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Topic:Sodium

Sodium is an essential electrolyte in horses, involved in maintaining fluid balance, nerve function, and muscle contraction. It plays a significant role in the regulation of osmotic pressure within cells and the overall homeostasis of bodily fluids. Horses obtain sodium primarily through their diet, and it can be supplemented through salt blocks or electrolyte solutions, especially in cases of heavy sweating or increased physical activity. Imbalances in sodium levels, either deficiency or excess, can impact a horse's health and performance. This page compiles peer-reviewed research studies and scholarly articles that explore the metabolism, dietary requirements, and physiological effects of sodium in equine health.
Effect of sodium methyl arsinate and imidocarb dipropionate antiprotozoal drugs on the pharmacokinetic of gentamicin in equines.
DTW. Deutsche tierarztliche Wochenschrift    August 11, 1998   Volume 105, Issue 7 274-276 
Soliman GA.The pharmacokinetic behaviour of gentamicin sulphate (3.4 mg/kg bwt) was studied following its intramuscular injection to a group of horses and to another group of horses premedicated with sodium methyl arsinate (2 mg/kg bwt) or imidocarb dipropionate (4.8 mg/kg bwt). Considerable differences were observed in the pharmacokinetics of gentamicin in pre-medicated horses and in horses which had received the antibiotic alone. Peak serum concentration of gentamicin (9.85 +/- 0.05 and 11.15 +/- 0.15 micrograms/ml) were attained within 1.45 +/- 0.05 and 0.92 +/- 0.04 h in arsinate and imidocarb-medica...
Rehydration following exercise: effects of administration of water versus an isotonic oral rehydration solution (ORS).
Veterinary journal (London, England : 1997)    August 6, 1998   Volume 156, Issue 1 41-49 doi: 10.1016/s1090-0233(98)80060-9
Marlin DJ, Scott CM, Mills PC, Louwes H, Vaarten J.The effects of administering (1) 6L isotonic oral rehydration solution (ORS), similar in composition to plasma (except for an elevated potassium concentration) and with an osmotic skeleton and (2) 6L water (no osmotic skeleton), were evaluated in five thoroughbred horses following exercise-induced dehydration. The horses were exercised on a treadmill for 10 min at walk (1.7 m.s-1; approximately 15% VO2max), 40 min at trot (3.7 m.s-1; approximately 25% VO2max) and 10 min at walk (1.7 m.s-1; approximately 15% VO2max). Exercise was undertaken on a 3 degrees incline at 30 degrees C/80% RH. Solutio...
Regional differences in endothelial function in horse lungs: possible role in blood flow distribution?
Journal of applied physiology (Bethesda, Md. : 1985)    August 4, 1998   Volume 85, Issue 2 537-542 doi: 10.1152/jappl.1998.85.2.537
Pelletier N, Robinson NE, Kaiser L, Derksen FJ.We investigated regional differences of in vitro responses of pulmonary arteries (6-mm OD) from the dorsocaudal (top) and cranioventral (bottom) lung regions to endothelium-dependent vasodilators (methacholine, bradykinin, and calcium ionophore A-23187). Methacholine relaxed endothelium-intact top vessels; however, in bottom vessels, a small relaxation preceded a profound contraction. In top vessels, removal of endothelial cells converted relaxation to contraction, and in bottom vessels it abolished relaxation and enhanced contraction. Bradykinin and A-23187 were more potent and caused greater...
Effects of concentrated electrolytes administered via a paste on fluid, electrolyte, and acid base balance in horses.
American journal of veterinary research    July 11, 1998   Volume 59, Issue 7 898-903 
Sosa León LA, Hodgson DR, Carlson GP, Rose RJ.To test effectiveness of an electrolyte paste in correcting fluid, electrolyte and acid base alterations in response to furosemide administration. Methods: 6 Standardbreds. Methods: Horses received electrolyte paste or water only (control). The paste was given orally 3 hours after furosemide administration (1 mg/kg of body weight, IM). Water was given ad libitum soon after the paste and 3 hours after furosemide administration to treated and control groups, respectively. Paste Na+, K+, and Cl- composition was approximately 2,220, 620, and 2,840 mmol, respectively. The PCV and plasma concentrati...
