Olga Tjurmina

Affiliations: 
National Institutes of Health, Bethesda, MD 
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"Olga Tjurmina"
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Publications

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Lem KE, Brinster LR, Tjurmina O, et al. (2007) Safety of intracerebroventricular copper histidine in adult rats. Molecular Genetics and Metabolism. 91: 30-6
Tjurmina OA, Armando I, Saavedra JM, et al. (2004) Life-long serotonin reuptake deficiency results in complex alterations in adrenomedullary responses to stress. Annals of the New York Academy of Sciences. 1018: 99-104
Armando I, Tjurmina OA, Li Q, et al. (2003) The serotonin transporter is required for stress-evoked increases in adrenal catecholamine synthesis and angiotensin II AT(2) receptor expression. Neuroendocrinology. 78: 217-25
Tjurmina OA, Armando I, Saavedra JM, et al. (2002) Exaggerated adrenomedullary response to immobilization in mice with targeted disruption of the serotonin transporter gene. Endocrinology. 143: 4520-6
Pacak K, Tjurmina O, Palkovits M, et al. (2002) Chronic hypercortisolemia inhibits dopamine synthesis and turnover in the nucleus accumbens: an in vivo microdialysis study. Neuroendocrinology. 76: 148-57
Hamelink C, Tjurmina O, Damadzic R, et al. (2002) Pituitary adenylate cyclase-activating polypeptide is a sympathoadrenal neurotransmitter involved in catecholamine regulation and glucohomeostasis. Proceedings of the National Academy of Sciences of the United States of America. 99: 461-6
Lamensdorf I, Hrycyna C, He LP, et al. (2000) Acidic dopamine metabolites are actively extruded from PC12 cells by a novel sulfonylurea-sensitive transporter. Naunyn-Schmiedeberg's Archives of Pharmacology. 361: 654-64
Tjurmina OA, Goldstein DS, Palkovits M, et al. (1999) Alpha2-adrenoceptor-mediated restraint of norepinephrine synthesis, release, and turnover during immobilization in rats. Brain Research. 826: 243-52
Kawamura M, Kopin IJ, Kador PF, et al. (1997) Effects of aldehyde/aldose reductase inhibition on neuronal metabolism of norepinephrine. Journal of the Autonomic Nervous System. 66: 145-8
Bogdanov MB, Tjurmina OA, Wurtman RJ. (1996) Consumption of a high dietary dose of monosodium glutamate fails to affect extracellular glutamate levels in the hypothalamic arcuate nucleus of adult rats. Brain Research. 736: 76-81
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