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Published in: International Journal of Legal Medicine 4/2016

01-07-2016 | Original Article

Determination of urinary catecholamines and metanephrines in cardiac deaths

Authors: Tania Hervet, Eric Grouzmann, Silke Grabherr, Patrice Mangin, Cristian Palmiere

Published in: International Journal of Legal Medicine | Issue 4/2016

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Abstract

The aim of this study was to measure catecholamines and their O-methylated metabolites in urine and vitreous humor collected in cardiac deaths and noncardiac control cases that underwent medicolegal investigations. Our first goal was to assess whether cardiac events of different types are characterized by different catecholamine/metanephrine urine and/or vitreous profiles. Our second goal was to determine whether noncardiac causes of death with different survival intervals are characterized by different catecholamine/metanephrine urine and/or vitreous profiles. Two study groups were prospectively and retrospectively formed, a cardiac death group (including three subgroups, according to the cause of death) and a noncardiac death group (including two subgroups, according to the length of the agonal period). Postmortem angiography, autopsy, histology, toxicology, and biochemistry were performed in all cases. First results seem to indicate that absolute values measured in urine and vitreous for each of the analyzed markers display no significant differences relating to each of the tested cardiac death subgroups. In the control group, absolute concentrations measured in urine and vitreous for each of the analyzed parameters failed to show significant differences relating to the length of agonal period. Our preliminary findings do not seem to confirm the conclusions of former studies and fail to corroborate the usefulness of urine catecholamine and metanephrine analysis to characterize stress response intensity or length of the dying process in the postmortem setting.
Literature
1.
go back to reference Zouhal H, Jacob C, Delamarche P, Gratas-Delamarche A (2008) Catecholamines and the effects of exercise, training and gender. Sports Med 38:401–423CrossRef Zouhal H, Jacob C, Delamarche P, Gratas-Delamarche A (2008) Catecholamines and the effects of exercise, training and gender. Sports Med 38:401–423CrossRef
2.
go back to reference Ranabir S, Reetu K (2011) Stress and hormones. Indian J Endocrinol Metab 15:18–22CrossRef Ranabir S, Reetu K (2011) Stress and hormones. Indian J Endocrinol Metab 15:18–22CrossRef
3.
go back to reference Ishikawa T, Inamori-Kawamoto O, Quan L, Michiue T, Chen JH, Wang Q, Zhu BL, Maeda H (2014) Postmortem urinary catecholamine levels with regard to the cause of death. Legal Med 16:344–349CrossRef Ishikawa T, Inamori-Kawamoto O, Quan L, Michiue T, Chen JH, Wang Q, Zhu BL, Maeda H (2014) Postmortem urinary catecholamine levels with regard to the cause of death. Legal Med 16:344–349CrossRef
4.
go back to reference Pakanen L, Kortelainen ML, Särkioja T, Porvari K (2011) Increased adrenaline to noradrenaline ratio is a superior indicator of antemortem hypothermia compared with separate catecholamine concentrations. J Forensic Sci 56:1213–1218CrossRef Pakanen L, Kortelainen ML, Särkioja T, Porvari K (2011) Increased adrenaline to noradrenaline ratio is a superior indicator of antemortem hypothermia compared with separate catecholamine concentrations. J Forensic Sci 56:1213–1218CrossRef
5.
go back to reference Palmiere C, Teresiński G, Hejna P, Mangin P, Grouzmann E (2014) Diagnostic performance of urinary metanephrines for the postmortem diagnosis of hypothermia. Forensic Sci Med Pathol 10:518–525CrossRef Palmiere C, Teresiński G, Hejna P, Mangin P, Grouzmann E (2014) Diagnostic performance of urinary metanephrines for the postmortem diagnosis of hypothermia. Forensic Sci Med Pathol 10:518–525CrossRef
6.
go back to reference Tormey WP, Carney M, FitzGerald RJ (1999) Catecholamines in urine after death. Forensic Sci Int 103:67–71CrossRef Tormey WP, Carney M, FitzGerald RJ (1999) Catecholamines in urine after death. Forensic Sci Int 103:67–71CrossRef
7.
