Analyze Diet

Topic:Pharmacodynamics

Pharmacodynamics in horses refers to the study of how drugs affect the equine body, encompassing the mechanisms of action, the relationship between drug concentration and effect, and the duration of these effects. This field examines how drugs interact with biological systems in horses to produce therapeutic or adverse effects. Key aspects include receptor binding, post-receptor effects, and chemical interactions. Understanding pharmacodynamics is essential for determining appropriate dosages, predicting drug interactions, and assessing therapeutic outcomes in equine medicine. This page compiles peer-reviewed research studies and scholarly articles that explore the pharmacodynamic properties of various drugs in horses, focusing on their effects, efficacy, and safety profiles.
Pharmacokinetics of metronidazole given to horses by intravenous and oral routes.
American journal of veterinary research    August 1, 1986   Volume 47, Issue 8 1726-1729 
Sweeney RW, Sweeney CR, Soma LR, Woodward CB, Charlton CA.Serum and peritoneal fluid concentrations of metronidazole were determined in 6 healthy adult horses given the drug (25 mg/kg) by IV or oral routes. The disposition of metronidazole in horses given the drug by the IV route conformed to a 2-compartment model with a distribution half-life of 0.16 hours, an elimination half-life of 2.9 hours, and a body clearance of 0.40 +/- 0.05 L/kg/hr. The oral absorption half-life was 0.40 hours, and the bioavailability, 85.0 +/- 18.6%. Peritoneal fluid concentrations were approximately equal to serum concentrations at all times, regardless of the route of ad...
Prediction of pharmacokinetic profiles of ampicillin sodium, gentamicin sulfate, and combination ampicillin sodium-gentamicin sulfate in serum and synovia of healthy horses.
American journal of veterinary research    July 1, 1986   Volume 47, Issue 7 1590-1596 
Bowman KF, Dix LP, Riond JL, Riviere JE.Pharmacokinetics of ampicillin sodium (11 mg/kg), gentamicin sulfate (2.2 mg/kg), and combination ampicillin sodium-gentamicin sulfate were determined for serum and synovia of healthy horses given single-dose IV injection and were not found to be different from those from other reports; however, a prolonged terminal gamma-phase for gentamicin (8,498 +/- 1,842 minutes) in serum of horses was found to exist. Pharmacokinetic interaction between combination ampicillin sodium-gentamicin sulfate was not observed int he serum or synovia. Prediction of ampicillin sodium or gentamicin sulfate concentra...
Dobutamine-induced augmentation of cardiac output does not enhance respiratory gas exchange in anesthetized recumbent healthy horses.
American journal of veterinary research    July 1, 1986   Volume 47, Issue 7 1573-1576 
Swanson CR, Muir WW.The influence of pharmacologic enhancement of cardiac output on the alveolar-to-arterial oxygen tension (difference (P[A-a]O2), physiologic right-to-left shunt fraction (Qs/Qt), and physiologic dead space-to-tidal volume ratio (VD/VT) ws studied in halothane-anesthetized horses in left lateral, right lateral, and dorsal recumbencies. Adult horses were anesthetized, using xylazine (2.2 mg/kg, IM), guaifenesin (50 mg/kg, IV), thiamylal (4.4 mg/kg, IV), and halothane (1.5% to 2% inspired) in 100% O2. Mechanical ventilation was controlled to maintain arterial eucapnia (PaCO2) 35 to 45 mm of Hg) fo...
Synovial fluid and plasma kinetics of methylprednisolone and methylprednisolone acetate in horses following intra-articular administration of methylprednisolone acetate.
Equine veterinary journal    May 1, 1986   Volume 18, Issue 3 193-198 doi: 10.1111/j.2042-3306.1986.tb03594.x
Autefage A, Alvinerie M, Toutain PL.Synovial fluid and plasma kinetics of methylprednisolone acetate (MPA) and methylprednisolone (MP) after a single intra-articular administration of MPA at a therapeutic dose (111 mg in toto) was measured in five horses. MPA was detected in synovial fluid for two to six days post injection and MP, which results from synovial MPA hydrolysis, was present in pharmacologically significant concentrations for 4.8 to 39 days, depending on the horse. MPA synovial concentration was maximal (289 +/- 284 micrograms/ml) at the first sampling time (2 h after administration) and MP synovial concentration was...
Effects of flunixin meglumine, phenylbutazone and a selective thromboxane synthetase inhibitor (UK-38,485) on thromboxane and prostacyclin production in healthy horses.
