Plasma catecholamines in acute stroke
Plasma catecholamines were measured in 19 control subjects and 64 patients with acute stroke, admitted within 48 hours of onset. Plasma norepinephrine (pNE) and epinephrine (pE) were determined by the application of high speed liquid chromatograph combined with trihydroxy indole method. Markedly ele...
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| Published in | Japanese Journal of Stroke Vol. 2; no. 3; pp. 299 - 306 |
|---|---|
| Main Authors | , , , , |
| Format | Journal Article |
| Language | Japanese |
| Published |
The Japan Stroke Society
1980
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0912-0726 1883-1923 1883-1923 |
| DOI | 10.3995/jstroke.2.299 |
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| Abstract | Plasma catecholamines were measured in 19 control subjects and 64 patients with acute stroke, admitted within 48 hours of onset. Plasma norepinephrine (pNE) and epinephrine (pE) were determined by the application of high speed liquid chromatograph combined with trihydroxy indole method. Markedly elevated levels of pNE and pE were observed in patients with massive cerebral hemorrhage and cerebral embolism with large hemispheric infarcts. The levels of pNE gradually decreased over the next few days. The mean pNE values for cerebral hemorrhage, cerebral infarction and subarachnoid hemorrhage within 48 hours of onset were 753±116 pg/ml (SEM), 397±65 pg/ml and 630±291 pg/ml, respectively. The mean value for cerebral hemorrhage was significantly higher than that of 292±29 pg/ml for control subjects (p<0.005) and that for cerebral infarction (p<0.01). The mean value of pE for cerebral hemorrhage was also significantly higher than those for cerebral infarction and control subjects. The mean pNE levels of 1199±162 pg/ml in 13 died patients (11 cerebral hemorrhage, 2 cerebral infarction) were significantly higher than that of 362±39 pg/ml in 43 survived patients (p<0.001), suggesting that the plasma levels of NE within 48 hours of onset well reflect the prognosis. These results indicate that excessive sympathetic nerve discharge occurred concomitantly with adrenomedullary hyperfunction following the onset of stroke. |
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| AbstractList | Plasma catecholamines were measured in 19 control subjects and 64 patients with acute stroke, admitted within 48 hours of onset. Plasma norepinephrine (pNE) and epinephrine (pE) were determined by the application of high speed liquid chromatograph combined with trihydroxy indole method. Markedly elevated levels of pNE and pE were observed in patients with massive cerebral hemorrhage and cerebral embolism with large hemispheric infarcts. The levels of pNE gradually decreased over the next few days. The mean pNE values for cerebral hemorrhage, cerebral infarction and subarachnoid hemorrhage within 48 hours of onset were 753±116 pg/ml (SEM), 397±65 pg/ml and 630±291 pg/ml, respectively. The mean value for cerebral hemorrhage was significantly higher than that of 292±29 pg/ml for control subjects (p<0.005) and that for cerebral infarction (p<0.01). The mean value of pE for cerebral hemorrhage was also significantly higher than those for cerebral infarction and control subjects. The mean pNE levels of 1199±162 pg/ml in 13 died patients (11 cerebral hemorrhage, 2 cerebral infarction) were significantly higher than that of 362±39 pg/ml in 43 survived patients (p<0.001), suggesting that the plasma levels of NE within 48 hours of onset well reflect the prognosis. These results indicate that excessive sympathetic nerve discharge occurred concomitantly with adrenomedullary hyperfunction following the onset of stroke. |
| Author | Kobayashi, Shotai Tazaki, Yoshiaki Furuhashi, Norihisa Kanda, Tadashi Hayashi, Hidehito |
