journal article Mar 01, 1984

Effects of thyroid status on presynaptic?2-adrenoceptor function and?-adrenoceptor binding in the rat brain

View at Publisher Save 10.1007/bf01249877
Topics

No keywords indexed for this article. Browse by subject →

References
39
[1]
Atterwill, C. K.: Effect of acute and chronic tri-iodothyromne (T3) administration to rats on central 5-HT and dopamine-mediated behavioural responses and related brain biochemistry. Neuropharmacology20, 131?144 (1981). 10.1016/0028-3908(81)90195-7
[2]
Atterwill, C. K., Bunn, S. J., Heal, D. J., Smith, S. L.: Effect of thyroid status on central adrenoceptor function in the adult rat. Br. J. Pharmac.78,106 P (1983).
[3]
Bilezikian, J. P., Loeb, J. N., Gammon, D. E.: The influence of hyperthyroidism and hypothyroidism on the?-adrenergic responsiveness of the turkey erythrocyte. J. Clin. Invest.63, 184?192 (1979). 10.1172/jci109288
[4]
Davis, M., Menkes, D. B., Kebne. J. H., Gallagher, D. W., Aghajanian, G. K.: Chronic tricyclic antidepressants after?1- and?2-adrenoceptor responsivity as measured by the effects of selective agonists on the acoustic startle reflex. Neuroscience Abs.1, 106 (1982).
[5]
Delini-Stula, A., Bauman, P., Buck, O.: Depression of exploratory activity by clonidine in rats as a model for the detection of relative pre- and postsynaptic central noradrenergic receptor selectivity of?-adrenolytic drugs. Nauyn-Schmiedeberg's Arch. Pharmacol.39, 115?122 (1979). 10.1007/bf00498452
[6]
Dolfini, E., Ramirez del Angel, A., Garattini, S., Valzelli, L.: Brain catecholamine release by dexamphetamine in three strains of mice. Eur. J. Pharmac.9, 333?336 (1970). 10.1016/0014-2999(70)90231-1
[7]
Drew, G. M., Gower, A. J., Marriott, A. S.:?2-adrenoceptors mediate clonidine-induced sedation in the rat. Br. J. Pharmac.67, 133?141 (1979). 10.1111/j.1476-5381.1979.tb16116.x
[8]
Emlen, W., Segal, D. S., Mandell, A. J.: Thyroid state: Effects on pre- and postsynaptic central noradrenergic mechanisms. Science175, 79?82 (1972). 10.1126/science.175.4017.79
[9]
Engstr�m, G., Svensson, T. H., Waldeck, B.: Thyroxine and brain catecholamines: increased transmitter synthesis and increased receptor sensitivity. Brain Res.77, 471?483 (1974). 10.1016/0006-8993(74)90635-0
[10]
Glowinski, J., Iversen, L. L.: Regional studies of catecholamines in the rat brain. I. The disposition of [3H]norepinephrine. [3H]dopamine and [3H]DOPA in various regions of the brain. J. Neurochem.13, 655?669 (1966). 10.1111/j.1471-4159.1966.tb09873.x
[11]
Gross, G., Brodde, O. E., Schumann, H. J.: Decreased number of?-adrenoceptors in cerebral cortex of hypothyroid rats. Eur. J. Pharmac.61, 191?194 (1980 a). 10.1016/0014-2999(80)90164-8
[12]
Gross, G., Brodde, O. E., Schumann, H. J.: Effects of thyroid hormone deficiency on pre- and postsynaptic noradrenergic mechanisms in the rat cerebral cortex. Arch. Int. Pharmacol. Dyn.244, 219?230 (1980 b).
[13]
Gross, G., Schumann, H. J.: Reduced number of?-adrenoceptors in cortical brain membranes of hypothyroid rats. J. Pharm. Pharmacol.33, 552?554 (1981). 10.1111/j.2042-7158.1981.tb13862.x
[14]
Heal, D. J., Akagi, H., Bowdler, J. M., Green, A. R.: Repeated electroconvulsive shock attenuates clonidine-induced hypoactivity in rodents. Eur. J. Pharmacol.75, 231?237 (1981). 10.1016/0014-2999(81)90549-5
[15]
Heal, D. J., Atterwill, C. K.: Repeated administration of tri-iodothyronine (T3) to rats enhances nigrostriatal and mesolimbic dopaminergic behavioural responses. Neuropharmacology21, 159?162 (1982). 10.1016/0028-3908(82)90156-3
[16]
Honma, T., Fukushima, H.: Role of brain norepinephrine in neuroleptic induced catalepsy in rats. Brain Biochem. Behav.7, 501?506 (1977).
[17]
THYROID STATE AND BRAIN MONOAMINE METABOLISM11

