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Within-subject comparison of the subjective and psychomotor effects of a gaseous anesthetic and two volatile anesthetics in healthy volunteers.

Inhalant abuse is a serious public health problem throughout the world. The present study compared the states of intoxication produced by three inhaled anesthetics that represent two of the three major classes of abused inhalants, as classified by [Balster, R.L., 1998. Neural basis of inhalant abuse. Drug Alcohol Depend 51, 207-214.]. Isoflurane and sevoflurane represent the class of volatile substances, and nitrous oxide (N2O) comprises a class of its own. Fourteen healthy volunteers inhaled the vehicle (100% O2) and two concentrations each of isoflurane (0.1 and 0.2%), sevoflurane (0.2 and 0.4%), and N2O (15 and 30%) for 40 min each, across seven separate sessions. Drug concentrations were chosen to produce similar ratings of drug effect strength and similar impairment on a psychomotor test, the digit-symbol substitution test (DSST). Ratings of drug effect strength and performance on the DSST were similar across drugs; however, the volatile anesthetics produced greater sedation and greater impairment on three other psychomotor tests than N2O, whereas N2O produced a greater magnitude of putatively pleasant and psychedelic-like subjective effects. These results are consistent with the drugs' putative receptor mechanisms of action and confirm Balster's classification of the volatile anesthetics into a class distinct from N2O.

Adult↗

Baseline K+ channels as targets of general anesthetics: studies of the action of volatile anesthetics on TOK1.

A large body of evidence has accumulated in recent years pointing towards the GABA(A) receptor as a primary determinant of volatile anesthetic action (Franks and Lieb, 1994). Nevertheless, our understanding of the function of the central nervous system (CNS) remains sufficiently incomplete that other mechanisms of CNS depression remain to be examined. We have studied a new family of potassium (K+) channels which function as regulators of the baseline excitability of neuronal tissue. As such they must be considered potential targets for volatile anesthetic action and as a possible mechanism by which volatile anesthetics act to allow patients to undergo noxious surgical stimulation.

Anesthetics, General↗

Simultaneous determination of local anesthetics including ester-type anesthetics in human plasma and urine by gas chromatography-mass spectrometry with solid-phase extraction.

The present study describes the simultaneous determination of seven different kinds of local anesthetics and one metabolite by GC-MS with solid-state extraction: Mepivacaine, propitocaine, lidocaine, procaine (an ester-type local anesthetics), cocaine, tetracaine (an ester-type local anesthetics), dibucaine (Dib) and monoethylglycinexylidide (a metabolite of lidocaine) were clearly separated from each other and simultaneously determined by GC-MS using a DB-1 open tubular column. Their recoveries ranged from 73-95% at the target concentrations of 1.00, 10.0 and 100 microg/ml in plasma, urine and water. Coefficients of variation of the recoveries ranged from 2.3-13.1% at these concentrations. The quantitation limits of the method were approximately 100 ng/ml for monoethylglycinexylidide, propitocaine, procaine, cocaine, tetracaine and dibucaine, and 50 ng/ml for lidocaine and mepivacaine. This method was applied to specimens of patients who had been treated with drip infusion of lidocaine, and revealed that simultaneous determination of lidocaine and monoethylglycinexylidide in the blood and urine was possible.

Anesthetics, Local↗

Water-diluted local anesthetic for trigger-point injection in chronic myofascial pain syndrome: evaluation of types of local anesthetic and concentrations in water.

BACKGROUND AND OBJECTIVES: We have recently demonstrated that a mixture of 1% lidocaine with water in a 1:3 ratio has less injection pain and is more effective than unaltered 1% lidocaine in treating chronic myofascial pain syndromes. Yet, the most suitable local anesthetic and the most effective dilution in water have not been evaluated. METHODS: Various mixtures of local anesthetics and water or saline were injected intramuscularly into the shoulder of 40 female volunteers, and pain scores on injection were evaluated in a randomized and double-blinded manner. In another portion of the study, 0.25% or 0.2% lidocaine in water were injected randomly into 1 side of 21 outpatients with chronic neck, shoulder, or lumbar myofascial pain to the same degree in both sides. The other solution was injected into the other side of the same patients. RESULTS: Less injection pain was experienced with the water-diluted 0.25% lidocaine and water-diluted 0.25% mepivacaine than the saline-diluted 0.25% lidocaine and water-diluted 0.0625% bupivacaine. Also, less injection pain was experienced with the water-diluted 0.25% and 0.2% lidocaine than the water-diluted 0.3% and 0.15% lidocaine. In the other study, there were no differences in either the effectiveness or duration of analgesia between the 0.25% and 0.2% water-diluted lidocaine. CONCLUSIONS: The suitable type of local anesthetic may be lidocaine or mepivacaine, and the most effective water-diluted concentration is considered to be 0.2% to 0.25%.