Adrenal insufficiency in a neonatal foal.
Journal of the American Veterinary Medical Association    May 30, 1998   Volume 212, Issue 10 1594-1596 
Couëtil LL, Hoffman AM.A 3-day-old female Pinto was admitted with profuse watery diarrhea and severe hypovolemic shock. After 1 week of intensive care, the foal developed seizures associated with profound serum electrolyte abnormalities suggestive of hypoadrenocorticism. Treatment with prednisone and isotonic saline (0.9% NaCl) solution led to prompt clinical response. Premature withdrawal of prednisone resulted in relapse of clinical signs. A diagnosis of adrenal insufficiency was made on the basis of clinical signs, electrolyte abnormalities, low baseline cortisol concentration, and lack of response to administrat...
Contribution of K+ channels and ouabain-sensitive mechanisms to the endothelium-dependent relaxations of horse penile small arteries.
British journal of pharmacology    May 30, 1998   Volume 123, Issue 8 1609-1620 doi: 10.1038/sj.bjp.0701780
Prieto D, Simonsen U, Hernández M, García-Sacristán A.1. Penile small arteries (effective internal lumen diameter of 300 600 microm) were isolated from the horse corpus cavernosum and mounted in microvascular myographs in order to investigate the mechanisms underlying the endothelium-dependent relaxations to acetylcholine (ACh) and bradykinin (BK). 2. In arteries preconstricted with the thromboxane analogue U46619 (3-30 nM), ACh and BK elicited concentration-dependent relaxations, pD2 and maximal responses being 7.71+/-0.09 and 91+/-1 % (n=23), and 8.80+/-0.07 and 89+/-2% (n=24) for ACh and BK, respectively. These relaxations were abolished by me...
Type-II renal tubular acidosis and ventricular tachycardia in a horse.
Journal of the American Veterinary Medical Association    May 30, 1998   Volume 212, Issue 10 1597-1599 
MacLeay JM, Wilson JH.A 14-year-old Arabian mare was admitted for lethargy, anorexia, and low fecal output. On the basis of laboratory, physical examination, and electrocardiographic findings, diagnoses of type-II renal tubular acidosis (RTA), impaction of the large colon, and ventricular tachycardia were made. Diagnosis of type-II RTA was based on measurement of a low fractional excretion value for potassium and fractional excretion value for sodium within the reference range. In contrast, horses with type-I RTA have high fractional excretion values for sodium and fractional excretion values for potassium within r...
The effects of equivalent doses of tromethamine or sodium bicarbonate in healthy horses.
Veterinary surgery : VS    May 30, 1998   Volume 27, Issue 3 284-291 doi: 10.1111/j.1532-950x.1998.tb00129.x
Pedrick TP, Moon PF, Ludders JW, Erb HN, Gleed RD.To describe the effects of tromethamine, a putative treatment for metabolic acidosis, and to compare its biochemical effects with those of sodium bicarbonate. Methods: Randomized intervention study with repeated measures. Methods: 16 healthy horses, 3 to 17 years old, weighing 391 to 684 kg. Methods: Ten horses received 3 mEq/kg tromethamine and six received 3 mEq/kg sodium bicarbonate. Samples of venous blood and cerebrospinal fluid (CSF) were collected at intervals before and after drug administration. Heart rate and breathing rate were also recorded at intervals. Results: Median standard ba...
Electrolyte disturbances in foals with severe rhabdomyolysis.
Journal of veterinary internal medicine    May 22, 1998   Volume 12, Issue 3 173-177 doi: 10.1111/j.1939-1676.1998.tb02114.x
Perkins G, Valberg SJ, Madigan JM, Carlson GP, Jones SL.Marked electrolyte abnormalities characterized by profound hyperkalemia, hyponatremia, hypocalcemia, and hyperphosphatemia were noted in 4 neonatal foals with acute rhabdomyolysis and pigmenturia. In 2 foals, rhabdomyolysis developed 4-6 days after admission for dysmaturity, and in 2 foals, rhabdomyolysis was evident on presentation. Rhabdomyolysis was a consequence of selenium deficiency with or without vitamin E deficiency, possibly combined with increased oxidant stress due to sepsis or hypoxia and reperfusion injury after parturition. Foals gained from 7 to 15% of their initial body weight...
