Donna L. Hammond

Affiliations: 
University of Chicago, Chicago, IL 
Area:
Neuroscience Biology, Pharmacology
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"Donna Hammond"
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Children

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Nikolaus R. McFarland research assistant 1990-1992 Chicago
Susana D. Ugarte grad student 2000 Chicago
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Publications

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Zhang L, Hammond DL. (2010) Cellular basis for opioid potentiation in the rostral ventromedial medulla of rats with persistent inflammatory nociception. Pain. 149: 107-16
Hurley RW, Banfor P, Hammond DL. (2003) Spinal pharmacology of antinociception produced by microinjection of μ or δ opioid receptor agonists in the ventromedial medulla of the rat Neuroscience. 118: 789-796
Ugarte SD, Homanics GE, Hammond DL. (2001) Effect of embryonic knock-down of GABAA receptors on the levels of monoamines and their metabolites in the CNS of the mouse. Brain Research. 904: 290-7
Hurley RW, Hammond DL. (2001) Contribution of endogenous enkephalins to the enhanced analgesic effects of supraspinal μ opioid receptor agonists after inflammatory injury Journal of Neuroscience. 21: 2536-2545
Ugarte SD, Homanics GE, Firestone LL, et al. (2000) Sensory thresholds and the antinociceptive effects of GABA receptor agonists in mice lacking the beta3 subunit of the GABA(A) receptor. Neuroscience. 95: 795-806
Grabow TS, Hurley RW, Banfor PN, et al. (1999) Supraspinal and spinal delta2 opioid receptor-mediated antinociceptive synergy is mediated by spinal alpha2 adrenoceptors Pain. 83: 47-55
Hammond DL, Nelson V, Thomas DA. (1998) Intrathecal methysergide antagonizes the antinociception, but not the hyperalgesia produced by microinjection of baclofen in the ventromedial medulla of the rat Neuroscience Letters. 244: 93-96
Hammond DL, Wang H, Nakashima N, et al. (1998) Differential effects of intrathecally administered delta and mu opioid receptor agonists on formalin-evoked nociception and on the expression of Fos-like immunoreactivity in the spinal cord of the rat. The Journal of Pharmacology and Experimental Therapeutics. 284: 378-87
Hammond DL, Donahue BB, Stewart PE. (1997) Role of spinal δ1 and δ2 opioid receptors in the antinociception produced by microinjection of L-glutamate in the ventromedial medulla of the rat Brain Research. 765: 177-181
Thomas DA, Navarrete IM, Graham BA, et al. (1996) Antinociception produced by systemic R(+)-baclofen hydrochloride is attenuated by CGP 35348 administered to the spinal cord or ventromedial medulla of rats. Brain Research. 718: 129-37
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