Intrathecal and systemic alterations of L-arginine metabolism in patients after intracerebral hemorrhage
Author(s) -
Marius Marc-Daniel Mader,
Rainer H. Böger,
Daniel Appel,
Edzard Schwedhelm,
Munif Haddad,
Malte Mohme,
Katrin Lamszus,
Manfred Westphal,
Patrick Czorlich,
Juliane Hannemann
Publication year - 2021
Publication title -
journal of cerebral blood flow and metabolism
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.167
H-Index - 193
eISSN - 1559-7016
pISSN - 0271-678X
DOI - 10.1177/0271678x20983216
Subject(s) - intracerebral hemorrhage , arginase , arginine , nitric oxide , citrulline , cerebrospinal fluid , pathophysiology , medicine , nitric oxide synthase , ornithine , endogeny , intraventricular hemorrhage , endocrinology , pharmacology , chemistry , biochemistry , subarachnoid hemorrhage , biology , amino acid , pregnancy , gestational age , genetics
Alterations in the concentration of nitric oxide (NO) and L-arginine metabolites have been associated with the pathophysiology of different vascular diseases. Here, we describe striking changes in L-arginine metabolism after hemorrhagic stroke. Blood and cerebrospinal fluid (CSF) samples of patients with intracerebral hemorrhage (ICH) and/or intraventricular hemorrhage were collected over a ten-day period. Liquid chromatography-tandem mass spectrometry was used to quantify key substrates and products of L-arginine metabolizing enzymes as well as asymmetric (ADMA) and symmetric dimethylarginine (SDMA). Changes in the plasma were limited to early reductions in L-ornithine, L-lysine, and L-citrulline concentrations. Intrathecally, we observed signs of early NO synthase (NOS) upregulation followed by a decrease back to baseline accompanied by a rise in the level of its endogenous NOS-inhibitor ADMA. SDMA demonstrated increased levels throughout the observation period. For arginase, a pattern of persistently elevated activity was measured and arginine:glycine amidinotransferase (AGAT) appeared to be reduced in its activity at later time points. An early reduction in CSF L-arginine concentration was an independent risk factor for poor outcome. Together, these findings further elucidate pathophysiological mechanisms after ICH potentially involved in secondary brain injury and may reveal novel therapeutic targets.
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