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Phosphate-induced chondrocyte apoptosis is linked to nitric oxide generation.

American journal of physiology. Cell physiology (2001-08-15)
C C Teixeira, K Mansfield, C Hertkorn, H Ischiropoulos, I M Shapiro
ABSTRACT

An elevation in inorganic phosphate (P(i)) concentration activates epiphyseal chondrocyte apoptosis. To determine the mechanism of apoptosis, tibial chondrocytes were treated with P(i), and nitrate/nitrite (NO/NO) levels were determined. P(i) induced a threefold increase in the NO/NO concentration; inhibitors of nitric oxide (NO) synthase activity and P(i) transport significantly reduced NO/NO levels and prevented cell death. Furthermore, a dose-dependent increase in cell death was observed after exposure of chondrocytes to S-nitrosoglutathione. P(i) increased caspase 3 activity 2.7-fold. Both caspase 1 and caspase 3 inhibitors protected chondrocytes from P(i)-induced apoptosis. P(i) caused a significant decrease in the mitochondrial membrane potential, while NO synthase inhibitors maintained mitochondrial function. While P(i) caused thiol depletion, inhibition of P(i) uptake or NO generation served to maintain glutathione levels. The results suggest that NO serves to mediate key metabolic events linked to P(i)-dependent chondrocyte apoptosis.

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Caspase-1 Inhibitor I, Cell-Permeable, The Caspase-1 Inhibitor I, Cell-Permeable controls the biological activity of Caspase-1. This small molecule/inhibitor is primarily used for Cancer applications.