. L. Mironov
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Copyright © 2007 by the Biophysical Society.