Joshua W. Little, Ph.D.

Affiliations: 
2011 Anatomy Saint Louis University, St. Louis, MO, United States 
Area:
Neuroscience Biology, Behavioral Sciences Psychology, Pharmacology
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"Joshua Little"

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Daniela Salvemini grad student 2011 Saint Louis University
 (The key role of peroxynitrite in supraspinal nociceptive modulation during pathophysiological pain.)
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Publications

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Syrett M, Reed NR, Reed WR, et al. (2022) Sex-Related Pain Behavioral Differences following Unilateral NGF Injections in a Rat Model of Low Back Pain. Biology. 11
Reed WR, Little JW, Lima CR, et al. (2020) Spinal Mobilization Prevents NGF-Induced Trunk Mechanical Hyperalgesia and Attenuates Expression of CGRP. Frontiers in Neuroscience. 14: 385
Stockstill K, Doyle TM, Yan X, et al. (2018) Dysregulation of sphingolipid metabolism contributes to bortezomib-induced neuropathic pain. The Journal of Experimental Medicine
Touchette JC, Little JW, Wilken GH, et al. (2018) The neurotoxin DSP-4 induces hyperalgesia in rats that is accompanied by spinal oxidative stress and cytokine production. Neuroscience
Wahlman C, Doyle TM, Little JW, et al. (2018) Chemotherapy-induced pain is promoted by enhanced spinal adenosine kinase levels via astrocyte-dependent mechanisms. Pain
Reed WR, Cranston JT, Onifer SM, et al. (2017) Decreased spontaneous activity and altered evoked nociceptive response of rat thalamic submedius neurons to lumbar vertebra thrust. Experimental Brain Research
Little JW. (2017) Modeling human lumbar spinal osteoarthritis and low back pain through preclinical studies The Faseb Journal. 31
Richey M, Reed N, Reed W, et al. (2017) (180) The maintenance of NGF-induced persistent low back muscle pain is associated with lumbar spinal cord astrocytic hyperactivation The Journal of Pain. 18: S21
Reed N, Richey M, Reed W, et al. (2017) (179) Lumbar spinal cord microglial hyperactivation occurs during the development of persistent low back muscle pain The Journal of Pain. 18: S21
Ford A, Castonguay A, Cottet M, et al. (2015) Engagement of the GABA to KCC2 signaling pathway contributes to the analgesic effects of A3AR agonists in neuropathic pain. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 6057-67
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