Key result
Exposure of primary cultured mTAL cells to extracellular calcium or the CaR-selective agonist poly-L-arginine increased COX-2 expression and PGE(2) synthesis in a dose- and time-dependent manner.
Why the study?
Does activation of the calcium-sensing receptor increase COX-2 expression and PGE2 synthesis in primary cultured mTAL cells?
Does activation of the calcium-sensing receptor increase COX-2 expression and PGE2 synthesis in primary cultured mTAL cells?
Activation of the calcium-sensing receptor in mTAL cells increases COX-2-dependent PGE2 synthesis, suggesting a mechanism for calcium-mediated salt and water balance.
CaR activation boosts COX-2/PGE2 in mTAL cells; leaves open physiologic role in calcium-mediated renal salt handling.
Primary cultures of medullary thick ascending limb (mTAL) cells retain the capacity to express calcium-sensing receptor (CaR) mRNA and protein. Increases in cyclooxygenase-2 (COX-2) mRNA accumulation, protein expression, and PGE(2) synthesis were observed in a dose- and time-dependent manner after exposure of these cells to extracellular calcium (Ca(o)(2+)). Moreover, transfection of mTAL cells with a CaR overexpression vector significantly enhanced COX-2 expression and PGE(2) production in response to calcium compared with cells transfected with an empty vector. Challenge with the CaR-selective agonist poly-L-arginine (PLA) also increased COX-2 mRNA accumulation, protein expression, and PGE(2) synthesis. Furthermore, Ca(o)(2+)- and PLA-mediated PGE(2) production was abolished in the presence of NS-398 or nimesulide, two different COX-2-selective inhibitors. These data suggest that intracellular signaling mechanisms initiated via activation of CaR contribute to COX-2-dependent PGE(2) synthesis in the mTAL. Because Ca(o)(2+) concentration varies along Henle's loop, calcium may contribute to salt and water balance via a COX-2- and CaR-dependent mechanism. Thus novel calcimimetics might be useful in conditions such as hypertension in which manipulation of extracellular fluid volume provides beneficial effects.
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Wang et al. (2001) studied this question. Extracellular calcium and poly-L-arginine vs. Empty vector or baseline was evaluated on COX-2 mRNA accumulation, protein expression, and PGE(2) synthesis. Exposure of primary cultured mTAL cells to extracellular calcium or the CaR-selective agonist poly-L-arginine increased COX-2 expression and PGE(2) synthesis in a dose- and time-dependent manner.
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