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Topic:Nitric Oxide

Nitric oxide (NO) is a gaseous signaling molecule involved in various physiological processes in horses. It is produced by nitric oxide synthase enzymes and plays a role in vascular regulation, immune response, and neurotransmission. In equine physiology, nitric oxide contributes to the modulation of blood flow, particularly in the respiratory and cardiovascular systems. It also influences inflammatory responses and can impact muscle function. This page compiles peer-reviewed research studies and scholarly articles that explore the production, function, and implications of nitric oxide in equine health and disease.
Histochemical and functional evidence for a cholinergic innervation of the equine ureter.
Journal of the autonomic nervous system    May 1, 1994   Volume 47, Issue 3 159-170 doi: 10.1016/0165-1838(94)90177-5
Prieto D, Simonsen U, Martín J, Hernández M, Rivera L, Lema L, García P, García-Sacristán A.The distribution of acetylcholinesterase (AChE)-positive nerve fibers and cells, as well as the effects of acetylcholine (ACh) on ureteral smooth muscle and small resistance arteries were investigated in the equine ureter by means of histochemical, classic organ baths and myograph techniques. AChE-positive nerve fibers were widely distributed throughout the ureteral wall forming muscular, subepithelial and perivascular nerve plexuses, whose density was highest at the intravesical ureter. AChE-positive nerve cells were also identified grouped as adventitial or intramural ganglia. ACh increased ...
Inhibitory nerve distribution and mediation of NANC relaxation by nitric oxide in horse airways.
Journal of applied physiology (Bethesda, Md. : 1985)    January 1, 1994   Volume 76, Issue 1 339-344 doi: 10.1152/jappl.1994.76.1.339
Yu M, Wang Z, Robinson NE, Leblanc PH.The distribution of inhibitory nerves and the mediator of the inhibitory nonadrenergic noncholinergic (iN-ANC) nervous system were investigated in smooth muscle preparations from seven regions of equine airways. In tissues incubated with atropine and precontracted with histamine, electrical field stimulation produced frequency-dependent relaxation, and the magnitude of the relaxation decreased from trachea to central bronchi and was absent in peripheral airways. The degree of relaxation in bronchi was not simply a function of bronchial size or generation. Propranolol inhibited part of the rela...
Effect of inositol hexakisphosphate on the spectroscopic properties of the nitric oxide derivative of ferrous horse and bovine hemoglobin.
Journal of inorganic biochemistry    October 1, 1990   Volume 40, Issue 2 157-162 doi: 10.1016/0162-0134(90)80049-4
Ascenzi P, Coletta M, Desideri A, Polizio F, Condò SG, Giardina B.The effect of inositol hexakisphosphate (IHP) on the spectroscopic (EPR and absorbance) properties of the nitric oxide derivative of ferrous horse and bovine hemoglobin (Hb) has been investigated. In the absence of IHP, the nitric oxide derivative of ferrous horse Hb shows spectroscopic properties similar to those of the corresponding derivative of ferrous human Hb that are generally taken as typical of the high affinity state of tetrametric hemoproteins. Similar to human Hb, the addition of IHP to the nitric oxide derivative of ferrous horse Hb induces a transition toward a species characteri...
Diffusion of nitrous oxide into the intestinal lumen of ponies during halothane-nitrous oxide anesthesia.
American journal of veterinary research    October 1, 1981   Volume 42, Issue 10 1751-1753 
Moens Y, De Moor A.No abstract available
Nitrous oxide: effect on accumulation rate and uptake of bowel gases.
Anesthesia and analgesia    September 1, 1979   Volume 58, Issue 5 405-408 doi: 10.1213/00000539-197909000-00012
Steffey EP, Johnson BH, Eger EI, Howland D.Breathing 79% nitrous oxide (N2O) in oxygen increased the rate of accumulation of bowel gas during intraluminal bowel segment infusions of hydrogen, methane (CH4), air, or carbon dioxide (CO2) in four pentobarbital-anesthetized dogs more than did breathing 100% oxygen. A N2O-associated increase in the volume of naturally produced intestinal gas in five halothane-anesthetized ponies corroborated the findings in the dog studies. In a second group of four dogs a bolus of CH4 or CO2 was injected into the bowel lumen. When the dogs breathed O2 the bowel gas volume decreased. Gas was virtually absen...
Metabolism of biogenic amines in the pulmonary circulation.
Bibliotheca anatomica    January 1, 1977   Issue 16 Pt 2 387-389 
Gillis CN.No abstract available
Nitrite and nitrate pharmacokinetics in the dog, sheep, and pony.
American journal of veterinary research    July 1, 1975   Volume 36, Issue 7 941-947 
Schneider NR, Yeary RA.Elimination kinetics of nitrite and nitrate in the dog, sheep, and pony were determined. The elimination half-lives of nitrite were 0.499, 0.475, and 0.566 hours in the dog, sheep, and pony, respectively; those of nitrate were 44.681, 4.233, and 4.821 hours. Apparent specific volumes of distribution (V'd) of nitrite were variable among the 3 species--1,623.7 ml/kg in the dog, 278.0 ml/kg in the sheep, and 191.6 ml/kg in the pony. The V'd of nitrate were less varied--dog, 238.5 ml/kg; sheep, 291.1 ml/kg; and pony, 209.3 ml/kg. In the in vitro studies on protein binding in canine plasma, the ext...
Nitrogen utilization in ponies.
Journal of animal science    April 1, 1972   Volume 34, Issue 4 592-595 doi: 10.2527/jas1972.344592x
Hintz HF, Schryver HF.No abstract available
Nitrogen conservation by ponies fed a low -protein ration.
American journal of veterinary research    April 1, 1971   Volume 32, Issue 4 579-588 
Houpt TR, Houpt KA.No abstract available
Effect of nitrogen in a closed-circle system with low oxygen flows for equine anesthesia.
Journal of the American Veterinary Medical Association    January 15, 1969   Volume 154, Issue 2 166-170 
Tevik A, Sharpe J, Nelson AW, Berkley WE, Lumb WV.No abstract available
The in vitro sensitivity to nitrofurans of organisms isolated from the uteri of thoroughbred mares.
Journal of comparative pathology    January 1, 1957   Volume 67, Issue 1 106-109 doi: 10.1016/s0368-1742(57)80010-1
MORAN AB, CRONIN MT.No abstract available
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