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Full-Text Articles in Medicine and Health Sciences

Method Of Intra-Arterial Drug Administration In A Rat: Sex Based Optimization Of Infusion Rate, Sarah J. Messmer, Justin F. Fraser, Keith R. Pennypacker, Jill M. Roberts Apr 2021

Method Of Intra-Arterial Drug Administration In A Rat: Sex Based Optimization Of Infusion Rate, Sarah J. Messmer, Justin F. Fraser, Keith R. Pennypacker, Jill M. Roberts

Center for Advanced Translational Stroke Science Faculty Publications

BACKGROUND: Endovascular thrombectomy is the process of removing a blood clot and re-establishing blood flow in patients with emergent large vessel occlusion. The technique provides an opportunity to deliver therapeutics directly to the site of injury. The intra-arterial (IA) route of drug administration in the mouse was developed to bridge the gap between animal stroke treatments and clinical stroke therapy. Here, we adapted the IA method for use in rats, by investigating various flow rates to optimize the IA injection through the internal carotid artery (ICA).

METHODS: Male and female Sprague-Dawley rats (∼4 months of age) were subjected to placement …


Vasopressin Regulates Daily Rhythms And Circadian Clock Circuits In A Manner Influenced By Sex, Kayla Rohr, Adam Telega, Alexandra Savaglio, Jennifer A. Evans Jan 2021

Vasopressin Regulates Daily Rhythms And Circadian Clock Circuits In A Manner Influenced By Sex, Kayla Rohr, Adam Telega, Alexandra Savaglio, Jennifer A. Evans

Biomedical Sciences Faculty Research and Publications

Arginine vasopressin (AVP) is a neurohormone that alters cellular physiology through both endocrine and synaptic signaling. Circadian rhythms in AVP release and other biological processes are driven by the suprachiasmatic nucleus (SCN) of the anterior hypothalamus. Loss of vasopressin signaling alters circadian behavior, but the basis of these effects remains unclear. Here we investigate the role of AVP signaling in circadian timekeeping by analyzing behavior and SCN function in a novel AVP-deficient mouse model. Consistent with previous work, loss of AVP signaling increases water consumption and accelerates recovery to simulated jetlag. We expand on these results to show that loss …