4.6 Article

A modular and reusable model of epithelial transport in the proximal convoluted tubule

期刊

PLOS ONE
卷 17, 期 11, 页码 -

出版社

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0275837

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资金

  1. Aotearoa Foundation
  2. Brazilian agency CNPq [301224/2016-1, 407751/2018-1]
  3. Brazilian agency FAPESP [2014/50889-7, 2018/14221-2]
  4. Center for Reproducible Biomedical Modeling NIH HHS [P41 EB023912/EB/NIBIB]

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We review a collection of published renal epithelial transport models and build a consistent and reusable mathematical model that can reproduce many observations and predictions from the literature. The flexible modular model can be adapted to specific configurations of epithelial transport, and this work focuses on transport in the proximal convoluted tubule of the renal nephron.
We review a collection of published renal epithelial transport models, from which we build a consistent and reusable mathematical model able to reproduce many observations and predictions from the literature. The flexible modular model we present here can be adapted to specific configurations of epithelial transport, and in this work we focus on transport in the proximal convoluted tubule of the renal nephron. Our mathematical model of the epithelial proximal convoluted tubule describes the cellular and subcellular mechanisms of the transporters, intracellular buffering, solute fluxes, and other processes. We provide free and open access to the Python implementation to ensure our multiscale proximal tubule model is accessible; enabling the reader to explore the model through setting their own simulations, reproducibility tests, and sensitivity analyses.

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