Laura S Moye1, Madeline L Novack1, Alycia F Tipton1, Harish Krishnan1, Subhash C Pandey1,2,3, Amynah Aa Pradhan1. 1. 1 Department of Psychiatry, University of Illinois at Chicago, Department of Psychiatry, Chicago, IL, USA. 2. 2 Center for Alcohol Research in Epigenetics UIC Psychiatry, Chicago, IL, USA. 3. 3 Jesse Brown Veteran Affairs Medical Center, Chicago, IL, USA.
Abstract
BACKGROUND: Post-traumatic headache is the most common and long-lasting impairment observed following mild traumatic brain injury, and frequently has migraine-like characteristics. The mechanisms underlying progression from mild traumatic brain injury to post-traumatic headache are not fully understood. The aim of this study was to develop a mouse model of post-traumatic headache and identify mechanisms and novel targets associated with this disorder. METHODS: We combined the closed head weight-drop method and the nitroglycerin chronic migraine model. To induce mild traumatic brain injury, a weight was dropped onto intact crania of mildly anesthetized mice, and mechanical responses to chronic-intermittent administration of nitroglycerin, a human migraine trigger, were determined at multiple time points post-injury. RESULTS: Low dose nitroglycerin (0.1 mg/kg) evoked acute periorbital and hind paw allodynia in both mild traumatic brain injury and sham animals. However, only mild traumatic brain injury mice developed chronic hypersensitivity to low dose nitroglycerin. Migraine medications, sumatriptan and topiramate, inhibited post-traumatic headache-associated allodynia. In addition, the delta opioid receptor agonist, SNC80, also blocked post-traumatic headache-associated allodynia. Finally, we examined the expression of calcitonin gene-related peptide within this model and found that it was increased in trigeminal ganglia two weeks post-mild traumatic brain injury. CONCLUSIONS: Overall, we have established a mouse model of post-traumatic headache and identified the delta opioid receptor as a novel therapeutic target for this disorder.
BACKGROUND:Post-traumatic headache is the most common and long-lasting impairment observed following mild traumatic brain injury, and frequently has migraine-like characteristics. The mechanisms underlying progression from mild traumatic brain injury to post-traumatic headache are not fully understood. The aim of this study was to develop a mouse model of post-traumatic headache and identify mechanisms and novel targets associated with this disorder. METHODS: We combined the closed head weight-drop method and the nitroglycerinchronic migraine model. To induce mild traumatic brain injury, a weight was dropped onto intact crania of mildly anesthetized mice, and mechanical responses to chronic-intermittent administration of nitroglycerin, a humanmigraine trigger, were determined at multiple time points post-injury. RESULTS: Low dose nitroglycerin (0.1 mg/kg) evoked acute periorbital and hind paw allodynia in both mild traumatic brain injury and sham animals. However, only mild traumatic brain injurymice developed chronic hypersensitivity to low dose nitroglycerin. Migraine medications, sumatriptan and topiramate, inhibited post-traumatic headache-associated allodynia. In addition, the delta opioid receptor agonist, SNC80, also blocked post-traumatic headache-associated allodynia. Finally, we examined the expression of calcitonin gene-related peptide within this model and found that it was increased in trigeminal ganglia two weeks post-mild traumatic brain injury. CONCLUSIONS: Overall, we have established a mouse model of post-traumatic headache and identified the delta opioid receptor as a novel therapeutic target for this disorder.
Authors: Jeanne M Hoffman; Sylvia Lucas; Sureyya Dikmen; Cynthia A Braden; Allen W Brown; Robert Brunner; Ramon Diaz-Arrastia; William C Walker; Thomas K Watanabe; Kathleen R Bell Journal: J Neurotrauma Date: 2011-08-29 Impact factor: 5.269
Authors: Frank L Rice; Jennifer Y Xie; Phillip J Albrecht; Emily Acker; Justin Bourgeois; Edita Navratilova; David W Dodick; Frank Porreca Journal: Cephalalgia Date: 2016-11-16 Impact factor: 6.292
Authors: Manel Ben Aissa; Alycia F Tipton; Zachariah Bertels; Ronak Gandhi; Laura S Moye; Madeline Novack; Brian M Bennett; Yueting Wang; Vladislav Litosh; Sue H Lee; Irina N Gaisina; Gregory Rj Thatcher; Amynah A Pradhan Journal: Cephalalgia Date: 2017-10-12 Impact factor: 6.292
Authors: Pan Zhang; Laura S Moye; Bruce R Southey; Isaac Dripps; Jonathan V Sweedler; Amynah Pradhan; Sandra L Rodriguez-Zas Journal: Mol Neurobiol Date: 2019-05-25 Impact factor: 5.590
Authors: Laura S Moye; Alycia F Tipton; Isaac Dripps; Zoie Sheets; Aimee Crombie; Jonathan D Violin; Amynah A Pradhan Journal: Neuropharmacology Date: 2018-12-14 Impact factor: 5.250
Authors: Zachariah Bertels; Wiktor D Witkowski; Sarah Asif; Kendra Siegersma; Richard M van Rijn; Amynah A Pradhan Journal: Headache Date: 2020-12-16 Impact factor: 5.887
Authors: Andrea M Harriott; David Y Chung; Aylin Uner; Refik O Bozdayi; Andreia Morais; Tsubasa Takizawa; Tao Qin; Cenk Ayata Journal: Ann Neurol Date: 2020-10-27 Impact factor: 10.422