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| References | 33) Weil-Malherbe H, Axelrod J, Tomchick R : Blood-brain barrier for adrenaline, Science 129 : 1226, 1959 15) 伊藤健一, 鈴木英夫, 佐藤誠也 : 高速液体クロマトグラフィーによる血漿カテコールアミン測定法の臨床応用のための基i礎的検討 (第2報), 日内泌誌53 : 529, 1977 34) Meyer JS, Welch KMA, Okamoto S et al : Disordered neurotransmitter function. Demonstrations by measurements of norepinephrine and 5-hydroxytryptamine in CSF of patients with recent cerebral infarction, Brain 97 : 655, 1974 30) Weinshilboum RM : Serum dopamine-β-hydroxylase, Pharmacol Rev 30 : 133, 1979 14) Kanda T, Gotoh F, Yamamoto M et al : Serum dopamine-β-hydroxylase activity in acute stroke, Stroke 10 : 168, 1979 2) Gross M : Circulatory reflexes in cerebral ischemia involving different vascular territories, Clin Sci 38 : 491, 1970 8) Von Euler US : Twenty years of noradrenaline, Pharmacol Rev 18 : 29, 1966 22) Benedict CR, Loach AB : Sympathetic nervous activity in patients with subarachnoid hemorrhage, Stroke 9 : 237, 1978 29) Kopin I J : Dopamine-β-hydroxylase, basic and clinical studies, Ann Int Med 85 : 211, 1976 3) 島津邦男, 後藤文男, 小松本悟 : 脳血管障害と自律神経機能, 自律神経15 : 193, 1978 9) Kopin I J, Lake RC, Ziegler M et al : Plasma levels of norepinephrine, Ann Int Med 88 : 671, 1978 32) Kogure K, Scheinberg P, Matsumoto A et al : Catecholamines in experimental brain ischemia, Arch Neurol 32 : 21, 1975 26) Whitby LG, Axelrod J, Weil-Malherbe H : The fate of H- norepinephrine in animals, J Pharmacol Exp Ther 132 : 193, 1961 13) Meyer JS, Stoica F, Pascu I et al : Catecholamine concentrations in CSF and plasma of patients with cerebral infarction and hemorrhage, Brain 96 : 277, 1973 16) 佐藤誠也, 鈴木英夫 : ホルモン測定法の進歩 (III), カテコールアミンおよび関連物質の測定法, 織田敏次他編, 内科セミナーEND8, 永井書店, 1979, p.32 25) Graf CJ, Rossi NP : Catecholamine response to intracranial hypertension, J Neurosurg 49 : 862, 1978 17) Von Euler US, Franksson C, Helstrom J : Adrenaline and noradrenaline output in urine after unilateral and bilateral adrenalectomy in man, Acta Physiol Scand 31 : 1, 1954 19) Ziegler MG, Lake CR, Kopin I J : Plasma noradrenaline increases with age, Nature 261 : 333, 1976 31) Zervas NT, Lavyne MH, Negoro M : Neurotransmitters and the normal and ischemic cerebral circulation, N Engl J Med 293 : 812 1975 6) Edvinsson L : Neurogenic mechanisms in the cerebrovascular bed. Autonomic nerves, amine receptors and their effects on cerebral blood flow, Acta Physiol Scand, Suppl 427 : 1, 1975 12) Neil-Dwyer G, Gruickshank J, Stott A et al : The Urinary catecholamine and plasma cor tisol levels in patients with subarachnoid haemorrhage, J Neurol Sci 22 : 375, 1974 7) 後藤文男 : 脳循環の神経性調節, 脳卒中1 : 303, 1979 18) Sever PS, Birch M, Osikowska B et al : Plasma noradrenaline in essential hypertension, Lancet 1 : 1078, 1977 28) Gotoh F, Kanda T, Sakai F et al : Serum dopamine-β-hydroxylase activity in migraine, Arch Neurol 33 : 656, 1976 5) 神田 直, 林 英人, 小林祥泰他 : 脳卒中における体位変換と血中ノルアドレナリン, 臨床神経19 : 885, 1979 20) 口井正夫, 梅本政昭, 南方常左他 : 本態性高血圧における交感神経系の関与-血中カテコールアミン, DBH活性よりみた交感神経活動を中心として-, 脈管学19 : 749, 1979 1) Appenzeller O, Descarries L : Circulatory reflexes in patients with cerebrovascular disease, N Engl J Med 271 : 820, 1964 21) Champlain J, Cousineau D : Lack of correlation between age and circulating catecholamines in hypertensive patients, N Engl J Med 297 : 53, 1977 11) 斉藤 宏 : 脳血管障害における尿中catechol体の動態に関する臨床的研究, 福岡医学雑誌57 : 970, 1966 23) Benedict CR, Loach AB : Clinical significance of plasma adrenaline and noradrenaline concentrations in patients with subarachnoid hemorrhage, J Neurol Neurosurg Psychiatry 41 : 113, 1978 4) Johnson RH, Smith AC, Spalding JMK et al : Effect of posture on blood-pressure in elderly patients, Lancet 1 : 731, 1965 27) Nagatsu T, Udenfriend S : Photometric assay of dopamine-β-hydroxylase activity in human blood, Clin Chem 18 : 980, 1972 24) Champlain J, Farley L, Cousineau D et al : Circulating catecholamine levels in human and experimental hypertension, Circ Res 38 : 109, 1976 10) 友松達弥, 上羽康之, 松本哲郎他 : 脳血管性障害時の心電図と尿中カテコール体の変化について, 日循会誌28 : 905, 1964 |
