Plasma levels of 3-methoxy-4-hydroxy-phenylethyleneglycol in acute stroke

Plasma levels of 3-methoxy-4-hydroxy-phenylethyleneglycol (MHPG) were measured in 101 patients with acute stroke, admitted within 72 hours of onset. Plasma MHPG was determined by the use of high-performance liquid chromatograph with electrochemical detection. The mean value of plasma MHPG in patient...

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Published inJapanese Journal of Stroke Vol. 11; no. 4; pp. 366 - 372
Main Authors Hata, Takashi, Tazaki, Yoshiaki, Azuma, Kunihiko, Kanda, Tadashi, Sakai, Fumihiko
Format Journal Article
LanguageJapanese
Published The Japan Stroke Society 1989
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ISSN0912-0726
1883-1923
DOI10.3995/jstroke.11.366

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Abstract Plasma levels of 3-methoxy-4-hydroxy-phenylethyleneglycol (MHPG) were measured in 101 patients with acute stroke, admitted within 72 hours of onset. Plasma MHPG was determined by the use of high-performance liquid chromatograph with electrochemical detection. The mean value of plasma MHPG in patients with cerebral hemorrhage (7.3±0.5 ng/ml, N=47) was significantly higher than that in healthy subjects (3.7±0.3 ng/ml, N=15) (p<0.001). An increase in the levels of plasma MHPG was also noted in patients with cerebral infarction (6.8±0.5 ng/ml, N=54). Within the group of cerebral infarction, plasma MHPG in patients with cerebral embolism increased significantly as compared with cerebral thrombosis. Plasma levels of MHPG were markedly elevated in patients with massive hemorrhage and with large infarction, and these levels well reflected the prognosis. In 16 of 23 patients, levels of MHPG in the cerebral venous blood were higher than those in the arterial blood, which was suggestive of the release of MHPG from the brain into the circulating blood. These results suggest that following the onset of the stroke, an increase in the activity of the noradrenergic neurons may occur in the central nervous system, and noradrenaline and its metabolites may be massively released into the blood.
AbstractList Plasma levels of 3-methoxy-4-hydroxy-phenylethyleneglycol (MHPG) were measured in 101 patients with acute stroke, admitted within 72 hours of onset. Plasma MHPG was determined by the use of high-performance liquid chromatograph with electrochemical detection. The mean value of plasma MHPG in patients with cerebral hemorrhage (7.3±0.5 ng/ml, N=47) was significantly higher than that in healthy subjects (3.7±0.3 ng/ml, N=15) (p<0.001). An increase in the levels of plasma MHPG was also noted in patients with cerebral infarction (6.8±0.5 ng/ml, N=54). Within the group of cerebral infarction, plasma MHPG in patients with cerebral embolism increased significantly as compared with cerebral thrombosis. Plasma levels of MHPG were markedly elevated in patients with massive hemorrhage and with large infarction, and these levels well reflected the prognosis. In 16 of 23 patients, levels of MHPG in the cerebral venous blood were higher than those in the arterial blood, which was suggestive of the release of MHPG from the brain into the circulating blood. These results suggest that following the onset of the stroke, an increase in the activity of the noradrenergic neurons may occur in the central nervous system, and noradrenaline and its metabolites may be massively released into the blood.
