Consequences of altered eicosanoid patterns for nociceptive processing in mPGES-1-deficient mice

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Abstract

Cyclooxygenase-2 (COX-2)-dependent prostaglandin (PG) E2 synthesis in the spinal cord plays a major role in the development of inflammatory hyperalgesia and allodynia. Microsomal PGE2 synthase-1 (mPGES-1) isomerizes COX-2-derived PGH2 to PGE2. Here, we evaluated the effect of mPGES-1-deficiency on the noci-ceptive behavior in various models of nociception that depend on PGE2 synthesis. Surprisingly, in the COX-2-dependent zymosan-evoked hyperalgesia model, the nociceptive behavior was not reduced in mPGES-1-deficient mice despite a marked decrease of the spinal PGE2 synthesis. Similarly, the nociceptive behavior was unaltered in mPGES-1-deficient mice in the formalin test. Importantly, spinal cords and primary spinal cord cells derived from mPGES-1-deficient mice showed a redirection of the PGE2 synthesis to PGD2, PGF2α and 6-keto-PGF1α (stable metabolite of PGI2). Since the latter prostaglandins serve also as mediators of noci-ception they may compensate the loss of PGE 2 synthesis in mPGES-1-deficient mice. © 2008 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd.

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Brenneis, C., Coste, O., Schmidt, R., Angioni, C., Popp, L., Nusing, R. M., … Geisslinger, G. (2008). Consequences of altered eicosanoid patterns for nociceptive processing in mPGES-1-deficient mice. Journal of Cellular and Molecular Medicine, 12(2), 639–648. https://doi.org/10.1111/j.1582-4934.2007.00110.x

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