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July 15, 2015Journal of Cerebral Blood Flow & Metabolism145 citationsOpen Access

Pharmacologically-Induced Neurovascular Uncoupling is Associated with Cognitive Impairment in Mice

STStefano TarantiniPHPéter HertelendyZTZsuzsanna Tucsek

Structured PICO

Does pharmacological induction of neurovascular uncoupling cause cognitive and sensorimotor impairment in mice?

P
Population
Mice
I
Intervention
Pharmacological induction of neurovascular uncoupling via treatment with the epoxygenase inhibitor MSPPOH, the NO synthase inhibitor L-NAME, and the COX inhibitor indomethacin
O
Outcome
Neurovascular coupling (NVC) and cognitive/sensorimotor function (spatial working memory, recognition memory, and motor coordination)surrogate

Selective experimental disruption of neurovascular coupling in mice causes cognitive and sensorimotor impairment, providing a direct mechanistic link between cerebromicrovascular dysfunction and cognitive decline.

Abstract

There is increasing evidence that vascular risk factors, including aging, hypertension, diabetes mellitus, and obesity, promote cognitive impairment; however, the underlying mechanisms remain obscure. Cerebral blood flow (CBF) is adjusted to neuronal activity via neurovascular coupling (NVC) and this mechanism is known to be impaired in the aforementioned pathophysiologic conditions. To establish a direct relationship between impaired NVC and cognitive decline, we induced neurovascular uncoupling pharmacologically in mice by inhibiting the synthesis of vasodilator mediators involved in NVC. Treatment of mice with the epoxygenase inhibitor N-(methylsulfonyl)-2-(2-propynyloxy)-benzenehexanamide (MSPPOH), the NO synthase inhibitor l-NG-Nitroarginine methyl ester (L-NAME), and the COX inhibitor indomethacin decreased NVC by over 60% mimicking the aging phenotype, which was associated with significantly impaired spatial working memory (Y-maze), recognition memory (Novel object recognition), and impairment in motor coordination (Rotarod). Blood pressure (tail cuff) and basal cerebral perfusion (arterial spin labeling perfusion MRI) were unaffected. Thus, selective experimental disruption of NVC is associated with significant impairment of cognitive and sensorimotor function, recapitulating neurologic symptoms and signs observed in brain aging and pathophysiologic conditions associated with accelerated cerebromicrovascular aging.

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Cite This Study

Tarantini et al. (2015) studied this question.

synapsesocial.com/papers/69deb81057c7c8340a55923ehttps://doi.org/10.1038/jcbfm.2015.162
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