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Biomedical subjects

A Devcic

Publications and source records attributed to A Devcic.

6 recordsLinked to original sources

A novel alpha 2-adrenoceptor antagonist attenuates the early, but preserves the late cardiovascular effects of intravenous dexmedetomidine in conscious dogs.

OBJECTIVES: To test the hypothesis that L-659,066, a peripherally acting alpha 2-adrenoceptor agonist, will abolish the early pressor response but preserve the late depressor action of intravenous dexmedetomidine in conscious, unsedated dogs. DESIGN: A prospective investigation. SETTING: A laboratory research. PARTICIPANTS: Nine chronically instrumented dogs. INTERVENTIONS: Dogs received dexmedetomidine, 5 micrograms/kg intravenously, in the presence or absence of L-659,066, 0.1, 0.2, or 0.4 mg/kg intravenously, pretreatment in a random fashion determined with a Latin square design on different experimental days. MEASUREMENTS AND MAIN RESULTS: Systemic and coronary hemodynamics were assessed under control conditions, 30 minutes after administration of L-659,066 and 5 and 60 minutes after intravenous administration of dexmedetomidine. Dexmedetomidine alone acutely increased mean arterial pressure (106 +/- 3 to 175 +/- 4 mmHg; p < 0.05), left ventricular (LV) systolic and end-diastolic pressures, systemic vascular resistance (3,400 +/- 350 to 13,360 +/- 2,290 dyne.s.cm-5; p < 0.05), and coronary vascular resistance (2.69 +/- 0.19 to 4.18 +/- 0.43 mmHg.Hz-1.10(-2); p < 0.05) and decreased LV +dP/dtmax and cardiac output (2.6 +/- 0.3 to 1.3 +/- 0.2 L/min; p < 0.05). Dexmedetomidine alone decreased heart rate, mean arterial pressure, and LV systolic pressure and caused sustained reductions in +dP/dtmax and cardiac output up to 60 minutes after administration. L-659,066 alone increased heart rate, +dP/dtmax, cardiac output, and coronary blood flow velocity and decreased systemic vascular resistance. Mean arterial and LV pressures and coronary vascular resistance were unchanged. Pretreatment with L-659,066 abolished the acute dexmedetomidine-induced increases in mean arterial pressure, LV pressures, systemic and coronary vascular resistance and decreases in +dP/dtmax and cardiac output. In contrast, reductions in mean arterial pressure and LV systolic pressure observed 60 minutes after administration of dexmedetomidine were preserved in dogs receiving L-659,066. Cardiac performance, systemic vascular resistance, and coronary hemodynamics were also maintained to a greater degree 60 minutes after dexmedetomidine administration in the presence of L-659,066. CONCLUSION: L-659,066 prevents the immediate pressor effects of 5 micrograms/kg of intravenous dexmedetomidine but preserves the majority of the late beneficial cardiovascular effects of this selective alpha 2-adrenoceptor agonist in conscious dogs.

Adrenergic alpha-Agonists↗

The effects of clonidine on desflurane-mediated sympathoexcitation in humans.

This study explored the effectiveness of oral clonidine premedication in attenuating sympathetic activation, tachycardia, and hypertension triggered by desflurane. After institutional review board approval, informed consent was obtained from 15 young, healthy male volunteers. Heart rate (HR, electrocardiogram), mean arterial pressure (MAP, radial artery catheter), and central venous pressure (CVP, jugular vein) were monitored. Recordings of sympathetic nerve activity (SNA) were obtained from the peroneal nerve via percutaneously placed tungsten needles. After baseline recordings, subjects were randomized to receive either a placebo (n = 10) or 0.3 mg of clonidine (n = 9) per os (PO). One hour later, repeat recordings were obtained. Propofol (2.5 mg/kg) and vecuronium (0.15 mg/kg) were given intravenously. Ventilation via a mask (100% O2) was used to maintain normocarbia. Two minutes after propofol administration, the desflurane vaporizer was set at 3.6% (0.5 minimum alveolar anesthetic concentration [MAC]) and increased at 1-min intervals to 7.2% and 11% (1.0 and 1.5 MAC). After 10 min, the trachea was intubated and 20 min later steady-state neurocirculatory recordings were obtained at 5.4%, during the first 5 min after advancing the vaporizer from 5.4% to 11% ("transition"), and at 11%. Resting HR, MAP, and SNA were similar between the two groups. PO clonidine reduced SNA, CVP, and MAP but did not change HR. In both groups propofol decreased SNA and MAP, and increased HR. The administration of desflurane via a mask resulted in significant increases in SNA, HR, and MAP. Clonidine reduced the HR and MAP responses by approximately 30%-40% during induction and transition periods.(ABSTRACT TRUNCATED AT 250 WORDS)

