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Original Article

Physiological and Pathological Influences on Serum Monoamine Oxidase Level: Effect of Age, Sex, Contraceptive Steroids and Diabetes Mellitus

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Pages 79-84 | Received 20 Oct 1968, Accepted 21 Dec 1968, Published online: 08 Jul 2009

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Read on this site (5)

B. Mattsson, T. Mjörndal, L. Oreland, C. Perris & S.-Å. Persson. (1972) Monoaminooxidas (MAO) och katekol-O-metyltransferas (COMT) vid affektiva störningar. Nordisk Psykiatrisk Tidsskrift 26:6, pages 359-360.
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G. Tufvesson. (1970) Fluorometric Determination of Amine Oxidase Activity in Human Blood Serum with Kynuramine as Substrate. Scandinavian Journal of Clinical and Laboratory Investigation 26:2, pages 151-154.
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G. Tufvesson. (1970) Determination of Monoamine Oxidase Activity in Human Blood Serum with 14C-Butylamine as Substrate. Scandinavian Journal of Clinical and Laboratory Investigation 25:3, pages 231-235.
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G. Tufvesson & N. Tryding. (1969) Determination of Diamine Oxidase Activity in Normal Human Blood Serum. Scandinavian Journal of Clinical and Laboratory Investigation 24:2, pages 163-168.
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G. Tufvesson. (1969) Determination of Monoamine Oxidase Activity in Human Blood Serum with 14C-Benzylamine and 14C-Tyramine as Substrates. Scandinavian Journal of Clinical and Laboratory Investigation 23:1, pages 71-77.
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Tao Jiang, Pengfei Rong & Wei Wang. (2020) Chemical probes for drug-induced liver injury imaging. Future Medicinal Chemistry 12:9, pages 835-852.
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Yongchao Liu, Lili Teng, Chengyan Xu, Hong-Wen Liu, Shuai Xu, Haowei Guo, Lin Yuan & Xiao-Bing Zhang. (2019) A “Double-Locked” and enzyme-activated molecular probe for accurate bioimaging and hepatopathy differentiation. Chemical Science 10:47, pages 10931-10936.
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May Y. W. Wong, Sonia Saad, Carol Pollock & Muh Geot Wong. (2013) Semicarbazide-sensitive amine oxidase and kidney disease. American Journal of Physiology-Renal Physiology 305:12, pages F1637-F1644.
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Kristiina AaltoMikael MaksimowMarkus JuonalaJorma ViikariAntti JulaMika KähönenSirpa JalkanenOlli T. RaitakariMarko Salmi. (2012) Soluble Vascular Adhesion Protein-1 Correlates With Cardiovascular Risk Factors and Early Atherosclerotic Manifestations. Arteriosclerosis, Thrombosis, and Vascular Biology 32:2, pages 523-532.
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. 2009. Copper Amine Oxidases. Copper Amine Oxidases 279 323 .
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Craig M. StolenGennady G. YegutkinRiikka KurkijärviPetri BonoKari AlitaloSirpa Jalkanen. (2004) Origins of Serum Semicarbazide-Sensitive Amine Oxidase. Circulation Research 95:1, pages 50-57.
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Peter H Yu, Shannon Wright, Ellen H Fan, Zhao-Rong Lun & Diana Gubisne-Harberle. (2003) Physiological and pathological implications of semicarbazide-sensitive amine oxidase. Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 1647:1-2, pages 193-199.
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Frans Boomsma, Usha M. Bhaggoe, Angelique M.B. van der Houwen & Anton H. van den Meiracker. (2003) Plasma semicarbazide-sensitive amine oxidase in human (patho)physiology. Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 1647:1-2, pages 48-54.
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Jenny L. E. Nordquist, Camilla Göktürk & Lars Oreland. (2002) Semicarbazide-Sensitive Amine Oxidase (SSAO) Gene Expression in Alloxan-induced Diabetes in Mice. Molecular Medicine 8:12, pages 824-829.
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Jenny L.E. Grönvall-Nordquist, Lars B. Bäcklund, Håkan Garpenstrand, Jonas Ekblom, Britta Landin, Peter H. Yu, Lars Oreland & Urban Rosenqvist. (2001) Follow-up of plasma semicarbazide-sensitive amine oxidase activity and retinopathy in Type 2 diabetes mellitus. Journal of Diabetes and its Complications 15:5, pages 250-256.
