6533b856fe1ef96bd12b1c84

RESEARCH PRODUCT

LAAE-14, a new in vitro inhibitor of intracellular calcium mobilization, modulates acute and chronic inflammation.

Miguel PayáEsther Del OlmoMario AlvesRut LucasArturo San Feliciano

subject

ThapsigarginNeutrophilschemistry.chemical_elementCalciumPharmacologyCarrageenanBiochemistryLeukotriene B4Calcium in biologyDinoprostonechemistry.chemical_compoundMiceCell MovementAnimalsEdemaHumansCytochalasin BNitritesPharmacologyInflammationPlatelet-activating factorPancreatic ElastaseTumor Necrosis Factor-alphaZymosanArthritis ExperimentalRatsDisease Models AnimalchemistryBiochemistryIonomycinAcute DiseaseChronic DiseaseLuminescent MeasurementsPhorbolMacrophages PeritonealTumor necrosis factor alphaCalcium

description

Abstract A new lipidic acid-amido ether derivative (LAAE-14) able to reduce dose-dependently the calcium increases mediated either by calcium ionophore ionomycin, by the endoplasmic reticular Ca 2+ -ATPase inhibitor thapsigargin, or by the chemotactic tripeptide N -formyl- l -methionyl- l -leucyl- l -phenylalanine (fMLP), in human neutrophils as well as in murine peritoneal macrophages, but not ATP, has been evaluated as a potential anti-inflammatory drug. This compound attenuated leukocyte activation by means of its inhibitory effect on the respiratory burst elicited in both types of cells by 12- O -tetradecanoyl phorbol 13-acetate, by inhibition of the degranulation process induced by cytochalasin B+fMLP or cytochalasin B+platelet activating factor, as well as by reduction of leukotriene B 4 synthesis induced by the calcium ionophore A23187. In addition, in zymosan-stimulated mouse peritoneal macrophages LAAE-14 caused a potent inhibition of nitrite and prostaglandin E 2 production. This compound exerted acute and chronic anti-inflammatory effects by oral route, that may be related with several mechanisms such as attenuation of leukocyte activation, inhibition of inducible nitric oxide synthase, cyclo-oxygenase-2 and cytosolic phospholipase A 2 expression as well as reduction in tumour necrosis factor-α production. Its anti-inflammatory profile is clearly correlated with its behavior as inhibitor of intracellular calcium mobilization. The profile and potency of this compound may have relevance for the inhibition of the inflammatory response at different levels and may represent a new approach to the development of new anti-inflammatory drugs.

10.1016/s0006-2952(03)00120-5https://pubmed.ncbi.nlm.nih.gov/12732367