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Biomedical subjects

G R Arthur

Publications and source records attributed to G R Arthur.

7 recordsLinked to original sources

Effect of ropivacaine and bupivacaine on uterine blood flow in pregnant ewes.

The effects of ropivacaine, a new amide local anesthetic, on uterine blood flow and fetal well-being were compared with those of bupivacaine in 10 chronically instrumented pregnant ewes. In random sequence, animals received two intravenous infusions of each drug. The low infusion rate regimens were chosen to result in clinically relevant maternal plasma concentrations of local anesthetics, whereas the more rapid rates of infusions were given to assess the safety of higher maternal drug concentrations. An epinephrine infusion was given to demonstrate the appropriateness of the animal model for the measurement of uterine blood flow. Maternal and fetal heart rates, arterial blood pressure, and the ewe's central venous pressure, intraamniotic pressure, and uterine blood flow were recorded continuously. Arterial blood samples were taken from mother and fetus at frequent intervals to determine acid-base status and local anesthetic concentrations. A total of 39 studies were performed. None of the infusions of either local anesthetic resulted in a significant decrease in uterine blood flow or deterioration in fetal condition. The mean maternal plasma concentrations at the end of infusions were as follows: ropivacaine low dose, 1.60 +/- 0.35 micrograms/mL; bupivacaine low dose, 1.55 +/- 0.15 micrograms/mL; ropivacaine high dose, 2.50 +/- 0.37 micrograms/mL; and bupivacaine high dose, 1.83 +/- 0.19 micrograms/mL. Epinephrine infusion resulted in a 25% decrease in uterine blood flow without adverse fetal effects. We conclude that neither ropivacaine nor bupivacaine, as administered in this study, led to any ill effects on uterine artery blood flow or fetal well-being.

Amides

Pharmacokinetic and clinical pharmacological studies with mepivacaine and prilocaine.

The tolerance and pharmacokinetic properties of mepivacaine and prilocaine were compared following i.v. infusion of 250 mg (0.88 and 0.97 mmol respectively) of each drug in five healthy volunteers. Side-effects were minor and occurred in only two subjects during the infusion of mepivacaine. Plasma concentrations of mepivacaine were greater in each subject than the corresponding values for prilocaine. The elimination half-life of mepivacaine was generally longer than that for prilocaine, whereas the total body clearance of prilocaine was consistently greater than the corresponding value for mepivacaine. For each subject the clearance of prilocaine substantially exceeded normal heptic blood flow and therefore an extra-hepatic site of metabolism of prilocaine has been postulated.

Adult

Cardiovascular effects of prenalterol (H133/22) in normal man.

1 Prenalterol, (S-(-)-1-(4 hydroxyphenoxy)-3-isopropylaminopropanol-2 hydrochloride) a cardio-selective beta-adrenergic receptor agonist, was infused intravenously into six normal male volunteers to determine the cardiovascular effects of this drug. 2 On different occasions, each volunteer received a placebo infusion, an infusion of 0.5 mg prenalterol and an infusion of 1 mg prenalterol. Cardiac output (impedance cardiography), arterial pressure (sphygmomanometry), heart rate and ECG were measured throughout. 3 Prenalterol produced a statistically significant increase in cardiac output and at the end of the infusion this increase was 24% with 0.5 mg and 29% with 1 mg, mainly due to an increase in stroke volume (18% and 17%) with a lesser change in heart rate (+2 and +7 beats/min). Pulse pressure increased but mean arterial pressure showed little change. Peripheral resistance fell by 18% and 20%. As indicated by systolic time indices myocardial contractility increased. 4 Prenalterol at plasma concentrations in excess of 20 nmol l-1 produced significant inotropic effects but did not markedly increase heart rate at concentrations of 60 nmol l-1.

Adrenergic beta-Agonists

Circulatory effects of labetalol during halothane anaesthesia.

Labetalol is a drug possessing both alpha and beta adrenergic receptor blocking properties. Its possible use in induced hypotension during halothane anaesthesia has been investigated. It causes a satisfactory decrease in arterial pressure unaccompanied by tachycardia. The circulatory effects of the drug during halothane anaesthesia, both with spontaneous and controlled respiration, have been measured and compared with those of halothane alone. In patients anaesthetised with 1% halothane, labetalol, with both spontaneous and controlled ventilation, was associated with a reduction in MAP from 71.5 mmHg to 54.0 mmHg (P less than 0.001) and 66.8 mmHg to 50.4 mmHg (P less than 0.001) respectively. This reduction was associated with decreases in Qt of 18% and 12% respectively. In the presence of labetalol, with 3% halothane and spontaneous respiration, the depressant effects of the anaesthetic on the heart became rapidly apparent: Qt was reduced by a further 28%. In patients not receiving labetalol, the depressant effects of 3% halothane were frequently countered by the positive inotropic effects of hypercarbia.