Research in veterinary science    March 1, 1986   Volume 40, Issue 2 152-156 
Hardee MM, Moore JN, Hardee GE.The efficacy of three agents which alter the metabolism of arachidonic acid was investigated in normal, conscious horses. A dose response evaluation was made of flunixin meglumine and phenylbutazone, two cyclo-oxygenase inhibitors, and of a selective thromboxane synthetase inhibitor, UK-38,485. Radioimmunoassay of thromboxane B2 (TxB2) and 6-keto prostaglandin F1 alpha (PGF1 alpha) was used to assess the concentrations of thromboxane A2 (TxA2) and prostacyclin (PGI2) respectively, in serum. Flunixin was the most potent inhibitor of serum TxB2 and 6-keto PGF1 alpha production. UK-38,485 also de...
Phenylbutazone in the horse: a review.
Journal of veterinary pharmacology and therapeutics    March 1, 1986   Volume 9, Issue 1 1-25 doi: 10.1111/j.1365-2885.1986.tb00008.x
Tobin T, Chay S, Kamerling S, Woods WE, Weckman TJ, Blake JW, Lees P.Phenylbutazone is an acidic, lipophilic, non-steroidal anti-inflammatory drug (NSAID). It is extensively metabolized in the horse. The metabolites so far identified, oxyphenbutazone, gamma-hydroxyoxyphenbutazone, account for some 25-30% of administered dose over 24 h. The plasma half-life of phenylbutazone and termination of its pharmacological action are determined primarily by its rate of hepatic metabolism. Phenylbutazone acts by inhibiting the cyclooxygenase enzyme system, which is responsible for synthesis of prostanoids such as PGE2. It appears to act on prostaglandin-H synthase and pros...
Gentamicin dosage in foals aged one month and three months.
Equine veterinary journal    March 1, 1986   Volume 18, Issue 2 113-116 doi: 10.1111/j.2042-3306.1986.tb03560.x
Baggot JD, Love DN, Stewart J, Raus J.The absorption and disposition kinetics of gentamicin were compared at two dosage levels (2 and 4 mg/kg bodyweight [bwt]) in one- and three-month-old foals. Following intramuscular (im) injection of single 2 mg/kg bwt doses, the drug was absorbed rapidly and produced peak serum concentration (18.2 mu 5.3 +/- g/ml, n = 8) at 30 mins. Much wider variations were associated with the amount of drug absorbed and the serum gentamicin concentrations after administration at the higher dosage level. The half-life of gentamicin was similar in the one-month-old (3.7 +/- 1.7 h, n = 8) and three-month-old (...
Absorption and pharmacokinetics of phenylbutazone in Welsh Mountain ponies.
Journal of veterinary pharmacology and therapeutics    March 1, 1986   Volume 9, Issue 1 26-39 doi: 10.1111/j.1365-2885.1986.tb00009.x
Maitho TE, Lees P, Taylor JB.The disposition of phenylbutazone (4.4 mg/kg), administered intravenously to six Welsh Mountain ponies, was described by a two-compartment open model. Pharmacokinetic parameters were not significantly different after morning dosing in comparison with afternoon dosing. When phenylbutazone (4.4 mg/kg) was administered orally to the same ponies, marked variations in time to peak concentrations were produced with different feeding schedules. When access to hay was permitted before and after dosing, the mean time to peak concentration was 13.2 +/- 1.2 h and double peaks in the plasma concentration-...
Pharmacokinetics of amikacin in pony foals after a single intramuscular injection.
American journal of veterinary research    February 1, 1986   Volume 47, Issue 2 453-454 
Brown MP, Gronwall RR, Martinez DS, Beal C.Six healthy pony foals, from 2 to 11 days of age, were given a single IM injection of amikacin sulfate (250 mg/ml) at a dosage rate of 7 mg/kg of body weight. Serum amikacin concentrations were measured serially over a 24-hour period. The mean peak serum concentration was 14.7 micrograms/ml at 0.5 hour. The elimination rate constant for amikacin was 0.24/hour, the elimination half-life was 3.0 hours, and the apparent volume of distribution was 0.58 L/kg.
Cardiovascular and pulmonary function studies of a new sedative/analgetic (detomidine/Domosedan) for use alone in horses or as a preanesthetic.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 139-155 
Short CE, Matthews N, Harvey R, Tyner CL.No abstract available
Detomidine/ketamine anaesthesia in the horse.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 167-179 
Clarke KW, Taylor PM, Watkins SB.No abstract available
Novel environment suppression of stallion sexual behavior and effects of diazepam.
Physiology & behavior    January 1, 1986   Volume 37, Issue 3 503-505 doi: 10.1016/0031-9384(86)90214-3
McDonnell SM, Kenney RM, Meckley PE, Garcia MC.Pony stallions were given sexual behavior trials in experimental "home" and "novel" environments, similar in all major features except location. In the novel environment, erection latency was increased and erection time decreased. Treatment with an anxiolytic benzodiazepine derivative (diazepam) appeared to block these effects.