go back to reference Wilke N, Janssen H, Fahrenhorst C, Hecker H, Manns MP, Brabant EG, Tröger HD, Breitmeier D (2007) Postmortem determination of concentrations of stress hormones in various body fluids—is there a dependency between adrenaline/noradrenaline quotient, cause of death and agony time? Int J Legal Med 121:385–394CrossRef Wilke N, Janssen H, Fahrenhorst C, Hecker H, Manns MP, Brabant EG, Tröger HD, Breitmeier D (2007) Postmortem determination of concentrations of stress hormones in various body fluids—is there a dependency between adrenaline/noradrenaline quotient, cause of death and agony time? Int J Legal Med 121:385–394CrossRef
8.
go back to reference Ostrowski SR, Pedersen SH, Jensen JS, Mogelvang R, Johansson PI (2013) Acute myocardial infarction is associated with endothelial glycocalyx and cell damage and a parallel increase in circulating catecholamines. Crit Care 17:R32CrossRef Ostrowski SR, Pedersen SH, Jensen JS, Mogelvang R, Johansson PI (2013) Acute myocardial infarction is associated with endothelial glycocalyx and cell damage and a parallel increase in circulating catecholamines. Crit Care 17:R32CrossRef
9.
go back to reference Grabherr S, Doenz F, Steger B, Dirnhofer R, Dominguez A, Sollberger B, Gygax E, Rizzo E, Chevallier C, Meuli R, Mangin P (2011) Multi-phase post-mortem CT angiography: development of a standardized protocol. Int J Legal Med 125:791–802CrossRef Grabherr S, Doenz F, Steger B, Dirnhofer R, Dominguez A, Sollberger B, Gygax E, Rizzo E, Chevallier C, Meuli R, Mangin P (2011) Multi-phase post-mortem CT angiography: development of a standardized protocol. Int J Legal Med 125:791–802CrossRef
10.
go back to reference Grouzmann E, Fathi M, Gillet M, de Torrenté A, Cavadas C, Brunner H, Buclin T (2001) Disappearance rate of catecholamines, total metanephrines, and neuropeptide Y from the plasma of patients after resection of pheochromocytoma. Clin Chem 47:1075–1082CrossRef Grouzmann E, Fathi M, Gillet M, de Torrenté A, Cavadas C, Brunner H, Buclin T (2001) Disappearance rate of catecholamines, total metanephrines, and neuropeptide Y from the plasma of patients after resection of pheochromocytoma. Clin Chem 47:1075–1082CrossRef
11.
go back to reference Grouzmann E, Drouard-Troalen L, Baudin E, Plouin PF, Muller B, Grand D, Buclin T (2010) Diagnostic accuracy of free and total metanephrines in plasma and fractionated metanephrines in urine of patients with pheochromocytoma. Eur J Endocrinol 162:951–960CrossRef Grouzmann E, Drouard-Troalen L, Baudin E, Plouin PF, Muller B, Grand D, Buclin T (2010) Diagnostic accuracy of free and total metanephrines in plasma and fractionated metanephrines in urine of patients with pheochromocytoma. Eur J Endocrinol 162:951–960CrossRef
12.
go back to reference Pussard E, Neveux M, Guigueno N (2009) Reference intervals for urinary catecholamines and metabolites from birth to adulthood. Clin Biochem 42:536–539CrossRef Pussard E, Neveux M, Guigueno N (2009) Reference intervals for urinary catecholamines and metabolites from birth to adulthood. Clin Biochem 42:536–539CrossRef
13.
go back to reference Madea B (2009) Sudden death, especially in infancy—improvement of diagnoses by biochemistry, immunohistochemistry and molecular pathology. Legal Med 11(Suppl 1):S36–S42CrossRef Madea B (2009) Sudden death, especially in infancy—improvement of diagnoses by biochemistry, immunohistochemistry and molecular pathology. Legal Med 11(Suppl 1):S36–S42CrossRef
14.
go back to reference Madea H, Zhu BL, Ishikawa T, Quan L, Michiue T (2009) Significance of postmortem biochemistry in determining the cause of death. Legal Med 11(Suppl 1):S46–S49CrossRef Madea H, Zhu BL, Ishikawa T, Quan L, Michiue T (2009) Significance of postmortem biochemistry in determining the cause of death. Legal Med 11(Suppl 1):S46–S49CrossRef
15.
go back to reference Kernbach-Wighton G (2009) Diagnostic problems with functional cause of death: analytical approaches and procedures. Legal Med 11(Suppl 1):S31–S35CrossRef Kernbach-Wighton G (2009) Diagnostic problems with functional cause of death: analytical approaches and procedures. Legal Med 11(Suppl 1):S31–S35CrossRef
16.
go back to reference Maeda H, Zhu BL, Ishikawa T, Michiue T (2010) Forensic molecular pathology of violent deaths. Forensic Sci Int 203:83–92CrossRef Maeda H, Zhu BL, Ishikawa T, Michiue T (2010) Forensic molecular pathology of violent deaths. Forensic Sci Int 203:83–92CrossRef
17.
