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Topic:Carbon Monoxide

Carbon monoxide is a colorless, odorless gas that can have significant effects on equine health. It is produced by the incomplete combustion of carbon-containing fuels and can accumulate in poorly ventilated spaces. Horses exposed to carbon monoxide may experience reduced oxygen delivery to tissues, as carbon monoxide binds preferentially to hemoglobin, forming carboxyhemoglobin, which decreases the blood's oxygen-carrying capacity. Symptoms of carbon monoxide exposure in horses may include lethargy, respiratory distress, and in severe cases, neurological impairment. This topic compiles peer-reviewed research studies and scholarly articles that explore the sources, effects, detection, and management of carbon monoxide exposure in horses, with a focus on understanding the implications for equine health and welfare.
The application of exhaled breath analysis in racing Thoroughbreds and the influence of high intensity exercise and ambient temperature on the concentration of carbon monoxide and pH in exhaled breath.
Veterinary journal (London, England : 1997)    February 5, 2013   Volume 197, Issue 2 318-323 doi: 10.1016/j.tvjl.2012.12.022
Cathcart MP, Love S, Sutton DG, Reardon RJ, Hughes KJ.Analyses of exhaled breath (EB) and exhaled breath condensate (EBC) are non-invasive modalities for assessing the lower airways but these methods have not been applied to Thoroughbred racehorses in training. The aims of this study were to determine whether EB and EBC could be obtained from Thoroughbred racehorses in the field and to investigate the effects of exercise per se and during different ambient temperatures and humidity on exhaled concentrations of nitric oxide (eNO), carbon monoxide (eCO) and EBC pH. EB and EBC samples were obtained from 28 Thoroughbred racehorses pre- and post-exerc...
Thrombelastographic characterization of coagulation/fibrinolysis in horses: role of carboxyheme and metheme states.
Blood coagulation & fibrinolysis : an international journal in haemostasis and thrombosis    December 12, 2012   Volume 24, Issue 3 273-278 doi: 10.1097/MBC.0b013e32835bfd6e
Olver CS, Nielsen VG.Carboxyheme and metheme states modulate hemostasis in humans and other species. Further, carbon monoxide and/or nitric oxide production increase in inflammatory disorders involving the gastrointestinal tract, with associated hypercoagulability or hypocoagulability. In particular, the horse suffers both thrombotic or coagulopathic complications during acute gastrointestinal disease. This investigation characterized the thrombelastographic response to carboxyheme (via CORM-2) or metheme (via phenylhydroxylamine, PHA) states without/with addition of tissue type plasminogen activator. Citrated pla...
The effect of methyl sulphonyl methane supplementation on biomarkers of oxidative stress in sport horses following jumping exercise.
Acta veterinaria Scandinavica    November 7, 2008   Volume 50, Issue 1 45 doi: 10.1186/1751-0147-50-45
Marañón G, Muñoz-Escassi B, Manley W, García C, Cayado P, de la Muela MS, Olábarri B, León R, Vara E.Exercise induces changes in several organs and tissues, and this process might be due to oxidative damage caused by free radicals and inflammatory mediators. Methyl Sulphonyl Methane, better known as MSM, is a naturally occurring sulphur compound with well-known antioxidant properties. On the other hand, Vitamin C is important in limiting free radical damage in the aqueous phase of the cell, and cellular vitamin C status may be linked to the mechanisms involved in quenching cellular reactive oxygen species. The aim of this study was to determine if supplementation with MSM and vitamin C could ...
Can a membrane oxygenator be a model for lung NO and CO transfer?
Journal of applied physiology (Bethesda, Md. : 1985)    January 5, 2006   Volume 100, Issue 5 1527-1538 doi: 10.1152/japplphysiol.00949.2005
Borland C, Dunningham H, Bottrill F, Vuylsteke A.To model lung nitric oxide (NO) and carbon monoxide (CO) uptake, a membrane oxygenator circuit was primed with horse blood flowing at 2.5 l/min. Its gas channel was ventilated with 5 parts/million NO, 0.02% CO, and 22% O2 at 5 l/min. NO diffusing capacity (Dno) and CO diffusing capacity (Dco) were calculated from inlet and outlet gas concentrations and flow rates: Dno = 13.45 ml.min(-1).Torr(-1) (SD 5.84) and Dco = 1.22 ml.min(-1).Torr(-1) (SD 0.3). Dno and Dco increased (P = 0.002) with blood volume/surface area. 1/Dno (P < 0.001) and 1/Dco (P < 0.001) increased with 1/Hb. Dno (P = 0.01...
Volume and enthalpy profiles of CO rebinding to horse heart myoglobin.
Journal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry    May 6, 2003   Volume 8, Issue 6 621-625 doi: 10.1007/s00775-003-0457-4
Miksovská J, Day JH, Larsen RW.Carbon monoxide binding to myoglobin was characterized using the photothermal beam deflection method. The volume and enthalpy changes coupled to CO dissociation were found to be 9.3+/-0.8 mL x mol(-1) and 7.4+/-2.8 kcal x mol(-1), respectively. The corresponding values observed for CO rebinding have the same magnitude but opposite sign: Delta V=-8.6+/-0.9 mL x mol(-1) and Delta H=-5.8+/-2.9 kcal x mol(-1). Ligand rebinding occurs as a single conformational step with a rate constant of 5 x 10(5) M(-1) s(-1) and with activation enthalpy of 7.1+/-0.8 kcal x mol(-1) and activation entropy of -22.4...
Inhaled carbon monoxide concentration during halothane or isoflurane anesthesia in horses.
Veterinary surgery : VS    December 3, 1999   Volume 28, Issue 6 506-512 doi: 10.1111/j.1532-950x.1999.00506.x
Dodam JR, Branson KR, Gross ME, Petroski GF.The purpose of this study was to assess carbon monoxide (CO) exposure during equine anesthesia with either halothane (H) or isoflurane (I) delivered in a circle rebreathing system. Methods: Prospective clinical investigation. Methods: Fifty client-owned horses. Methods: Horses were randomly assigned for anesthetic maintenance with H (n = 26) or I (n = 24). Two large animal anesthetic machines were used and assigned to a single agent for 2-4 weeks at a time. Machines were disassembled and soda lime changed prior to switching anesthetic agents. Inhalant anesthetic concentration and CO concentrat...
Kinetic study of CO and O2 binding to horse heart myoglobin reconstituted with synthetic hemes lacking methyl and vinyl side chains.
Archives of biochemistry and biophysics    June 1, 1984   Volume 231, Issue 2 366-371 doi: 10.1016/0003-9861(84)90399-0
Chang CK, Ward B, Ebina S.Carbon monoxide- and oxygen-binding rates and affinities were measured for horse heart myoglobins reconstituted with synthetic hemes lacking peripheral methyl and vinyl groups. There is an apparent correlation between heme size and ligand specificity, i.e. larger m values (ratios of CO vs O2 association rates, l'/k') with smaller hemes. However, this correlation broke down with the most dealkylated heme. This is interpreted as resulting from protein conformational changes altering the steric crowdedness at the O2-binding site. Spectral properties and autoxidation rates also corroborate this vi...