Adult

Propranolol in thyrotoxicosis. Cardiovascular changes during thyroidectomy in patients pre-treated with propranolol.

The cardiovascular changes during anaesthesia and thyroidectomy have been studied in seven thyrotoxic patients prepared with propranolol. The heart rate and cardiac rhythm remained very stable throughout surgery. A 20% increase in mean arterial pressure occurred during surgical stimulation. A decrease in cardiac output, due to decreased stroke volume, occurred during surgical stimulation. A decrease in cardiac output, due to decreased stroke volume, occurred during surgery, reaching a maximum of 21% during ligation of the thyroid vessels and returning to pre-operative values by the end of surgery. The fall in cardiac output was accompanied by raised central venous pressure and raised total peripheral resistance.

Adult

Chronotropic and inotropic effects of ropivacaine, bupivacaine, and lidocaine in the spontaneously beating and electrically paced isolated, perfused rabbit heart.

BACKGROUND AND OBJECTIVES: The purpose of this study was to compare the inotropic and chronotropic effects of ropivacaine, bupivacaine, and lidocaine in an isolated, spontaneously beating rabbit heart preparation. The ability to electrically pace the heart in the presence of local anesthetic also was examined. METHODS: Hearts were perfused with Krebs-Henseleit solution, then exposed to ropivacaine or bupivacaine at 1, 6, or 13 micrograms/ml or lidocaine at 6, 20, or 40 micrograms/ml (n = 6, each concentration). Left ventricular pressure, left ventricular dP/dt (rate of change derivation from analog waveform of the left ventricular pressure wave), pulmonary artery flow, oxygen consumption, and electrocardiogram were monitored throughout the studies. Drug exposure was for 30 minutes or until a 75% decrease in left ventricular pressure occurred. RESULTS: All preparations were exposed to 1 microgram/ml bupivacaine or ropivacaine and 6 micrograms/ml lidocaine for the full 30 minutes. At the intermediate concentrations, only one of six bupivacaine preparations (6 micrograms/ml) survived the full 30-minute exposure period, compared to six of six preparations for both ropivacaine (6 micrograms/ml) and lidocaine (20 micrograms/ml; p less than 0.05). Similar results were found with exposure to the highest concentrations of these local anesthetics. No electrocardiogram changes were observed with any of the three lidocaine concentrations or with the lowest ropivacaine and bupivacaine concentration. At the intermediate concentration, atrioventricular conduction changes were seen with bupivacaine in five of six preparations, compared to one of six ropivacaine preparations (p less than 0.05). With the high concentration, ventricular tachycardia occurred in four of six bupivacaine preparations, compared to zero of six with ropivacaine (p less than 0.05). In general, left ventricular systolic pressure, dP/dt, heart rate, and oxygen consumption were reduced during exposure to all concentrations of the three local anesthetics. The most profound effects (greater than 75% reduction) were seen with 13 micrograms/ml bupivacaine. All local anesthetics caused an increase in the voltage required to pace the hearts via the atria. With 6 micrograms/ml bupivacaine and 13 micrograms/ml ropivacaine, 50% of the preparations could not be paced via the atria; and with 13 micrograms/ml bupivacaine, none of the preparations could be paced via the atria. The depressant effects of 6 micrograms/ml bupivacaine approximated those seen with 13 micrograms/ml ropivacaine. The reductions in oxygen consumption and pulmonary artery flow were not significantly different between treatment groups. CONCLUSION: The results of this study indicate that bupivacaine is more cardiodepressant and arrhythmogenic than either ropivacaine or lidocaine.

Amides

The effects of epinephrine on the anesthetic and hemodynamic properties of ropivacaine and bupivacaine after epidural administration in the dog.

Ropivacaine is a new local anesthetic that is chemically related to mepivacaine and bupivacaine. Previous laboratory studies have demonstrated that ropivacaine possesses an anesthetic profile similar to that of bupivacaine and has less arrhythmogenic potential. The current study was initiated to compare the hemodynamic and anesthetic effects of epidurally administered 0.75% bupivacaine and 1% ropivacaine, with and without epinephrine (1:200,000), in the dog. Two groups of six dogs were randomly assigned to the ropivacaine or bupivacaine treatment groups. Administration of 0.75% bupivacaine and 1% ropivacaine with and without epinephrine was randomized. Volumes of 3 ml of each solution were injected in a blinded manner via an indwelling lumbar epidural catheter with 48 hours between injections. No statistically significant difference existed between the four treatment groups with regard to onset and duration of sensory or motor block. Hemodynamic changes were, for the most part, not different between drugs. Significant decreases were seen in mean arterial blood pressure and cardiac output in all test groups. No difference in the degree of cardiovascular depression was observed. The addition of epinephrine did not alter onset or duration of sensory or motor block in this animal model. Epinephrine reduced the average anesthetic blood concentration observed in both treatment groups at the various time intervals, but not the time to achieve the mean maximum blood level. No residual adverse effects were observed in any animal.

Amides