Adenosine and hypoxanthine transport in horse erythrocytes: evidence for a polymorphism in the transport of hypoxanthine via a sodium-dependent cotransporter.
Experimental physiology    May 6, 1998   Volume 83, Issue 2 203-209 doi: 10.1113/expphysiol.1998.sp004104
Jarvis SM, Harris RC.The inward transport of two purines, adenosine and hypoxanthine, at 37 degrees C by horse erythrocytes was compared. No mediated transport of adenosine was detected in horse erythrocytes, nor was saturable, high-affinity binding of the potent facilitated-diffusion inhibitor nitrobenzylthioinosine demonstrable in horse erythrocyte membranes. In contrast, erythrocytes from most horses possessed a saturable sodium-dependent hypoxanthine transporter (apparent K(m), 100 +/- 28 microM; Vmax, 0.20 +/- 0.08 mmol (l cells)-1 h-1; means +/- S.E.M., n = 5). Guanine inhibited hypoxanthine influx (apparent...
Induced diarrhoea in horses. Part 2: Response to administration of an oral rehydration solution.
Veterinary journal (London, England : 1997)    May 2, 1998   Volume 155, Issue 2 161-170 doi: 10.1016/s1090-0233(98)80012-9
Ecke P, Hodgson DR, Rose RJ.Hydration status, electrolyte balance and acid-base balance were studied in four adult standardbred geldings with castor oil-induced diarrhoea. The horses received an oral rehydration solution (ORS) at a point when signs consistent with mild decreases in effective circulating fluid volume were first detected. Within 1.5 h of ORS administration, all horses exhibited a significant metabolic acidosis. At this time, mean values for venous blood pH, [HCO3], and standard base excess were 7.264 +/- 0.011, 17.7 +/- 0.3 mmol L-1, and -8.2 +/- 0.4 mmol L-1, respectively. Throughout the duration of the s...
Treatment of exercise-induced dehydration.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 159-173 doi: 10.1016/s0749-0739(17)30218-3
Sosa León LA.One of the most common consequences of prolonged exercise is fluid and electrolyte depletion. Fluid and electrolyte losses during exercise may limit the horse's performance and, in extreme cases, jeopardize its health. To avoid or treat the deleterious effects of dehydration, fluid and electrolyte supplementation is essential. This article provides recommendations for fluid and electrolyte supplementation for horses involved in endurance-related events.
Treatments affecting fluid and electrolyte status during exercise.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 175-204 doi: 10.1016/s0749-0739(17)30219-5
Schott HC, Hinchcliff KW.A number of feeding and management practices, dietary electrolyte supplements, and medications may affect fluid and electrolyte status in resting and exercising horses. The contents of the gastrointestinal tract of the equine athlete, unlike its human counterpart, are responsible for more than 10% of body weight. Although ingesta traditionally has been considered dead weight for the sprinting horse, it is a valuable reservoir of fluid and electrolytes that may be used during endurance exercise. Numerous strategies for hyperhydration of the equine athlete and for replacement of fluid and electr...
Sweating. Fluid and ion losses and replacement.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 75-95 doi: 10.1016/s0749-0739(17)30213-4
McCutcheon LJ, Geor RJ.In the horse, sweat is produced by apocrine glands which are present over most haired and nonhaired skin. Although sweat secretion is initiated under a number of circumstances, the central drive for sweating in response to a thermal stimulus is the primary mechanism for its production. Sweating is an essential and primary mechanism for heat dissipation during exercise or exposure to hot ambient conditions. The rate of sweat production will reflect the interaction of numerous factors, including exercise intensity, ambient conditions, state of hydration, and the training or heat acclimation stat...
Fluid and electrolyte balance in endurance horses.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 147-158 doi: 10.1016/s0749-0739(17)30217-1
Flaminio MJ, Rush BR.In horses, fluid losses of 10L to 15L per hour can occur during endurance exercise under hot environmental conditions. The horse's sweat is hypertonic with respect to plasma, and large amounts of sodium, chloride and potassium are lost during prolonged exercise. Horses that reach exhaustive syndrome often show pronounced increases in plasma protein concentration. This could be an indication of failure of the compensatory fluid shift from the intracellular compartment caused by severe dehydration. Thorough physical examination by the ride veterinarian allows early recognition of dehydration and...