Adult↗

Does local anesthetic stereoselectivity or structure predict myocardial depression in anesthetized canines?

BACKGROUND AND OBJECTIVES: It is unclear whether the susceptibility to myocardial depression from an accidental intravascular local anesthetic (LA) administration is associated with LA stereoselectivity or structure. By using direct left ventricular pressure monitoring and echocardiographic indices of contractile function in anesthetized, ventilated dogs, we compared the cardiac depressant effects of bupivacaine, ropivacaine, levobupivacaine, and lidocaine. METHODS: Open-chest dogs were randomized to receive escalating incremental infusions of the 4 local anesthetics until cardiovascular collapse. We assumed a concentration relationship for potency of 4:1 for lidocaine/bupivacaine, ropivacaine, and levobupivacaine. RESULTS: All LAs produced concentration-dependent increases in left ventricular end diastolic pressure (LVEDP) and decreases in dP/dtmax, ejection fraction % (EF), fractional shortening (%) (FS), and cardiac output (CO). When comparing the long-acting agents, the effect was least for ropivacaine. The effective concentration estimates for ropivacaine that produced 35% reductions in dP/dtmax and FS were 4.0 micro g/mL (95% confidence intervals [CI(95)]: 3.1 to 5.2 micro g/mL) and 3.0 micro g/mL (CI (95): 2.1 to 4.2 micro g/mL), respectively. The concentrations of levobupivacaine that produced these same end points of contractile dysfunction were significantly less: 2.4 micro g/mL (CI(95): 1.9 to 3.1 micro g/mL) and 1.3 micro g/mL (CI(95): 0.9 to 1.8 micro g/mL), respectively, and these were not different from bupivacaine. As expected, the concentrations of lidocaine that produced 35% reductions in dP/dtmax and FS were significantly greater than the longer acting agents; 8.0 micro g/mL (CI(95): 5.7 to 11.0 micro g/mL) and 5.5 micro g/mL (CI(95): 3.5 to 8.7 micro g/mL), respectively. CONCLUSIONS: This study suggests that smaller molecular size and possibly a piperidine-free structure as opposed to stereoselectivity may be the more important factor in reducing the risk of LA-induced myocardial depression.

Anesthesia↗

Cardiovascular effects of and interaction between calcium blocking drugs and anesthetics in chronically instrumented dogs. V. Role of pharmacokinetics and the autonomic nervous system in the interactions between verapamil and inhalational anesthetics.

To assess the role of both pharmacokinetics and the autonomic nervous system in the interaction between inhalational anesthetics and verapamil, dogs were chronically instrumented to measure heart rate, PR interval, dP/dt, cardiac output, and aortic blood pressure. In a first group of seven dogs, studied awake and during halothane (1.2%), enflurane (2.5%), and isoflurane anesthesia (1.6%), verapamil was infused for 30 min in doses calculated to obtain similar plasma concentrations (83 +/- 10, 82 +/- 6, 81 +/- 10, and 77 +/- 9 ng.ml-1, respectively). For the latter purpose, the infusion dose was 3 and 2 micrograms.kg-1.min-1 awake and during anesthesia, respectively, preceded by a loading dose of 200, 150, and 100 micrograms.kg-1, awake, during isoflurane, and halothane and enflurane, respectively. In awake dogs, verapamil induced an increase in heart rate (24 +/- 5 bpm) and PR interval (35 +/- 9 msec) and a decrease in mean arterial pressure (-5 +/- 2 mmHg) and dP/dt (-494 +/- 116 mmHg/s). Although plasma concentrations were similar in awake and in anesthetized dogs, the only statistically significant changes induced by verapamil were an increase in heart rate and a decrease in dP/dt during halothane and enflurane, while left atrial pressure increased only with enflurane. In a second group of six dogs, verapamil pharmacokinetics were determined in the presence and absence of a ganglionic blocking drug (chlorisondamine, 2 mg.kg-1 iv). Blockade of ganglionic transmission resulted in a decrease in both initial volume of distribution and total clearance of verapamil--changes similar to those previously reported with inhalational anesthetics.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthetics↗

Depressant effects of volatile anesthetics upon rat and amphibian ventricular myocardium: insights into anesthetic mechanisms of action.