| References_xml | – reference: 21) Champlain J, Cousineau D : Lack of correlation between age and circulating catecholamines in hypertensive patients, N Engl J Med 297 : 53, 1977 – reference: 18) Sever PS, Birch M, Osikowska B et al : Plasma noradrenaline in essential hypertension, Lancet 1 : 1078, 1977 – reference: 33) Weil-Malherbe H, Axelrod J, Tomchick R : Blood-brain barrier for adrenaline, Science 129 : 1226, 1959 – reference: 7) 後藤文男 : 脳循環の神経性調節, 脳卒中1 : 303, 1979 – reference: 8) Von Euler US : Twenty years of noradrenaline, Pharmacol Rev 18 : 29, 1966 – reference: 27) Nagatsu T, Udenfriend S : Photometric assay of dopamine-β-hydroxylase activity in human blood, Clin Chem 18 : 980, 1972 – reference: 13) Meyer JS, Stoica F, Pascu I et al : Catecholamine concentrations in CSF and plasma of patients with cerebral infarction and hemorrhage, Brain 96 : 277, 1973 – reference: 17) Von Euler US, Franksson C, Helstrom J : Adrenaline and noradrenaline output in urine after unilateral and bilateral adrenalectomy in man, Acta Physiol Scand 31 : 1, 1954 – reference: 34) Meyer JS, Welch KMA, Okamoto S et al : Disordered neurotransmitter function. Demonstrations by measurements of norepinephrine and 5-hydroxytryptamine in CSF of patients with recent cerebral infarction, Brain 97 : 655, 1974 – reference: 6) Edvinsson L : Neurogenic mechanisms in the cerebrovascular bed. Autonomic nerves, amine receptors and their effects on cerebral blood flow, Acta Physiol Scand, Suppl 427 : 1, 1975 – reference: 30) Weinshilboum RM : Serum dopamine-β-hydroxylase, Pharmacol Rev 30 : 133, 1979 – reference: 1) Appenzeller O, Descarries L : Circulatory reflexes in patients with cerebrovascular disease, N Engl J Med 271 : 820, 1964 – reference: 23) Benedict CR, Loach AB : Clinical significance of plasma adrenaline and noradrenaline concentrations in patients with subarachnoid hemorrhage, J Neurol Neurosurg Psychiatry 41 : 113, 1978 – reference: 5) 神田 直, 林 英人, 小林祥泰他 : 脳卒中における体位変換と血中ノルアドレナリン, 臨床神経19 : 885, 1979 – reference: 2) Gross M : Circulatory reflexes in cerebral ischemia involving different vascular territories, Clin Sci 38 : 491, 1970 – reference: 15) 伊藤健一, 鈴木英夫, 佐藤誠也 : 高速液体クロマトグラフィーによる血漿カテコールアミン測定法の臨床応用のための基i礎的検討 (第2報), 日内泌誌53 : 529, 1977 – reference: 11) 斉藤 宏 : 脳血管障害における尿中catechol体の動態に関する臨床的研究, 福岡医学雑誌57 : 970, 1966 – reference: 32) Kogure K, Scheinberg P, Matsumoto A et al : Catecholamines in experimental brain ischemia, Arch Neurol 32 : 21, 1975 – reference: 12) Neil-Dwyer G, Gruickshank J, Stott A et al : The Urinary catecholamine and plasma cor tisol levels in patients with subarachnoid haemorrhage, J Neurol Sci 22 : 375, 1974 – reference: 26) Whitby LG, Axelrod J, Weil-Malherbe H : The fate of H- norepinephrine in animals, J Pharmacol Exp Ther 132 : 193, 1961 – reference: 14) Kanda T, Gotoh F, Yamamoto M et al : Serum dopamine-β-hydroxylase activity in acute stroke, Stroke 10 : 168, 1979 – reference: 20) 口井正夫, 梅本政昭, 南方常左他 : 本態性高血圧における交感神経系の関与-血中カテコールアミン, DBH活性よりみた交感神経活動を中心として-, 脈管学19 : 749, 1979 – reference: 19) Ziegler MG, Lake CR, Kopin I J : Plasma noradrenaline increases with age, Nature 261 : 333, 1976 – reference: 22) Benedict CR, Loach AB : Sympathetic nervous activity in patients with subarachnoid hemorrhage, Stroke 9 : 237, 1978 – reference: 24) Champlain J, Farley L, Cousineau D et al : Circulating catecholamine levels in human and experimental hypertension, Circ Res 38 : 109, 1976 – reference: 16) 佐藤誠也, 鈴木英夫 : ホルモン測定法の進歩 (III), カテコールアミンおよび関連物質の測定法, 織田敏次他編, 内科セミナーEND8, 永井書店, 1979, p.32 – reference: 3) 島津邦男, 後藤文男, 小松本悟 : 脳血管障害と自律神経機能, 自律神経15 : 193, 1978 – reference: 10) 友松達弥, 上羽康之, 松本哲郎他 : 脳血管性障害時の心電図と尿中カテコール体の変化について, 日循会誌28 : 905, 1964 – reference: 28) Gotoh F, Kanda T, Sakai F et al : Serum dopamine-β-hydroxylase activity in migraine, Arch Neurol 33 : 656, 1976 – reference: 25) Graf CJ, Rossi NP : Catecholamine response to intracranial hypertension, J Neurosurg 49 : 862, 1978 – reference: 29) Kopin I J : Dopamine-β-hydroxylase, basic and clinical studies, Ann Int Med 85 : 211, 1976 – reference: 9) Kopin I J, Lake RC, Ziegler M et al : Plasma levels of norepinephrine, Ann Int Med 88 : 671, 1978 – reference: 31) Zervas NT, Lavyne MH, Negoro M : Neurotransmitters and the normal and ischemic cerebral circulation, N Engl J Med 293 : 812 1975 – reference: 4) Johnson RH, Smith AC, Spalding JMK et al : Effect of posture on blood-pressure in elderly patients, Lancet 1 : 731, 1965 |
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| Title | Plasma catecholamines in acute stroke |
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