Fluid, electrolyte, and acid-base balances in three-day, combined-training horses.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 137-145 doi: 10.1016/s0749-0739(17)30216-x
White SL.Horses competing in 3-day, combined-training events develop a metabolic acidosis that is partially compensated for by a respiratory alkalosis immediately after phases B and D. By the end of phase C and 30 minutes to 2 hours after phase D, the acidosis is resolved by the oxidation of lactate, and a metabolic alkalosis prevails. A reduction in TBW and cation content occurs, which often is not replenished 12 to 24 hours after the event, even though the serum or plasma concentration of various constituents may be within normal limits. Hypochloremia and hypocalcemia, however, may persist 12 or more...
Fluid, electrolyte, and acid-base responses to exercise in racehorses.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 121-136 doi: 10.1016/s0749-0739(17)30215-8
Hyyppä S, Pösö AR.During both high-intensity and short-distance exercise, the high rate of expended energy is met by anaerobic oxidation of glucose to lactic acid; this is the main cause of metabolic acidosis observed during racing. In addition, plasma volume decreases because water moves from the vasculature to the intracellular and interstitial spaces at the onset of intense exercise. These fluid shifts, together with active ion-exchange between blood and tissue, cause marked changes in electrolyte concentrations. This article reviews the mechanisms of acid-base disturbances, fluid shifts, and electrolyte cha...
Physiology of body fluids in the horse.
The Veterinary clinics of North America. Equine practice    April 30, 1998   Volume 14, Issue 1 1-22 doi: 10.1016/s0749-0739(17)30209-2
Johnson PJ.This article presents a brief overview of the physiology of homeostasis in the horse and discusses the units of measurement by which dissolved electrolytes are assessed. Differences in electrolyte composition between compartments of the body and the manner in which water is exchanged between them are reviewed. The mechanisms by which alterations in osmolality and effective circulating volume are detected and the physiological responses to those alterations are presented.
Effects of administration of water versus an isotonic oral rehydration solution (ORS) at rest and changes during exercise and recovery.
Veterinary journal (London, England : 1997)    February 10, 1998   Volume 155, Issue 1 69-78 doi: 10.1016/s1090-0233(98)80040-3
Marlin DJ, Scott CM, Mills PC, Louwes H, Vaarten J.The administration of 41 of an isotonic, plasma-like oral rehydration solution (ORS) with an osmotic skeleton and 41 of water (water; no osmotic skeleton), were evaluated in five thoroughbred horses. Solutions were administered by nasogastric tube 4 h after feeding. Uptake of deuterium, concentrations of plasma sodium, potassium, chloride, glucose, total protein and packed cell volume, pH, PCO2, HCO3-, total CO2, actual base excess, standard base excess, plasma volume and weight loss were assessed both at rest, and during and after exercise on a treadmill. Each horse underwent four experimenta...
Gastric emptying of oral rehydration solutions at rest and after exercise in horses.
Research in veterinary science    January 16, 1998   Volume 63, Issue 2 183-187 doi: 10.1016/s0034-5288(97)90015-1
Sosa León LA, Hodgson DR, Rose RJ.We examined the gastric emptying (GE) of oral rehydration solutions (ORS) at rest and after exercise in four Standardbred horses. In one study isotonic, cold isotonic (5 degrees C), isotonic containing glucose and hypertonic fluid were tested at rest. In another study, isotonic fluid was given following a bout of treadmill exercise at 70 per cent VO2 max until exhaustion or at rest. In both studies, a single dose of 8 litres was given via nasogastric tube. GE and electrolyte concentrations (Na+, K+ and Cl-) of the stomach content were measured at 15 minutes intervals for one hour. In both stud...
Mechanisms of echinocytosis induced by Crotalus atrox venom.