To clarify the mechanisms by which volatile anesthetics may depress myocardial contractility, the depressant effects of equivalent concentrations of isoflurane, enflurane and halothane were compared in rat and frog ventricular myocardium, preparations which differ markedly in excitation-contraction coupling. In Tyrode solution, right ventricular papillary muscles from rat exhibited very large, rapidly developing contractions after rest, with a subsequent negative force-frequency relation as the stimulation rate was increased to 0.1, 0.25, 0.5, 1, 2, and 3 Hz. The large contractions after rest and at 0.1 Hz were depressed by 0.75% halothane and 1.7% enflurane to about 60% of control, but less so by 1.3% isoflurane (approximately 0.8 MAC). Halothane at 1.5% was more depressant than 2.5% isoflurane at all stimulation rates, while 3.5% enflurane caused intermediate depression (approximately 1.6 MAC). Contractions in frog ventricular strips were studied in Ringer solution following rest and at stimulation rates of 0.1, 0.25, 0.5, and 1 Hz, in the absence and presence of equivalent anesthetic concentrations. At 0.1 to 1 Hz, isoflurane was less depressant than equivalent concentrations of halothane. Enflurane (1.7%) was less depressant than 0.75% halothane at 0.1 and 0.25 Hz; 3.5% enflurane was more depressant than 2.5% isoflurane at 1 Hz. Anesthetic effects on sustained contractures were also studied in frog ventricular strips that were superfused for 4-5 min with 40, 60, 80, and 100 mM K Ringer solution. Contractures induced by 80 and 100 mM K solution were depressed more by halothane (to 60% of control) than by isoflurane or enflurane (approximately 85% of control). However, only enflurane depressed the contractions at 1 Hz more than the sustained contractures in 100 mM K Ringer. The Ca2+ for activating contractions in rat ventricle is derived largely from the sarcoplasmic reticulum, the intracellular Ca2+ accumulation and release organelle. In contrast, Ca2+ for activating contractions in the frog ventricle originates primarily from the external medium. These results suggest that halothane is more potent than isoflurane in reducing the amount of Ca2+ rapidly released from the sarcoplasmic reticulum (as observed in rat), as well as in depressing entry of extracellular Ca2+ to activate myofibrils (as in frog). Enflurane appears to have intermediate potency with actions distinct from halothane and isoflurane. The greater potency of halothane may also be due in part to greater direct depression of actin-myosin ATPase.

Anesthetics↗

Can determining the minimum alveolar anesthetic concentration of volatile anesthetic be used as an objective tool to assess antinociception in animals?

UNLABELLED: We intended to evaluate the reliability of the minimum anesthetic alveolar concentration (MAC)-sparing effect as an objective measure of the antinociceptive properties of a drug. For this purpose, we tested different variables and analyzed the significance of the results obtained. In a first set of experiments, we studied rats under mechanical ventilation and sevoflurane anesthesia. Outcome variables such as gross purposeful movements consecutive to tail clamping, paw withdrawal consecutive to increasing pressure, and cardio-circulatory reactivity (MACBAR) after these stimuli were recorded. In a second set of experiment, sevoflurane-anesthetized rats under spontaneous breathing conditions were used. Thermal stimuli were compared with pressure. The MAC-sparing effect of several doses of sufentanil and clonidine was evaluated in both anesthetized and awake rodents. When considering the stimulus applied, larger concentrations of sevoflurane were required to suppress reactivity after tail clamp than after paw pressure or radiant heat (1.81 +/- 0.28 versus 1.45 +/- 0.22 and 1.53 +/- 0.26; P < 0.05). For the two first stimuli, no significant differences were noted between the concentrations that suppress motor or cardio-circulatory reactions. All doses of sufentanil tested significantly reduced (P < 0.05) the different MAC values except the smallest one (0.005 micro g x kg(-1) x min(-1)) that significantly increased MACBAR in ventilated animals and both MAC and MACBAR in spontaneously breathing rodents (P < 0.05). Clonidine, at its optimal dose (10 micro g/kg), significantly reduced both MAC and MACBAR to the same degree. In awake animals submitted to radiant heat or pressure challenge, none of the clonidine doses nor sufentanil doses (0.005 and 0.07) were active. In conclusion, the MAC-sparing effect provides several reliable and quantifiable variables that allow comparison between different analgesic substances. However, the observations made are not simply the result of antinociceptive effects of the tested drugs but rather that of complex interactions between these drugs and a halogenated vapor. IMPLICATIONS: The MAC-sparing effect provides several variables that allow comparison between different analgesic substances. However, the observations made are not simply the result of the antinociceptive effects of the tested drugs but rather the result of complex interactions between these drugs and a halogenated vapor.

