Effects of a Cyclooxygenase-2 Preferential Inhibitor in Young Healthy Dogs Exposed to Air Pollution: A Pilot Study
Author(s) -
Lilian CalderónGarcidueñas,
Antonieta Mora-Tiscareño,
Gilberto Gómez-Garza,
Miriam del Carmen CarrascoPortugal,
Beatríz Pérez-Guillé,
Francisco Javier FloresMurrieta,
Gabriela Pérez-Guillé,
Norma Osnaya Brizuela,
Hugo Juárez Olguı́n,
Maria E. Monroy,
Silvia Monroy,
Angélica González-Maciel,
Rafael Reynoso-Robles,
Rafael VillarrealCalderon,
Sarjubhai A. Patel,
Prem Kumarathasan,
Renaud Vincent,
Carlos HenríquezRoldán,
Ricardo TorresJardón,
Robert R. Maronpot
Publication year - 2009
Publication title -
toxicologic pathology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.613
H-Index - 108
eISSN - 1533-1601
pISSN - 0192-6233
DOI - 10.1177/0192623309340277
Subject(s) - neuroprotection , nimesulide , cyclooxygenase , medicine , nitrotyrosine , white matter , neuroinflammation , pharmacology , pathology , endocrinology , anesthesia , inflammation , chemistry , nitric oxide synthase , magnetic resonance imaging , nitric oxide , biochemistry , radiology , enzyme
Residency in cities with high air pollution is associated with neuroinflammation and neurodegeneration in healthy children, young adults, and dogs. Nonsteroidal anti-inflammatory drugs may offer neuroprotection. The authors measured the plasma concentrations of 3-nitrotyrosine and the cerebro-spinal-fluid concentrations of prostaglandin E2 metabolite and the oligomeric form of amyloid derived diffusible ligand; measured the mRNA expression of cyclooxygenase-2, interleukin 1β, CD14, and Aquaporin-4 in target brain areas; and evaluated brain MRI, cognition, and neuropathology in 8 dogs treated with a preferential cyclooxygenase-2 inhibitor (Nimesulide ® ) versus 7 untreated litter-matched Mexico City dogs. Nimesulide ® significantly decreased nitrotyrosine in plasma ( p < .0001), frontal gray IL1β ( p = .03), and heart IL1β ( p = .02). No effect was seen in mRNA COX2, amyloid, and PGE2 in CSF or the MRI white matter lesions. All exposed dogs exhibited olfactory bulb and frontal accumulation of Aβ 42 in neurons and blood vessels and frontal vascular subcortical pathology. White matter hyperintense MRI frontal lesions were seen in 4/6 non-treated and 6/8 treated dogs. Nonsteroidal anti-inflammatory drugs may offer limited neuroprotection in the setting of severe air pollution exposures. The search for potentially beneficial drugs useful to ameliorate the brain effects of pollution represents an enormous clinical challenge.
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