Action Potentials↗

Antagonism of mivacurium neuromuscular block: neostigmine versus edrophonium.

This study was designed to compare the effectiveness of antagonism of mivacurium blockade with either neostigmine, edrophonium, or spontaneous recovery. Thirty ASA physical status I or II patients provided informed consent and were randomized to one of the following groups: Group 1, placebo saline; Group 2, edrophonium (1 mg/kg); and Group 3, neostigmine (70 micrograms/kg) (n = 10/group). All studied patients had anesthesia induced with propofol and maintained with propofol/N2O/fentanyl. Mivacurium bolus of 0.2 mg/kg was used for endotracheal intubation and an infusion titrated to maintain deep levels of block (T1% = 1%-5%) (T1% = first response/control response x 100). The antagonist was injected at a deep level of the block (T1% = 1%-8%) and neuromuscular (NM) recovery was evaluated by train-of-four twitches (TOF). T1% was used during maintenance, whereas both T1% and TOF% (fourth response/first response x 100) were used during recovery. Investigators were blinded to the antagonist used. Plasma cholinesterase activity was measured prior to antagonist administration (0 min), as well as 15, 30, and 60 min after. Plasma cholinesterase activity was decreased to 29% of control at 15 min and remained at approximately 60% of the control after neostigmine administration. Edrophonium did not affect plasma cholinesterase activity. Clinically adequate spontaneous recovery (TOF% > or = 70%) of the mivacurium block with placebo required 15-18 min. On average, clinically adequate antagonism of mivacurium by edrophonium was 50% faster than placebo and 30%-40% faster than with neostigmine. In summary, the speed of antagonism with edrophonium is faster than with neostigmine when antagonizing deep mivacurium NM block.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Oral dexmedetomidine preserves baroreceptor function and decreases anesthetic requirements of halothane-anesthetized dogs.