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Sigrid Van Dyck, Ann Van Schepdael & Jos Hoogmartens. (2001) Michaelis-Menten analysis of bovine plasma amine oxidase by capillary electrophoresis using electrophoretically mediated microanalysis in a partially filled capillary. ELECTROPHORESIS 22:7, pages 1436-1442.
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Frans Boomsma, Jan van Dijk, Usha M Bhaggoe, Angelique M.B Bouhuizen & Anton H van den Meiracker. (2000) Variation in semicarbazide-sensitive amine oxidase activity in plasma and tissues of mammals. Comparative Biochemistry and Physiology Part C: Pharmacology, Toxicology and Endocrinology 126:1, pages 69-78.
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Yulin Deng & Peter H. Yu. (1999) Assessment of the Deamination of Aminoacetone, an Endogenous Substrate for Semicarbazide-Sensitive Amine Oxidase. Analytical Biochemistry 270:1, pages 97-102.
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Zsuzsa Mészáros, Tamás Szombathy, Laura Raimondi, István Karádi, László Romics & Kálmán Magyar. (1999) Elevated serum semicarbazide-sensitive amine oxidase activity in non-insulin-dependent diabetes mellitus: Correlation with body mass index and serum triglyceride. Metabolism 48:1, pages 113-117.
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Yulin Deng, Frans Boomsma & Peter H. Yu. (1998) Deamination of methylamine and aminoacetone increases aldehydes and oxidative stress in rats. Life Sciences 63:23, pages 2049-2058.
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P.H. Yu & Y.L. Deng. (1998) Endogenous formaldehyde as a potential factor of vulnerability of atherosclerosis: involvement of semicarbazide-sensitive amine oxidase-mediated methylamine turnover. Atherosclerosis 140:2, pages 357-363.
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Jenny L.E. Grönvall, Håkan Garpenstrand, Lars Oreland & Jonas Ekblom. (1998) Autoradiographic imaging of formaldehyde adducts in mice: Possible relevance for vascular damage in diabetes. Life Sciences 63:9, pages 759-768.
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P. H. Yu & D. M. Zuo. (1997) Aminoguanidine inhibits semicarbazide-sensitive amine oxidase activity: implications for advanced glycation and diabetic complications. Diabetologia 40:11, pages 1243-1250.
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Ayşe Veral, Gülinnaz Alper, Gülriz Menteş & Biltan Ersöz. (1997) Age and Sex Related Alterations in Serum and Platelet Monoamine Oxidase. Clinical Chemistry and Laboratory Medicine 35:4.
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G.A. Lyles. (1996) Mammalian plasma and tissue-bound semicarba ide-sensitive amine oxidases: Biochemical, pharmacological and toxicological aspects. The International Journal of Biochemistry & Cell Biology 28:3, pages 259-274.
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P.H. Yu & D.M. Zuo. (1996) Formaldehyde produced endogenously via deamination of methylamine. A potential risk factor for initiation of endothelial injury. Atherosclerosis 120:1-2, pages 189-197.
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Brian A. Callingham, Alan E. Crosbie & Brian A. Rous. 1995. Current Neurochemical and Pharmacological Aspects of Biogenic Amines - Their Function, Oxidative Deamination and Inhibition. Current Neurochemical and Pharmacological Aspects of Biogenic Amines - Their Function, Oxidative Deamination and Inhibition 305 321 .
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Peter H. Yu, Dong-Mei Zuo & Bruce A. Davis. (1994) Characterization of human serum and umbilical artery semicarbazide-sensitive amine oxidase (SSAO). Biochemical Pharmacology 47:6, pages 1055-1059.
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T. Matsumoto, O. Suzuki, T. Furuta, M. Asai, Y. Kurokawa, Y. Nimura, Y. Katsumata & I. Takahashi. (1985) A sensitive fluorometric assay for serum monoamine oxidase with kynuramine as substrate. Clinical Biochemistry 18:2, pages 126-129.
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F.F. Farris, E.O. Magarian & F.O. Slininger. (1978) A microassay for the determination of monoamine oxidase activity using electron capture gas chromatography. Analytical Biochemistry 88:2, pages 495-503.
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Zoltan L. Hegedus, Mark D. Altschule & Ullhas Nayak. (2018) A Clinical Method for Testing Abnormal in vitro Haemolysis from Catecholamine Metabolites in Schizophrenia . British Journal of Psychiatry 121:562, pages 265-269.
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