Author Tazaki, Yoshiaki
Hata, Takashi
Kanda, Tadashi
Sakai, Fumihiko
Azuma, Kunihiko
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  organization: Department of Internal Medicine, Kitasato University, School of Medicine
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  fullname: Azuma, Kunihiko
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  organization: Department of Internal Medicine, Kitasato University, School of Medicine
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  fullname: Sakai, Fumihiko
  organization: Department of Internal Medicine, Kitasato University, School of Medicine
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References 16) Busto R, Harik SI, Yoshida S, et al : Cerebral norepinephrine depletion enhances recovery after brain ischemia. Ann Neurol 18 : 329-336, 1985
17) Minegishi A, Ishizaki T, Yoshida Y, et al : Plasma monoaminergic metabolites and catecholamines in subarachnoid hemorrhage. Clinical implicatins. Arch Neurol 44 : 423-428, 1987
19) Maas JW, Hattox SE, Landis DH, et al : A direct method for studying 3-methoxy-4-hydroxyphenethyleneglycol (MHPG) productin by brain in awake animals. Eur J Pharmacol 46 : 221-228, 1977
1) Meyer JS, Stoica E, Pascu I, et al : Catecholamine concentrations in CSF and plasma ofpatients with cerebral infarction and hemorrhage. Brain 96 : 277-288, 1973
4) 小松本悟, 後藤文男, 荒木信夫ら : 脳血管障害における血中カテコールアミン動態.脳卒中4;127-134, 1982
20) Kopin IJ, Cordon EK, Jimerson DC, et al : Relation between plasma and cerebrospinal fluid levels of 3-methoxy-4-hydroxyphenylglycol. Science 219 : 73-75, 1983
10) Kopin IJ, Lake RC, Ziegler M, et al Plasma levels of norepinephrine. Ann Intern Med 88 : 671-680, 1978
14) Kopin IJ, Blombery P, Ebert MH, et al : Disposition and metabolism of MHPG-CD3 in humans : Plasma MHPG as the principal path-way of norepinephrine metabolism and as an important determinant of CSF levels of MHPG. Frontiers in Biochemical and Pharmacological Research in Depression, edited by E Usdin et al, New York, Raven Press, pp57-68, 1984
18) Maas JW, Hattox SE, Greene NM, et al : 3-methoxy-4-hydroxyphenethyleneglycol production by human brain in vivo. Science 205 : 1025-1027, 1979
2) 神田 直, 林 英人, 小林祥泰ら1脳卒中急性期における血中カテコールアミンの変動.脳卒中2 : 299-306, 1980
11) Maas JW : Relatinships between central nervous system noradrenergic function and plasma and urinary concentrations of norepinephrine metabolites. Frontiers in Biochemical and Pharmacological Research in depression, edited by E Usdin, et al, New York, Raven Press, pp45-55, 1984
13) Elsworth JD, Redmond DE, Roth RH : Plasma and cerebrospinal fluid 3-methoxy-4-hydroxyphenylethylene glycol (MHPG) as indices of brain norepinephrine metabolism in primates. Brain Res 235 : 115-124, 1982
12) Grunstein HS, Gleeson RM, Smythe GA : Relatinship between hypothalamic noradrenergic neuronal activity and serum 3-methoxy-4-hydroxyphenylethylene glycol in the rat. Life Sci 39 : 207-213, 1986
3) Myers MG, Norris JW, Hachinski VC, et al : Plasma norepinephrine in stroke. Stroke 12 : 200-204, 1981
5) Kanda T, Gotoh F, Yamamoto M, et al : Serum dopamine-β-hydroxylase activity in acute stroke. Stroke 10 : 168-173, 1979
15) Zervas NT, Lavyne MH, Negoro M : Neurotransmitters and the normal and ischemic cerebral circulatin. N Engl J Med 293 : 812-816, 1975
6) Mannarino E, Kirshner N, Nashold BS : The metabolism of [C14) noradrenaline by cat brain in vivo. J Neurochem 10 : 373-379, 1963
7) Schanberg SM, Schildkraut JJ, Breese GR, et al : Metabolism of normetanephrine-H3 in rat brain-identification of conjugated 3-methoxy-4-hydrophenylglycol as the major metabolite. Biochem Pharmacol 17 : 247-254, 1968
9) Ong H, Antonini FC, Yamaguchi N, et al : Simultaneous determination of free 3-methoxy-4-hydroxymandelic acid and free 3-methoxy-4-hydroxyphenylethyleneglycol in plasma by liquid chromatography with electro-chemical detection. J Chromatogr 233 : 97-105, 1982
8) Buchanan DN, Fucek FR, Domino EF : Analysis of urinary 4-hydroxy-3-methoxyphenylethylene glycol as vanillylalcohol by high-performance liquid chromatography with amperometric detectin. J Chromatogr 162 : 394-400, 1979
