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Am J Physiol Endocrinol Metab 278: E15-E24, 2000;
0193-1849/00 $5.00
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Vol. 278, Issue 1, E15-E24, January 2000

Bone as an ion exchange system: evidence for a pump-leak mechanism devoted to the maintenance of high bone K+

Alessandro Rubinacci, Fiorenza Dondi Benelli, Enrico Borgo, and Isabella Villa

Bone Metabolic Unit, Scientific Institute H San Raffaele, Milano 20132, Italy

To provide evidence of active accumulation of K+ in bone extracellular fluid (BECF), electric currents driven by damaged living metatarsal bones of weanling mice, immersed in physiological media at different [K+], in the presence of blockers of the K+ channels or of the Na+-K+-ATPase inhibitor, were measured by means of a voltage-sensitive two-dimensional vibrating probe. At 4 mM extracellular K+ concentration ([K+]o), an inward steady current density (7.85-38.53 µA/cm2) was recorded at the damage site, which was significantly dependent on [K+]o. At [K+]o equal to that of BECF (25 mM), current density was reduced by 76%. At [K+]o of 0 mM, the current density showed an increase, which was hindered by tetraethylammonium (TEA). Basal current density was reduced significantly after exposure to TEA or BaCl2 and was unchanged after long- term exposure to ouabain. By changing control medium with a chloride-free medium, current density was reversed. The results support the view that K+ excess in bone is maintained by a biologically active cellular system. Because the osteocyte-bone lining cell syncytium was at the origin of the current in bone, it is likely that this system controls the ionic composition of BECF.

ionic current; potassium; bone extracellular fluid


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A. Rubinacci, M. Covini, C. Bisogni, I. Villa, M. Galli, C. Palumbo, M. Ferretti, M. A. Muglia, and G. Marotti
Bone as an ion exchange system: evidence for a link between mechanotransduction and metabolic needs
Am J Physiol Endocrinol Metab, April 1, 2002; 282(4): E851 - E864.
[Abstract] [Full Text] [PDF]




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