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Full-Text Articles in Pharmacology

Sustained Sensitizing Effects Of Tumor Necrosis Factor Alpha On Sensory Nerves In Lung And Airways, Ruei-Lung Lin, Qihai Gu, Mehdi Khosravi, Lu-Yuan Lee Dec 2017

Sustained Sensitizing Effects Of Tumor Necrosis Factor Alpha On Sensory Nerves In Lung And Airways, Ruei-Lung Lin, Qihai Gu, Mehdi Khosravi, Lu-Yuan Lee

Physiology Faculty Publications

Tumor necrosis factor alpha (TNFα) plays a significant role in the pathogenesis of airway inflammatory diseases. Inhalation of aerosolized TNFα induced airway hyperresponsiveness accompanied by airway inflammation in healthy human subjects, but the underlying mechanism is not fully understood. We recently reported a series of studies aimed to investigate if TNFα elevates the sensitivity of vagal bronchopulmonary sensory nerves in a mouse model; these studies are summarized in this mini-review. Our results showed that intratracheal instillation of TNFα induced pronounced airway inflammation 24 hours later, as illustrated by infiltration of eosinophils and neutrophils and the release of inflammatory mediators and …


Pharmacology, Pharmacokinetics, And Metabolism Of The Dna-Decoy Ayx1 For The Prevention Of Acute And Chronic Post-Surgical Pain, Julien Mamet, Scott Harris, Michael Klukinov, David C. Yeomans, Renee R. Donahue, Bradley K. Taylor, Kelly Eddinger, Tony Yaksh, Donald C. Manning Apr 2017

Pharmacology, Pharmacokinetics, And Metabolism Of The Dna-Decoy Ayx1 For The Prevention Of Acute And Chronic Post-Surgical Pain, Julien Mamet, Scott Harris, Michael Klukinov, David C. Yeomans, Renee R. Donahue, Bradley K. Taylor, Kelly Eddinger, Tony Yaksh, Donald C. Manning

Physiology Faculty Publications

Background: AYX1 is an unmodified DNA-decoy designed to reduce acute post-surgical pain and its chronification with a single intrathecal dose at the time of surgery. AYX1 inhibits the transcription factor early growth response protein 1, which is transiently induced at the time of injury and triggers gene regulation in the dorsal root ganglia and spinal cord that leads to long-term sensitization and pain. This work characterizes the AYX1 dose-response profile in rats and the link to AYX1 pharmacokinetics and metabolism in the cerebrospinal fluid, dorsal root ganglia, and spinal cord.

Results: The effects of ascending dose-levels of AYX1 on mechanical …