References_xml – reference: 3) Myers MG, Norris JW, Hachinski VC, et al : Plasma norepinephrine in stroke. Stroke 12 : 200-204, 1981
– reference: 12) Grunstein HS, Gleeson RM, Smythe GA : Relatinship between hypothalamic noradrenergic neuronal activity and serum 3-methoxy-4-hydroxyphenylethylene glycol in the rat. Life Sci 39 : 207-213, 1986
– reference: 18) Maas JW, Hattox SE, Greene NM, et al : 3-methoxy-4-hydroxyphenethyleneglycol production by human brain in vivo. Science 205 : 1025-1027, 1979
– reference: 19) Maas JW, Hattox SE, Landis DH, et al : A direct method for studying 3-methoxy-4-hydroxyphenethyleneglycol (MHPG) productin by brain in awake animals. Eur J Pharmacol 46 : 221-228, 1977
– reference: 5) Kanda T, Gotoh F, Yamamoto M, et al : Serum dopamine-β-hydroxylase activity in acute stroke. Stroke 10 : 168-173, 1979
– reference: 1) Meyer JS, Stoica E, Pascu I, et al : Catecholamine concentrations in CSF and plasma ofpatients with cerebral infarction and hemorrhage. Brain 96 : 277-288, 1973
– reference: 20) Kopin IJ, Cordon EK, Jimerson DC, et al : Relation between plasma and cerebrospinal fluid levels of 3-methoxy-4-hydroxyphenylglycol. Science 219 : 73-75, 1983
– reference: 16) Busto R, Harik SI, Yoshida S, et al : Cerebral norepinephrine depletion enhances recovery after brain ischemia. Ann Neurol 18 : 329-336, 1985
– reference: 4) 小松本悟, 後藤文男, 荒木信夫ら : 脳血管障害における血中カテコールアミン動態.脳卒中4;127-134, 1982
– reference: 15) Zervas NT, Lavyne MH, Negoro M : Neurotransmitters and the normal and ischemic cerebral circulatin. N Engl J Med 293 : 812-816, 1975
– reference: 8) Buchanan DN, Fucek FR, Domino EF : Analysis of urinary 4-hydroxy-3-methoxyphenylethylene glycol as vanillylalcohol by high-performance liquid chromatography with amperometric detectin. J Chromatogr 162 : 394-400, 1979
– reference: 17) Minegishi A, Ishizaki T, Yoshida Y, et al : Plasma monoaminergic metabolites and catecholamines in subarachnoid hemorrhage. Clinical implicatins. Arch Neurol 44 : 423-428, 1987
– reference: 14) Kopin IJ, Blombery P, Ebert MH, et al : Disposition and metabolism of MHPG-CD3 in humans : Plasma MHPG as the principal path-way of norepinephrine metabolism and as an important determinant of CSF levels of MHPG. Frontiers in Biochemical and Pharmacological Research in Depression, edited by E Usdin et al, New York, Raven Press, pp57-68, 1984
– reference: 9) Ong H, Antonini FC, Yamaguchi N, et al : Simultaneous determination of free 3-methoxy-4-hydroxymandelic acid and free 3-methoxy-4-hydroxyphenylethyleneglycol in plasma by liquid chromatography with electro-chemical detection. J Chromatogr 233 : 97-105, 1982
– reference: 11) Maas JW : Relatinships between central nervous system noradrenergic function and plasma and urinary concentrations of norepinephrine metabolites. Frontiers in Biochemical and Pharmacological Research in depression, edited by E Usdin, et al, New York, Raven Press, pp45-55, 1984
– reference: 6) Mannarino E, Kirshner N, Nashold BS : The metabolism of [C14) noradrenaline by cat brain in vivo. J Neurochem 10 : 373-379, 1963
– reference: 7) Schanberg SM, Schildkraut JJ, Breese GR, et al : Metabolism of normetanephrine-H3 in rat brain-identification of conjugated 3-methoxy-4-hydrophenylglycol as the major metabolite. Biochem Pharmacol 17 : 247-254, 1968
– reference: 13) Elsworth JD, Redmond DE, Roth RH : Plasma and cerebrospinal fluid 3-methoxy-4-hydroxyphenylethylene glycol (MHPG) as indices of brain norepinephrine metabolism in primates. Brain Res 235 : 115-124, 1982
– reference: 2) 神田 直, 林 英人, 小林祥泰ら1脳卒中急性期における血中カテコールアミンの変動.脳卒中2 : 299-306, 1980
– reference: 10) Kopin IJ, Lake RC, Ziegler M, et al Plasma levels of norepinephrine. Ann Intern Med 88 : 671-680, 1978
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Snippet Plasma levels of 3-methoxy-4-hydroxy-phenylethyleneglycol (MHPG) were measured in 101 patients with acute stroke, admitted within 72 hours of onset. Plasma...
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SubjectTerms 3-methoxy-4-hydroxy-phenylethyleneglycol (MHPG)
autonomic nervous system
cerebrovascular disease
noradrenaline
Title Plasma levels of 3-methoxy-4-hydroxy-phenylethyleneglycol in acute stroke
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