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1 hereby causing dedifferentiation and loss of reabsorptive capacity of PT cells.
2 t these channels may contribute to the fluid-reabsorptive driving force in adult lung.
3 s has a lower secretory portion and an upper reabsorptive duct leading to the secretory pore in the s
4 onchiolar epithelia and basolaterally in the reabsorptive duct of human sweat glands.
5 of sodium-coupled acid-base transport in the reabsorptive duct of the human eccrine sweat gland, whic
6  A was as much as eightfold greater than the reabsorptive flux, indicating that net secretion is the
7 a link to protein networks implicated in the reabsorptive function of the kidney and in the trafficki
8 hese data suggest that several distal sodium reabsorptive mechanisms are upregulated during vasopress
9 ntified claudin-2 as constituting the cation-reabsorptive pathway in the proximal tubule; claudin-14,
10 en cephaloridine and carnitine for the renal reabsorptive process.
11                   OSC are known to sustain a reabsorptive transepithelial current and to contain an i
12          The new Na+- dependent, active urea reabsorptive transport process may be a basolateral Na+-
13                  In IMCD1s, this active urea reabsorptive transport process was inhibited by: (i) 0.2

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