HPLC electrochemical detection of trace amines in human plasma and platelets and expression of mRNA transcripts of trace amine receptors in circulating leukocytes

We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To this end, levels of tyramine, octopamine and synephrine were assessed in samples obtained from eight males and eight females, age matched and f...

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Published inNeuroscience letters Vol. 346; no. 1; pp. 89 - 92
Main Authors D'Andrea, Giovanni, Terrazzino, Salvatore, Fortin, Dino, Farruggio, Angelo, Rinaldi, Luciano, Leon, Alberta
Format Journal Article
LanguageEnglish
Published Shannon Elsevier Ireland Ltd 31.07.2003
Elsevier
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Abstract We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To this end, levels of tyramine, octopamine and synephrine were assessed in samples obtained from eight males and eight females, age matched and free from drugs. In plasma, octopamine was detectable in all subjects, synephrine in 15 and tyramine in six out of 16 subjects. Likewise, detectable levels of octopamine together with synephrine were, in contrast to tyramine, found within platelets of most individuals. Intracellular levels of the amines significantly diminished following platelet activation (ADP or collagen). In addition, circulating leukocytes from these same subjects are herein shown to express mRNA transcripts for the recently discovered ‘trace amine receptors’ (TAR-1, -3, -4 and -5). Thus, although baseline plasma levels of octopamine tyramine or synephrine may vary among healthy individuals, the observation that platelets store and actively release these trace amines suggests that they may be effectors involved in platelet-mediated signaling events in the bloodstream.
AbstractList We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To this end, levels of tyramine, octopamine and synephrine were assessed in samples obtained from eight males and eight females, age matched and free from drugs. In plasma, octopamine was detectable in all subjects, synephrine in 15 and tyramine in six out of 16 subjects. Likewise, detectable levels of octopamine together with synephrine were, in contrast to tyramine, found within platelets of most individuals. Intracellular levels of the amines significantly diminished following platelet activation (ADP or collagen). In addition, circulating leukocytes from these same subjects are herein shown to express mRNA transcripts for the recently discovered 'trace amine receptors' (TAR-1, -3, -4 and -5). Thus, although baseline plasma levels of octopamine tyramine or synephrine may vary among healthy individuals, the observation that platelets store and actively release these trace amines suggests that they may be effectors involved in platelet-mediated signaling events in the bloodstream.We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To this end, levels of tyramine, octopamine and synephrine were assessed in samples obtained from eight males and eight females, age matched and free from drugs. In plasma, octopamine was detectable in all subjects, synephrine in 15 and tyramine in six out of 16 subjects. Likewise, detectable levels of octopamine together with synephrine were, in contrast to tyramine, found within platelets of most individuals. Intracellular levels of the amines significantly diminished following platelet activation (ADP or collagen). In addition, circulating leukocytes from these same subjects are herein shown to express mRNA transcripts for the recently discovered 'trace amine receptors' (TAR-1, -3, -4 and -5). Thus, although baseline plasma levels of octopamine tyramine or synephrine may vary among healthy individuals, the observation that platelets store and actively release these trace amines suggests that they may be effectors involved in platelet-mediated signaling events in the bloodstream.
We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To this end, levels of tyramine, octopamine and synephrine were assessed in samples obtained from eight males and eight females, age matched and free from drugs. In plasma, octopamine was detectable in all subjects, synephrine in 15 and tyramine in six out of 16 subjects. Likewise, detectable levels of octopamine together with synephrine were, in contrast to tyramine, found within platelets of most individuals. Intracellular levels of the amines significantly diminished following platelet activation (ADP or collagen). In addition, circulating leukocytes from these same subjects are herein shown to express mRNA transcripts for the recently discovered ‘trace amine receptors’ (TAR-1, -3, -4 and -5). Thus, although baseline plasma levels of octopamine tyramine or synephrine may vary among healthy individuals, the observation that platelets store and actively release these trace amines suggests that they may be effectors involved in platelet-mediated signaling events in the bloodstream.
Author Farruggio, Angelo
Rinaldi, Luciano
D'Andrea, Giovanni
Fortin, Dino
Leon, Alberta
Terrazzino, Salvatore
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Issue 1
Keywords Tyramine
Human plasma
Octopamine
Trace amine receptors
Platelets
Synephrine
High performance liquid chromatography electrochemical detection
Human
Leukocyte
HPLC chromatography
Gene expression
Oxedrine
Blood plasma
Platelet
Amine
Language English
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CC BY 4.0
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Snippet We evaluated, using a multi-channel electrochemical HPLC system, whether trace amines are detectable in plasma and platelets of healthy control subjects. To...
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SubjectTerms Adult
Biogenic Amines - blood
Biological and medical sciences
Blood Platelets - metabolism
Chromatography, High Pressure Liquid - methods
Electrochemistry
Female
Fundamental and applied biological sciences. Psychology
Gene Expression Regulation - physiology
General aspects
High performance liquid chromatography electrochemical detection
Human plasma
Humans
Leukocytes - metabolism
Male
Octopamine
Platelets
RNA, Messenger - biosynthesis
RNA, Messenger - blood
Synephrine
Trace amine receptors
Tyramine
Tyramine - blood
Tyramine - metabolism
Vertebrates: cardiovascular system
Title HPLC electrochemical detection of trace amines in human plasma and platelets and expression of mRNA transcripts of trace amine receptors in circulating leukocytes
URI https://dx.doi.org/10.1016/S0304-3940(03)00573-1
https://www.ncbi.nlm.nih.gov/pubmed/12850555
https://www.proquest.com/docview/73448112
Volume 346
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