Sedative and analgesic effects of detomidine in horses and cattle. Based on a symposium. Turku, Finland, September 2-4, 1985.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 1-206 
No abstract available
Sedative and analgesic action of detomidine in horses as evaluated from evoked potentials.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 97-109 
Stenberg D, Sandström M, Pyyhtiä AM, Kuussaari J.No abstract available
Sedation and analgesia with Domosedan (detomidine hydrochloride) in horses: dose response studies on efficacy and its duration.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 69-84 
Jöchle W, Hamm D.No abstract available
Analgesic and sedative effects of detomidine compared to xylazine in a colic model using i.v. and i.m. routes of administration.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 85-95 
Lowe JE, Hilfiger J.No abstract available
Cardiac effects of atropine premedication in horses sedated with detomidine.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 131-136 
Alitalo I, Vainio O, Kaartinen L, Raekallio M.No abstract available
The effect of sedatives on lung function in horses.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 111-120 
Reitemeyer H, Klein HJ, Deegen E.No abstract available
Preliminary report on the cardiorespiratory effects of the antagonist to detomidine, MPV-1248.
Acta veterinaria Scandinavica. Supplementum    January 1, 1986   Volume 82 121-129 
Nilsfors L, Kvart C.No abstract available
Detomidine in horses.
The Veterinary record    December 21, 1985   Volume 117, Issue 25-26 674-675 doi: 10.1136/vr.117.25-26.674
Clarke KW, Taylor PM.No abstract available
Flunixin meglumine given in small doses: pharmacokinetics and prostaglandin inhibition in healthy horses.
American journal of veterinary research    December 1, 1985   Volume 46, Issue 12 2474-2479 
Semrad SD, Hardee GE, Hardee MM, Moore JN.The pharmacokinetics and inhibition of prostaglandin synthesis in conscious horses given various dosages of flunixin meglumine were studied. Plasma concentrations of flunixin were measured by high-performance liquid chromatography, and serum thromboxane B2 and 6-keto prostaglandin F1 alpha were quantitated by radioimmunoassay. Within the dosage range studied, linear pharmacokinetics were achieved. After IV administration of flunixin (1.1 mg/kg, 0.25 mg/kg, 0.1 mg/kg), significant suppression of serum thromboxane generation persisted for 12, 4, and 3 hours, respectively. Repeated administration...
Effect of intra-articular gentamicin sulfate on normal equine synovial membrane.
American journal of veterinary research    December 1, 1985   Volume 46, Issue 12 2485-2491 
Stover SM, Pool RR.Gentamicin sulfate (3 ml; 50 mg/ml) was administered intra-articularly into 30 normal equine radiocarpal joints after arthrocentesis. Arthrocentesis alone was performed on 10 normal radiocarpal joints. Synovial fluid evaluations and gross and microscopic examinations were performed on synovial fluid and synovial membrane of designated joints at selected daily intervals over a period of 10 days. Synovial fluid from gentamicin-injected joints had greater turbidity, higher RBC and WBC counts, and higher refractive indices than did joints not injected with gentamicin. The largest increases develop...
Theophylline and dyphylline pharmacokinetics in the horse.
American journal of veterinary research    December 1, 1985   Volume 46, Issue 12 2500-2506 
Ayres JW, Pearson EG, Riebold TW, Chang SF.The pharmacokinetics of theophylline and dyphylline were determined after IV administration in horses. In a preliminary experiment, the usual human dosage (milligram per kilogram) of each drug was given to 1 horse. Results were used to calculate dosages for a cross-over study, using 6 horses for each drug. Theophylline plasma concentrations decreased triexponentially in 5 of 6 healthy horses after IV infusion of 10 mg of aminophylline/kg of body weight for 16 to 32 minutes. In the 6 horses, total body elimination rate constants were variable, and the half-life of theophylline was 9.7 to 19.3 h...
[Clinical use of various non-steroidal anti-inflammatory agents in horses and cattle].
Nordisk veterinaermedicin    November 1, 1985   Volume 37, Issue 6 329-337 
Hesselholt M, Friis C.No abstract available
Effects of verapamil on the smooth muscle of the horse urinary tract.
Research in veterinary science    November 1, 1985   Volume 39, Issue 3 320-323 
Costa G, Labadia A, Garcia-Sacristan A.The effects of verapamil, a calcium antagonist agent, were studied on smooth muscle preparations of the lower urinary tract of horses. Verapamil (2 X 10(-4) to 2 X 10(-8) M) relaxed the ureter, urethra and urinary bladder preparations contracted by potassium (127 mM), L-noradrenaline (2 X 10(-5) M), histamine (2 X 10(-5) M) and acetylcholine (2 X 10(-5) M). These results allow the conclusion that verapamil has a dose-dependent relaxing effect on smooth muscle of the lower urinary tract.
