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Titlebook: Epithelial Transport; A guide to methods a Nancy K. Wills,Luis Reuss,Simon A. Lewis Book 1996 Chapman & Hall 1996 biology.cell.cell culture

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Palgrave Studies in Animals and Literatureent of two or more substances (secondary active transport via carriers). In addition to performing net transepithelial transport, membrane transport proteins can also perform housekeeping functions which regulate the volume and/or internal composition (e.g. pH or calcium concentration) of the epithelial cell.
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https://doi.org/10.1007/978-1-4615-0821-2antly and the epithelia compensate by readjusting transport rates. Sodium and potassium homeostasis provide good examples because transport of these ions into the plasma varies significantly with dietary intake; hence output from the plasma must be adjusted to match input in order to maintain homeostasis.
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https://doi.org/10.1007/978-94-011-2346-4ectoriality is due to a sharp structural, biochemical and physiological asymmetry of epithelial cells (polarity): the apical pole, facing the lumen, has translocating mechanisms (pores, channels, carriers, pumps, etc.) that are essentially different from those present on the basolateral side facing the interstitium (Cereijido and Rotunno, 1970).
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Volker Jäger,Konrad Büssow,Thomas Schirrmanncal potential. Studies of ion transport mechanisms in epithelial cells are complex because of the differences in transport properties of the apical and basolateral membranes, i.e. the transporters expressed at the two membrane domains are different.
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https://doi.org/10.1007/978-3-642-80412-0a wider range of experimental conditions than can be sustained by intact cells. One also has an avenue for studying the genesis of epithelial polarity and for elucidating the sometimes surprising methods that epithelial cells employ to regulate their transport activities.
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