By A. D. C. Macknight (auth.), Professor Dr. R. Gilles, Dr. E. K. Hoffmann, Dr. L. Bolis (eds.)
Advances in Compararative and Environmental Physiology is helping biologists, physiologists, and biochemists maintain tune of the large literature within the box. offering finished, built-in stories and sound, serious, and provocative summaries, this sequence is a must for all energetic researchers in environmental and comparative body structure. mobile quantity and osmolality in animals is a good studied subject and this particular quantity within the sequence presents the reader with a radical grounding during this region of body structure. which includes elements, the textual content discusses osmolality and quantity keep watch over by way of either inorganic and natural ions which consequently provides a very good evaluation to these operating and drawn to this field.
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Extra info for Advances in Comparative and Environmental Physiology: Volume and Osmolality Control in Animal Cells
1. ADH dependency and nephron heterogeneity. Am J PhysioI250:C907:C919 Herbert SC (l986b) Hypertonic cell volume regulation in mouse thick limbs. II. Na+-H+ and Cr-HC03exchange in basolateral membranes. Am J PhysioI250:C920-C931 Herbert SC, Sun A (1988) Hypotonic cell volume regulation in mouse medullary thick ascending limb: effects of ADH. Am J Physiol 255:F962-F969 Hoffmann EK (1986) Anion transport systems in the plasma membrane of vertebrate cells. Biochim Biophys Acta 864: 1-31 Hoffmann EK (1987) Volume regulation in cultured cells.
Thus, a necessary consequence of stimulation would be a sustained increase in basolateral potassium conductance. Conversely, when the secretory stimulus is removed, recovery in cell volume will occur if the membrane co-transporter remains active and the membrane chloride and potassium conductances are reduced. Changes in cell volume were inversely correlated with changes in cell calcium activity in this study, a finding consistent with a central role for calcium-dependent ion conductances in determining both secretion and cell volume.
I Physiol349: 135-156 Cotton CU, Weinstein AM, Reuss L (1989) Osmotic water permeability of Necturus gallbladder epithelium . ). Fed Proc 39:1081 Davis CW, Finn AL (1982) Sodium transport inhibition by arniloride reduces basolateral membrane potassium conductance in tight epithelia. Science 216:525-527 Davis CW, Finn AL (1985a) Cell volume regulation in frog urinary bladder. Fed Proc 44:2520-2525 Davis CW, Finn AL (1985b) Effects of mucosal sodium removal on cell volume in Necturus gallbladder epithelium.