go back to reference Luna A (2009) Is postmortem biochemistry really useful? Why is it not widely used in forensic pathology? Legal Med 11(Suppl 1):S27–S30CrossRef Luna A (2009) Is postmortem biochemistry really useful? Why is it not widely used in forensic pathology? Legal Med 11(Suppl 1):S27–S30CrossRef
18.
go back to reference Zhu BL, Ishikawa T, Michiue T, Li DR, Zhao D, Quan L, Oritani S, Bessho Y, Maeda H (2007) Postmortem serum catecholamine levels in relation to the cause of death. Forensic Sci Int 173:122–129CrossRef Zhu BL, Ishikawa T, Michiue T, Li DR, Zhao D, Quan L, Oritani S, Bessho Y, Maeda H (2007) Postmortem serum catecholamine levels in relation to the cause of death. Forensic Sci Int 173:122–129CrossRef
19.
go back to reference Ishikawa T, Quan L, Michiue T, Kawamoto O, Wang Q, Chen JH, Zhu BL, Maeda H (2013) Postmortem catecholamine levels in pericardial and cerebrospinal fluids with regard to the cause of death in medicolegal autopsy. Forensic Sci Int 228:52–60CrossRef Ishikawa T, Quan L, Michiue T, Kawamoto O, Wang Q, Chen JH, Zhu BL, Maeda H (2013) Postmortem catecholamine levels in pericardial and cerebrospinal fluids with regard to the cause of death in medicolegal autopsy. Forensic Sci Int 228:52–60CrossRef
20.
go back to reference Palmiere C, Bardy D, Letovanec I, Mangin P, Augsburger M, Ventura F, Iglesias K, Werner D (2013) Biochemical markers of fatal hypothermia. Forensic Sci Int 226:54–61CrossRef Palmiere C, Bardy D, Letovanec I, Mangin P, Augsburger M, Ventura F, Iglesias K, Werner D (2013) Biochemical markers of fatal hypothermia. Forensic Sci Int 226:54–61CrossRef
21.
go back to reference Chan EC, Wee PY, Ho PC (2000) Evaluation of degradation of urinary catecholamines and metanephrines and deconjugation of their sulfoconjugates using stability-indicating reversed-phase ion-pair HPLC with electrochemical detection. J Pharm Biomed Anal 22:515–526CrossRef Chan EC, Wee PY, Ho PC (2000) Evaluation of degradation of urinary catecholamines and metanephrines and deconjugation of their sulfoconjugates using stability-indicating reversed-phase ion-pair HPLC with electrochemical detection. J Pharm Biomed Anal 22:515–526CrossRef
22.
go back to reference Willemsen JJ, Ross HA, Lenders JW, Sweep FC (2007) Stability of urinary fractionated metanephrines and catecholamines during collection, shipment, and storage of samples. Clin Chem 53:268–272CrossRef Willemsen JJ, Ross HA, Lenders JW, Sweep FC (2007) Stability of urinary fractionated metanephrines and catecholamines during collection, shipment, and storage of samples. Clin Chem 53:268–272CrossRef
23.
go back to reference Roberts NB, Higgins G, Sargazi M (2010) A study on the stability of urinary free catecholamines and free methyl-derivatives at different pH, temperature and time of storage. Clin Chem Lab Med 48:81–87CrossRef Roberts NB, Higgins G, Sargazi M (2010) A study on the stability of urinary free catecholamines and free methyl-derivatives at different pH, temperature and time of storage. Clin Chem Lab Med 48:81–87CrossRef
24.
go back to reference Peitzsch M, Pelzel D, Lattke P, Siegert G, Eisenhofer G (2015) Preservation of urine free catecholamines and their free O-methylated metabolites with citric acid as an alternative to hydrochloric acid for LC-MS/MS-based analyses. Clin Chem Lab Med. doi:10.1515/cclm-2015-0044 Peitzsch M, Pelzel D, Lattke P, Siegert G, Eisenhofer G (2015) Preservation of urine free catecholamines and their free O-methylated metabolites with citric acid as an alternative to hydrochloric acid for LC-MS/MS-based analyses. Clin Chem Lab Med. doi:10.​1515/​cclm-2015-0044
25.
go back to reference Hausdörfer C, Pedal I, Zimmer G, Remppis A, Strobel G (1999) Catecholamines, myofibrillary degeneration of the heart muscle and cardiac troponin T in various types of agony. Arch Kriminol 196:46–57 Hausdörfer C, Pedal I, Zimmer G, Remppis A, Strobel G (1999) Catecholamines, myofibrillary degeneration of the heart muscle and cardiac troponin T in various types of agony. Arch Kriminol 196:46–57
Metadata
Title
Determination of urinary catecholamines and metanephrines in cardiac deaths
Authors
Tania Hervet
Eric Grouzmann
Silke Grabherr
Patrice Mangin
Cristian Palmiere
Publication date
01-07-2016
Publisher
Springer Berlin Heidelberg
Published in
International Journal of Legal Medicine / Issue 4/2016
Print ISSN: 0937-9827
Electronic ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-015-1303-2

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