Visceral analgesia: effects of xylazine, butorphanol, meperidine, and pentazocine in horses.
American journal of veterinary research    October 1, 1985   Volume 46, Issue 10 2081-2084 
Muir WW, Robertson JT.The visceral analgesic, cardiorespiratory, and behavioral effects induced by xylazine, butorphanol, meperidine, and pentazocine were determined in 9 adult horses with colic. Colic was produced by inflating a balloon in the horses' cecum. Heart rate, respiratory rate, mean arterial blood pressure, and cardiac output increased after cecal balloon inflation. Xylazine and butorphanol decreased the hemodynamic response to cecal balloon inflation. Meperidine and pentazocine had minimal effects on the cardiorespiratory changes induced by cecal balloon inflation. Xylazine produced the most pronounced ...
Immediate and long-term effects of halothane anesthesia on equine platelet function.
Journal of veterinary pharmacology and therapeutics    September 1, 1985   Volume 8, Issue 3 284-289 doi: 10.1111/j.1365-2885.1985.tb00958.x
Kelly AB, Steffey EP, McNeal D, Willits N.The acute and long-term quantitative and qualitative effects of halothane anesthesia on equine platelet performance were studied in fourteen horses. Horses were anesthetized with only halothane in O2 for about 8.0 MAC hours. Platelet numbers declined during the anesthetic period but returned to normal within 24 h. Platelet aggregation was significantly diminished during the anesthetic period and for up to 4 days after anesthesia. A period of hyperaggregability occurred at the 7th day.
Disposition of sulfadimidine and its N4-acetyl and hydroxy metabolites in horse plasma.
Journal of veterinary pharmacology and therapeutics    September 1, 1985   Volume 8, Issue 3 303-311 doi: 10.1111/j.1365-2885.1985.tb00960.x
Nouws JF, Vree TB, Baakman M, Driessens F, Smulders A, Holtkamp J.The plasma disposition of sulfadimidine (SDM) and its metabolites N4-acetylsulfadimidine (N4-SDM), 6-hydroxymethyl-4-methyl-pyrimidine (SCH2OH) and 5-hydroxy-4,6-dimethyl-pyrimidine (SOH), was studied in three horses following intravenous administration of SDM at dose levels of 20 and 200 mg/kg in cross-over trials. The percentages of N4-SDM (0.58-0.90%), SOH (0.83-6.75%) and SCH2OH (0.38-0.71%) in plasma, expressed as a percentage of the total sulfonamide concentration, were small and their plasma concentrations were parallel with SDM from 4 h following administration. At high doses (200 mg/k...
Cardiovascular and respiratory effects of acetylpromazine and xylazine on halothane-anesthetized horses.
Journal of veterinary pharmacology and therapeutics    September 1, 1985   Volume 8, Issue 3 290-302 doi: 10.1111/j.1365-2885.1985.tb00959.x
Steffey EP, Kelly AB, Farver TB, Woliner MJ.Circulatory and respiratory effects of intravenously administered acetylpromazine (0.033 and 0.067 mg/kg) and xylazine (0.5 and 1.0 mg/kg) were studied in drug cross-over fashion in eight laterally recumbent horses anesthetized only with halothane (1.06%, end-tidal) in O2. Both doses of acetylpromazine caused a significant and sustained elevation in cardiac output via a rise in stroke volume. Xylazine produced an initial significant fall in cardiac output followed by a return to control levels. Halothane anesthesia did not prevent xylazine-related atrioventricular conduction block. All treatme...
Combined pharmacokinetics of gentamicin in pony mares after a single intravenous and intramuscular administration.
American journal of veterinary research    September 1, 1985   Volume 46, Issue 9 2004-2007 
Haddad NS, Pedersoli WM, Ravis WR, Fazeli MH, Carson RL.Healthy mature pony mares (n = 6) were given a single dose of gentamicin (5 mg/kg of body weight) IV or IM 8 days apart. Venous blood samples were collected at 0, 5, 10, 20, 30, and 45 minutes and at 1, 1.5, 2, 2.5, 3, 4, 6, 8, 10, 12, 18, 24, 30, 36, 40, and 48 hours after IV injection of gentamicin, and at 10, 20, 30, and 45 minutes and at 1, 1.5, 2, 2.5, 3, 4, 6, 8, 10, 12, 18, 24, and 30 hours after IM injection of gentamicin. Gentamicin serum concentration was determined by a liquid-phase radioimmunoassay. The combined data of IV and IM treatments were analyzed by a nonlinear least-square...
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