Jacob H. Jacoby, Gregory Mueller, Richard J. Wurtman

Endocrinology 1975 10.1210/endo-97-5-1332
[18]
Kalaria, R. N., Prince, A. K.: [3H]Spiroperidol binding in corpus striatum of adult rats made thyroid deficient with propylthiouracil. Br. J. Pharmac.78, 103 P (1983).
[19]
Lipton, M. A., Prange, A. J., Dairman, W., Udenfriend, S.: Increased rate of norepinephrine biosynthesis in hypothyroid rats. Fed. Proc.27, 399 (1045) (1968).
[20]
PROTEIN MEASUREMENT WITH THE FOLIN PHENOL REAGENT

OliverH. Lowry, NiraJ. Rosebrough, A. Lewis Farr et al.

Journal of Biological Chemistry 1951 10.1016/s0021-9258(19)52451-6
[21]
Meek, J. L., Neff, N. H.: Fluorimetric estimation of 4-hydroxy-3-methoxyphenylethylene glycol sulphate in rat brain. Br. J. Pharmac.45, 435?441 (1972). 10.1111/j.1476-5381.1972.tb08099.x
[22]
Moore, K. E.: Amphetamine toxicity in hyperthyroid mice: effects on endogenous catecholamines. Biochem. Pharmac.14, 1831?1847 (1965). 10.1016/0006-2952(65)90273-x
[23]
Nahorski, S. R.: Heterogeneity of cerebral?-adrenoceptor binding sites in various vertebrate species. Eur. J. Pharmacol.51, 199?209 (1978). 10.1016/0014-2999(78)90405-3
[24]
Nahorski, S. R., Richardson, A.: Pitfalls in the assessment of the specific binding of (-) [3H]-dihydroalprenolol to?-adrenoceptors. Brit. J. Pharmacol.69, 469?470 P (1979).
[25]
Nomura, Y., Oki, K., Segawa, T.: Pharmacological characterization of central?-adrenoceptors which mediate clonidine-induced locomotor hypoactivity in the developing rat. Nauyn-Schmiedeberg's Arch. Pharmacol.311, 41?44 (1980). 10.1007/bf00500300
[26]
Paden, C. M., McEwan, B. S., Eishman, J., Snyder, L., De Groff, V.: Competition by estrogens for catecholamine receptor bindingin vitro. J. Neurochem.39, 512?520 (1982). 10.1111/j.1471-4159.1982.tb03974.x
[27]
Patel, A. J., Rabie, A., Lewis, P. D., Balazs, R.: Effect of thyroid deficiency on postnatal cell formation in the rat brain: a biochemical investigation. Brain Res.104, 33?48 (1976). 10.1016/0006-8993(76)90645-4
[28]
Prange, A. J., Meek, J. L., Lipton, M. A.: Catecholamines: diminished rate of synthesis in rat brain and heart after thyroxine pretreatment. Life Sci.9, 901?907 (1970). 10.1016/0024-3205(70)90074-3
[29]
Pycock, C. J., Jenner, P. G., Marsden, C. D.: The interaction of clonidine with dopamine-dependent behaviour in rodents. Naunyn-Schmiedeberg's Arch. Pharmacol.297, 133?141 (1977). 10.1007/bf00499922
[30]
Rastogi, R. B., Singhai, R. L.: Influence of neonatal and adult hyperthyroidism on behaviour and biosynthetic capacity for norepinephrine, dopamine and 5-hydroxytryptamine in rat brain. J. Pharmacol. Exp. Therapeutics198, 609?617 (1976).
[31]
Rastogi, R. B., Singhal, R. L., Lapierre, Y. D.: Effects of apomorphine on behavioural activity and brain catecholamine synthesis in normal and L-triiodothyronine treated rats. J. Neural Transm.50, 139?148 (1981). 10.1007/bf01249135