BACKGROUND: The alpha 2-adrenergic agonist, dexmedetomidine, alters hemodynamics by diminishing sympathetic and/or augmenting parasympathetic neurogenic tone to the heart and peripheral vasculature. However, the specific actions of dexmedetomidine on baroreceptor function are unknown. The purpose of the current investigation was to determine baroreceptor function during an anesthetic state produced by halothane and a similar anesthetic state produced by halothane after dexmedetomidine pretreatment. METHODS: Dogs were instrumented for measurement of arterial and left ventricular pressures, coronary blood flow velocity, segment shortening and cardiac output. Five experimental conditions were studied in the same dogs (n = 8). Measurements of baroreceptor sensitivity (via abrupt decreases and increases in arterial pressure resulting in changes in the cardiac cycle) and hemodynamics were made in the conscious state in dogs in conditions 1 and 2 before and after 25 and 50 micrograms.kg-1 of oral dexmedetomidine, respectively. Dogs in conditions 3 and 4 received the same doses of dexmedetomidine and were then anesthetized with halothane. Baroreceptor sensitivity was determined after 60 min of halothane anesthesia. For comparison, dogs in condition 5 had baroreceptor sensitivity measured after 60 min of halothane anesthesia in the absence of dexmedetomidine. RESULTS: Dexmedetomidine decreased heart rate, rate-pressure product, rate of increase of left ventricular pressure at 50 mmHg, cardiac output and percent segment shortening. Diastolic coronary vascular resistance and systemic vascular resistance were increased with both oral doses. In addition, diastolic coronary blood flow velocity and stroke volume were significantly reduced by the high dose of dexmedetomidine. Anesthesia with halothane increased heart rate and decreased mean arterial pressure, left ventricular systolic pressure, rate of increase of left ventricular pressure at 50 mmHg, stroke volume and segment shortening. Administration of dexmedetomidine before halothane anesthesia in dogs pretreated with dexmedetomidine resulted in small increases in heart rate and decreases mean arterial pressure and left ventricular systolic pressure. Both doses of dexmedetomidine demonstrated anesthetic-sparing effects. The end-tidal concentration of halothane to maintain dogs unconscious and unresponsive was reduced by 30% and 40% (1.03 +/- 0.08% to 0.67 +/- 0.09% and to 0.58 +/- 0.06% end-tidal, respectively) at 25 and 50 micrograms.kg-1, respectively. Baroreceptor sensitivity was profoundly depressed by halothane alone. Dexmedetomidine did not significantly change the slope of the baroreflex response when compared with conscious control measurements. After pretreatment with dexmedetomidine, the reduction in halothane concentration required for a comparable level of anesthesia resulted in significant preservation of baroreceptor sensitivity. CONCLUSIONS: The results indicate that dexmedetomidine alone does not alter baroreflex sensitivity. In addition, possibly through an anesthetic-sparing action, dexmedetomidine preserves baroreflex responses during halothane anesthesia. Such a preservation of the baroreceptor reflex by dexmedetomidine might provide an important mechanism for maintenance of cardiovascular stability by retaining buffer reflexes during general anesthesia.

Administration, Oral↗

PDPH in obstetric anesthesia: comparison of 24-gauge Sprotte and 25-gauge Quincke needles and effect of subarachnoid administration of fentanyl.

BACKGROUND AND OBJECTIVES: Postdural puncture headache (PDPH) is a frequent complication of spinal anesthesia. Some investigators have recommended the use of the Sprotte needle to reduce the incidence of this serious complication. This study prospectively compared the incidence of PDPH with two spinal needles of different size and design: the 24-gauge Sprotte (noncutting point) versus the 25-gauge Quincke (diamond, cutting point). The hypothesis that subarachnoid fentanyl will reduce the incidence of PDPH, as suggested in the literature, was also studied. METHODS: Only patients for emergency or elective cesarean delivery were studied. One hundred ninety four patients were randomly assigned to receive spinal anesthesia with one of the two needles (Sprotte, n = 96; Quincke, n = 98). Simultaneously, each patient was assigned to receive hyperbaric 0.75% bupivacaine local anesthetic or a combination of the same concentration of local anesthetic with 20 micrograms of fentanyl (Sprotte with fentanyl, n = 47; Sprotte without fentanyl, n = 49; Quincke with fentanyl, n = 49; Quincke without fentanyl, n = 49). All patients were evaluated during the first 4 postoperative days, and follow-up telephone interviews were conducted 3 weeks after discharge. RESULTS: Four patients (4.2%) in the Sprotte group and seven (7.1%) in the Quincke group developed PDPH. Three out of four patients with headache in the Sprotte and four out of seven in the Quincke group received fentanyl as an adjunct for spinal anesthesia. Two patients in the Sprotte group required an epidural blood patch as a therapy for PDPH. Two patients in the Quincke group had severe headache and required an epidural blood patch. CONCLUSIONS: In the current study, the use of the 24-gauge Sprotte spinal needle resulted in a low incidence of severe PDPH, but was not significantly different when compared with the use of a 25-gauge Quincke needle (oriented parallel to the longitudinal dural fibers). The addition of fentanyl to hyperbaric bupivacaine spinal anesthesia did not reduce the risk of PDPH.

Adult↗