Adrenergic alpha-Agonists↗

Anesthetic, cardiorespiratory, and metabolic effects of four intravenous anesthetic regimens induced in horses immediately after maximal exercise.

OBJECTIVE: To determine the anesthetic, cardiorespiratory, and metabolic effects of 4 IV anesthetic regimens in Thoroughbred horses recuperating from a brief period of maximal exercise. ANIMALS: 6 adult Thoroughbreds. PROCEDURE: Horses were preconditioned by exercising them on a treadmill. Each horse ran 4 simulated races, with a minimum of 14 days between races. Races were run at a treadmill speed that caused horses to exercise at 120% of their maximal oxygen consumption. Horses ran until fatigued or for a maximum of 2 minutes. Two minutes after exercise, horses received a combination of xylazine hydrochloride (2.2 mg/kg of body weight) and acepromazine maleate (0.04 mg/kg) IV. Five minutes after exercise, horses received 1 of the following 4 IV anesthetic regimens: ketamine hydrochloride (2.2 mg/kg); ketamine (2.2 mg/kg) and diazepam (0.1 mg/kg); tiletamine hydrochloride-zolazepam hydrochloride (1 mg/kg); and guaifenesin (50 mg/kg) and thiopental sodium (5 mg/kg). Treatments were randomized. Cardiopulmonary indices were measured, and samples of blood were collected before and at specific times for 90 minutes after each race. RESULTS: Each regimen induced lateral recumbency. The quality of induction and anesthesia after ketamine administration was significantly worse than after other regimens, and the duration of anesthesia was significantly shorter. Time to lateral recumbency was significantly longer after ketamine or guaifenesin-thiopental administration than after ketaminediazepam or tilet-amine-zolazepam administration. Arterial blood pressures after guaifenesin-thiopental administration were significantly lower than after the other regimens. CONCLUSIONS AND CLINICAL RELEVANCE: Anesthesia can be safely induced in sedated horses immediately after maximal exercise. Ketamine-diazepam and tilet-amine-zolazepam induced good quality anesthesia with acceptable perturbations in cardiopulmonary and metabolic indices. Ketamine alone and guaifenesin-thiopental regimens are not recommended.

Acepromazine↗

[Relations between the physico-chemical properties, the chemical reactivity and the local anesthetic activity. 32. (Part 1): Binding capacity of a structural protein (wool) to local anesthetics].

1. The general part deals with the molecular structure of nerve membranes and different local-anesthetic substances as well as the various possibilities of local-anesthetic binding to the nerve membrane. Albumin is usually chosen as a model protein in such investigations, a short extract of which is given. 2. The special part includes the chemical composition and properties of wool macroprotein, the model system used in the present paper. We determined its protein-binding values with cinchocain and tetracain homologues and various known commercial products of local anesthetics (oxybuprocain, parethoxyprocain and tetracain). The binding constants of these substances on wool protein are shown. 3. A statistically confirmed relationship between the alkyl chain length and the strength of protein binding is given. The free energy per CH2-group ranges between 400 and 500 cal/mol and its larger in cases of low pH values. 4. From the present data, a relationship between the binding constant and the partition constant of each substance of the homologous series studied could easily be observed, which further makes it possible to estimate the characteristic protein-binding constant Kp and also the change in pi-values with the change in free reaction energy of the substances. 5. The large differences in the binding values of the different binding mechanisms, which most probably are dependent on the variable binding affinities of the functional groups as well as on steric factors. But as in the homologous series, only substituents like alkyl amino and alkoxy could be changed, the possibility of some other binding process depending on the alkyl chain length of these groups could not be ruled out. Since the alky groups are non-polar, hydrophobic binding plays a role.

Albumins↗

[Relations between the physico-chemical properties, the chemical reactivity and the local-anesthetic activity/part 33: studies on the interactions of local-anesthetically active cinchocaine homologues with phospholipids (author's transl)].