Veterinary pathology    November 5, 1997   Volume 34, Issue 5 442-449 doi: 10.1177/030098589703400508
Walton RM, Brown DE, Hamar DW, Meador VP, Horn JW, Thrall MA.Transient echinocytosis has been reported in association with snake envenomation in humans and dogs. An in vitro model of echinocytosis induced by venom of crotalus atrox (western diamondback rattlesnake) was established to characterize erythrocyte morphologic changes and to investigate potential mechanisms of echinocytic transformation. Erythrocyte morphologic changes produced after the addition of venom to canine, feline, equine, and human blood were characterized by dose-dependent echinocytosis. Type III echinocytosis were consistently induced in vitro at a dose comparable to in vivo enveno...
Rate and composition of sweat fluid losses are unaltered by hypohydration during prolonged exercise in horses.
Journal of applied physiology (Bethesda, Md. : 1985)    October 24, 1997   Volume 83, Issue 4 1133-1143 doi: 10.1152/jappl.1997.83.4.1133
Kingston JK, Geor RJ, McCutcheon LJ.Rate and ionic composition of sweat fluid losses and partitioning of evaporative heat loss into respiratory and cutaneous components were determined in six horses during three 15-km phases of exercise at approximately 40% of maximal O2 uptake. Pattern of change in sweat rate (SR) and composition was similar during each phase. SR increased rapidly for the first 20 min of exercise but remained at approximately 24-28 ml . m-2 . min-1 during the remainder of each phase. Similarly, the concentrations of Na and Cl in sweat increased until 30 min of exercise but were unchanged thereafter. Sweat osmol...
Evidence for the presence of sodium- and potassium-dependent adenosine triphosphatase alpha1 and beta1 subunit isoforms and their probable role in blastocyst expansion in the preattachment horse conceptus.
Biology of reproduction    September 1, 1997   Volume 57, Issue 3 630-640 doi: 10.1095/biolreprod57.3.630
Waelchli RO, MacPhee DJ, Kidder GM, Betteridge KJ.The unusual hypotonicity of equine blastocyst fluid has prompted us to investigate the role of sodium- and potassium-dependent adenosine triphosphatase (Na+,K+-ATPase) in the process of fluid accumulation in the horse conceptus. Nine mares were used for the experiments. Reverse transcriptase polymerase chain reaction was conducted on two sets of five conceptuses recovered between 12 and 28 days (+/- 1 day) after ovulation. Messenger RNAs encoding the alpha1 and beta1 subunit isoforms of Na+,K+-ATPase were detected in all embryonic tissues examined. Western blot analysis showed that alpha1 and ...
[Salinomycin poisoning in a Polish stud horse].
Tierarztliche Praxis. Ausgabe G, Grosstiere/Nutztiere    August 1, 1997   Volume 25, Issue 5 438-441 
Nicpon J, Czerw P, Harps O, Deegen E.24 cases of salinomycin poisoning in horses occurring recently in Silesia are discussed. All of these horses, used for riding-purposes, were fed with concentrate containing 61 mg/kg salinomycin as faulty prepared by the manufacturer. Each horse received approximately two to three kilograms of this forage. All horses developed severe clinical signs of intoxication. Despite therapy eight horses died within three to six days. Ten others became recumbent and had to be euthanased. Only six horses survived. Clinical and laboratory examinations were performed and are discussed. Laboratory examination...
Micropreparative high resolution purification of proteins by a combination of sodium dodecyl sulfate-polyacrylamide gel electrophoresis, isoelectric focusing, and membrane blotting.
Analytical biochemistry    July 15, 1997   Volume 250, Issue 1 61-65 doi: 10.1006/abio.1997.2196
Liang FT, Granstrom DE, Timoney JF, Shi YF.We report a simple, economical, and efficient protocol for protein purification from cells. First, proteins of cell lysates were separated by standard sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and electroblotted to protein-blotting membrane. The blots were stained with Coomassie blue or developed by immunoblotting to visualize specific proteins. The bands corresponding to those visible by immunoblotting were excised from the dye-stained blots and subjected to isoelectric focusing. The focused gel was stained with Coomassie blue. Finally, the stained bands were excise...
Infrared and atomic spectrometry analysis of the mineral composition of a series of equine sabulous material samples and urinary calculi.
