Publication:
Choline or cdp-choline restores hypotension and improves myocardial and respiratory functions in dogs with experimentally-induced endotoxic shock

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Date

2021-10-27

Authors

Kocaturk, Meric
Yilmaz, Zeki
Cansev, Mehmet

Authors

Ozarda, Yesim
Ceron, Jose Joaquin
Buturak, Ali
Ulus, Ismail H.

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Elsevier

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Abstract

Endotoxin shock is associated with severe impairments in cardiovascular and respiratory functions. We showed previously that choline or cytidine-5 '-diphosphocholine (CDP-choline) provides beneficial effects in experimental endotoxin shock in dogs. The objective of the present study was to determine the effects of choline or CDPcholine on endotoxin-induced cardiovascular and respiratory dysfunctions. Dogs were treated intravenously (i.v.) with saline or endotoxin (LPS, 0.1 mg/kg) 5 min before i.v. infusion of saline, choline (20 mg/kg) or CDP-choline (70 mg/kg). Blood pressure, cardiac rate, myocardial and left ventricular functions, respiratory rate, blood gases, serum electrolytes and cardiac injury markers were determined before and at 0.5-48 h after endotoxin. Plasma tumor necrosis factor alpha (TNF-alpha), high mobility group box-1 (HMGB1), catecholamine and nitric oxide (NO) levels were measured 2 h and 24 h after the treatments. Endotoxin caused immediate and sustained reductions in blood pressure, cardiac output, pO2 and pH; changes in left ventricular functions, structure and volume parameters; and elevations in heart rate, respiratory rate, pCO2 and serum electrolytes (Na, K, Cl, Ca and P). Endotoxin also resulted in elevations in blood levels of cardiac injury markers, TNF-alpha, HMGB1, catecholamine and NO. In choline- or CDP-choline-treated dogs, all endotoxin effects were much smaller in magnitude and shorter in duration than observed values in controls. These data show that treatment with choline or CDP-choline improves functions of cardiovascular and respiratory systems in experimental endotoxemia and suggest that they may be useful in treatment of endotoxin shock in clinical setting.

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Adrenal tyrosine-hydroxylase, Reverses hypotension, Acetylcholine synthesis, Blood-pressure, Canine model, Involvement, Release, Rat, Induction, Stimulation, Choline, Endotoxemia, Sepsis, Cardiopulmonary function, Dogs, Science & technology, Life sciences & biomedicine, Veterinary sciences, Veterinary sciences

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