[32]
Reisine, T. D., Chesselet, M. F., Lubetzki, C., Cherumy, A., Glowinski, J.: A role for striatal?-adrenergic receptors in the regulation of dopamine release. Brain Res.241, 123?130 (1982). 10.1016/0006-8993(82)91235-5
[33]
Ruiz-Marcos, A., Sanchez-Toscano, F., Escobar Del Ray, F., Morreale De Escobar, G.: Reversible morphological alterations of cortical neurons in juvenile and adult hypothyroidism in the rat. Brain Res.185, 91?102 (1980). 10.1016/0006-8993(80)90674-5
[34]
Smith, C. B., Garcia-Sevilla, J. A., Hollingsworth, P. J.:?2-adrenoceptors in rat brain are decreased after long-term tricyclic antidepressant drag treatment. Brain Res.210, 413?418 (1981). 10.1016/0006-8993(81)90919-7
[35]
Smith, R. M., Patel, A. J., Kingsbury, A. E., Hunt, A., Balazs, R.: Effects of thyroid state on brain development:?-adrenergic receptors and 5?-nucleotidase activity. Brain Res.198, 375?387 (1980). 10.1016/0006-8993(80)90751-9
[36]
Str�mbom, U., Svensson, T. H., Jackson, D. M., Engstr�m, G.: Hyperthyroidism: specifically increased response to central NA-(?)-receptor stimulation and generally increased monoamine turnover in brain. J. Neural Transm.41, 73?92 (1977). 10.1007/bf01252966
[37]
U'Prichard, D. C., Reisine, T. D., Mason, S. T., Fibiger, H. C., Yamamura, H. I.: Modulation of rat brain?- and?-adrenergic receptor populations by lesion of the dorsal noradrenergic bundle. Brain Res.180, 143?154 (1980). 10.1016/0006-8993(80)90500-4
[38]
Williams, L. T., Lefkowitz, R. J., Watanabe, A. M., Hathaway, D. R., Besch, H. R.: Thyroid hormone regulation of?-adrenergic receptor number. J. Biol. Chem.252, 2787?2789 (1977). 10.1016/s0021-9258(17)40528-x
[39]
Zebrowska-Lupina, I., Przegalinski, E., Sloniec. M., Kleinrok. Z.: Clonidine-induced locomotor hyperactivity in rats. The role of postsynaptic?-adrenoceptors. Naunyn-Schmiedeberg's Arch. Pharmacol.297, 227?231 (1977). 10.1007/bf00509265
Metrics
44
Citations
39
References
Details
Published
Mar 01, 1984
Vol/Issue
59(1)
Pages
43-55
License
View
Cite This Article
C. K. Atterwill, S. J. Bunn, D. J. Atkinson, et al. (1984). Effects of thyroid status on presynaptic?2-adrenoceptor function and?-adrenoceptor binding in the rat brain. Journal of Neural Transmission, 59(1), 43-55. https://doi.org/10.1007/bf01249877
Related

You May Also Like

Epidemiology of Parkinson’s disease

Ole-Bjørn Tysnes, Anette Storstein · 2017

2,063 citations

Astrocytes and Glioblastoma cells release exosomes carrying mtDNA

Michele Guescini, Susanna Genedani · 2009

549 citations

The IL-1β phenomena in neuroinflammatory diseases

Andrew S. Mendiola, Astrid E. Cardona · 2017

276 citations

Recent advances in our understanding of neurodegeneration

Kurt A. Jellinger · 2009

217 citations