Research in veterinary science    July 1, 1997   Volume 63, Issue 1 93-95 doi: 10.1016/s0034-5288(97)90166-1
Diaz-Espiñeira M, Escolar E, Bellanato J, De La Fuente MA.Atomic spectrometry has been used in 20 samples of equine urinary sabulous deposits in order to detect minor elements accompanying the predominant element, calcium, which is present in the form of calcium carbonate (calcite and/or vaterite). The elements measured have been (besides calcium) magnesium, sodium, potassium, iron, copper and manganese. Phosphates, sulphates and silica are frequently present as minor constituents of equine urinary sabulous deposits and uroliths, but their detection can be difficult by infrared (IR) spectroscopy in the original samples due to overlapping with the ban...
Effect of sodium bicarbonate administration on renal function of horses.
American journal of veterinary research    June 1, 1997   Volume 58, Issue 6 664-671 
Rivas LJ, Hinchcliff KW, Kohn CW, Sams RA, Chew DJ.To describe changes in renal function of horses after oral and i.v. administration of sodium bicarbonate (NaHCO3) and to determine whether changes are dose dependent. Methods: 6 Standardbred mares. Methods: Blood and urine samples for determination of renal function were collected immediately before and at hourly intervals for 12 hours after administration of each of 3 oral doses (1,500, 1,000 and 250 mg/kg of body weight, in 3 L of water) and 1 i.v. dose (250 mg/kg, 5% solution) of NaHCO3, or water (3 L orally). Results: NaHCO3 induced increases in urine flow; electrolyte-free water reabsorpt...
The effect of neomycin on the kidney function of the horse.
Zentralblatt fur Veterinarmedizin. Reihe A    June 1, 1997   Volume 44, Issue 4 201-205 doi: 10.1111/j.1439-0442.1997.tb01102.x
Fuentes VO, Gonzalez H, Sanchez V, Fuentes P, Rosiles R.The toxic effect of neomycin on the horse kidney was studied. Twelve horses were used, and were divided at random into three groups of four. The first group was treated twice a day with 10 mg/kg I.M. for 15 days and then euthanised; kidney and liver samples were studied and no histopathological changes were observed. Group 2 was treated with neomycin sulphate as in group 1, and group 3 was used as control. Blood samples were taken at 8.00 h and 20.00 h daily from both neomycin treated and control horses. Serum creatinine, potassium, sodium and urinary creatinine remained without change. On day...
Effect of sodium bicarbonate administration on blood constituents of horses.
American journal of veterinary research    June 1, 1997   Volume 58, Issue 6 658-663 
Rivas LJ, Hinchcliff KW, Kohn CW, Sams RA, Chew DJ.To describe changes in blood constituents of horses after oral and i.v. administration of sodium bicarbonate (NaHCO3), and to determine whether the changes are dose dependent. Methods: 6 adult Standardbred mares. Methods: 3 oral doses (1,500, 1,000, and 250 mg/kg of body weight) or 1 intravenous dose (250 mg/kg, 5% solution) of NaHCO3 in 3 L of water, or water (3 L orally), were given to the mares; then changes in blood constituents were measured. Access to food and water was denied during the experiment. Blood samples were collected immediately before treatment and at hourly intervals for 12 ...
Oncotic, hemodilutional, and hemostatic effects of isotonic saline and hydroxyethyl starch solutions in clinically normal ponies.
American journal of veterinary research    May 1, 1997   Volume 58, Issue 5 541-548 
Jones PA, Tomasic M, Gentry PA.To evaluate the oncotic, hemodilutional, and hemostatic effects of IV infusions of a large volume of isotonic saline solution and 2 doses of 6% hydroxyethyl starch (HES) in clinically normal ponies. Methods: 12 adult ponies. Methods: Ponies were assigned to 3 treatment groups and received the following IV infusions: 80 ml of 0.9% sodium chloride/kg; 10 ml of 6% HES (in 0.9% sodium chloride)/kg; or 20 ml of 6% HES (in 0.9% sodium chloride)/kg. Blood samples were collected for determination of colloid oncotic pressure (COP), PCV, plasma total protein concentration, platelet count, von Willebrand...
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