MMP9 inhibition prevented NF-KB activation and restored PVIN/PNN integrity, linking redox-controlled MMP9 to excitatory/inhibitory imbalance ( In the brain, the major regulator of redox status is GSH, which has also been shown to regulate inflammation
Public data is only available up to May this year, but between January and May 2024 there were 208 reports about tirzepatide on the yellow card scheme, including 31 serious reactions and one suspected death of a man in his sixties
A lower GSH/GSSG ratio generally indicates a more oxidized glutathione pool, but it does not identify the cause

Pyroglutamic Acidosis OVERVIEW Pyroglutamic acidosis is a rare cause of high anion gap metabolic acidosis (HAGMA) pyroglutamic acid is also known as 5-oxoprolinemia produced from -glutamyl cysteine by the enzyme -glutamyl cyclotransferase catabolised by 5-oxoprolinase when glutathione levels are low, the activity of -glutamyl cyclotransferase is increased, resulting in pyroglutamic acid accumulation in glutathione-depleted states CAUSE Risk factors elderly paracetamol use (glutathione depletion by its metabolite NAPQI) sepsis (depletion of glutathione) flucloxacillin (inhibits 5-oxoprolinase) hepatic and renal impairment malnutrition pregnancy vigabatrin congenital enzyme deficiencies (glutathione synthase deficiency) Pyroglutamic acidosis results from disruption of the -glutamyl cycle 5-oxoproline (aka pyroglutamic acid) is produced from -glutamyl cysteine by the enzyme -glutamyl cyclotransferase -glutamyl cyclotransferase activity increases when glutathione levels are low, due to a loss of feedback inhibition from glutathione accumulation of pyroglutamic acid is thought to be due to depletion of the glutathione, particularly when glutathione synthetase is inhibited Decreased activity of 5-oxoprolinase, which breaks down pyroglutamic acid, may also play a role CLINICAL FEATURES manifestations of acidaemia e.g