The general part consists of a review on nerve stimulus mechanism as well as the nerve structure and the function of nerve membrane as the site of action of local anesthetics. Furthermore a possibility of interaction between local anesthetics and the membrane components especially phospholipids is discussed. These phospholipids show interesting properties with respect to ions as well as local-anesthetics, which allow us to suppose that they are important participants in nervous stimulus transmission. In the experimental part two methods are described. The first deals with the measurement of electrical resistance as function of time at cephalin and cholesterin impregnated filter membrane in solutions of cinchocain homologues. An increase in the resistance with the increase in concentration of test substances was observed. The same was the effect of increasing chain length in alkoxy group where after butoxy derivative, a deformation of membrane was observed. In the second method the drug binding capacity of cephalin dispersed in aqueous medium was measured. Here, too, the increase in the binding capacity with the increase in alkoxy chain was observed. The large difference in free binding energy between two subsequent homologues is explained as the effect of increase in van der Waals' forces and hydrophobic interactions on one hand, and a change in colloidal form of cephalin dispersion on the other hand.

Absorption↗

Effect of a topical anesthetic cream (EMLA) in reducing pain caused by infiltration of local anesthetic in eyelid surgery.

EMLA (eutectic mixture of local anesthetics) cream is a topical formulation of a mixture of lidocaine and prilocaine. It has been used to achieve local analgesia after application under an occlusive dressing. We carried out a double-blind randomized controlled clinical trial to assess the effect of 5% EMLA (25 mg/mL of lidocaine and of prilocaine) in reducing the pain caused by infiltration of local anesthetic in eyelid surgery. Pain was assessed by means of a modified visual analogue scale ranging from 0 (no pain) to 10 (excruciating pain) in 25 consecutive patients (average age 65 years) undergoing bilateral eyelid surgery. Clinical significance was defined as a difference in pain scores of 3 or more between EMLA and placebo. The mean pain scores for EMLA and placebo were 3.1 and 4.0 respectively, a nonsignificant difference. The EMLA preparation was found not to be clinically effective in reducing pain caused by infiltration of local anesthetic in eyelid surgery.

Aged↗

Evaluation of three transportable multigas anesthetic monitors: the Bruel & Kjaer Anesthetic Gas Monitor 1304, the Datex Capnomac Ultima, and the Nellcor N-2500.

We compared the performance of three newly developed anesthetic agent (AA) monitors: the Bruel & Kjaer Anesthetic Agent Monitor 1304 (BK 1304), the Datex Capnomac Ultima (ULTIMA), and the Nellcor N-2500 (N-2500). The following were investigated: the linearity and accuracy in measuring AAs, oxygen, carbon dioxide, and nitrous oxide; the linearity and accuracy during warm-up time; the effect of increasing respiratory rate on the accuracy; the consequences of a difference between monitored and delivered AA and of delivering a mixture of AAs; and, finally, the effect of water vapor and alcohol. For all three monitors we found that the accuracy in determining the respiratory and anesthetic gases was sufficient for clinical use (the N-2500 does not measure oxygen). Because of the calibration mixture supplied with the device, however, the ULTIMA recorded values that were 10 to 12% (relative) less than the AA that was present. The BK 1304 had greater accuracy at higher respiratory rates than did the other two monitors, probably favoring its use in pediatric anesthesia. The N-2500 will detect which agent (isoflurane, enflurane, or halothane) is being used, alone or in a mixture. With the two other monitors the user must define which agent is given. In some situations a difference between this and the one actually delivered can theoretically lead to an overdose of AA, with the ULTIMA up to a 14.9 minimal alveolar concentration (MAC) overdose. No interference from alcohol or water vapor in the expired air was found.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthesia, Inhalation↗

Anesthetic and hemodynamic effects of the alpha 2-adrenergic agonist, azepexole, in isoflurane-anesthetized dogs.

The authors studied the reduction in anesthetic requirement (MAC) and the hemodynamic effects of the highly selective alpha 2-adrenergic agonist azepexole in isoflurane-anesthetized dogs. Eleven male beagles were anesthetized with isoflurane in oxygen. After a 2-h equilibration period, they determined isoflurane MAC and baseline hemodynamic function. Azepexole (at 0.1, 0.3, and 1.0 mg/kg) was administered via a right atrial port over 15 min, while each dog was given isoflurane at the MAC dose for that animal. Twenty minutes after the end of infusion, at a time when hemodynamic variables were stable, they reassessed hemodynamic function. They then determined isoflurane MAC again. In other experiments, dogs were pretreated with either idazoxan (the alpha 2-adrenergic antagonist; n = 5) or naloxone (the opiate antagonist; n = 7) prior to the administration of azepexole. Isoflurane MAC was determined before and after each dose of azepexole. Isoflurane MAC decreased as the dose of azepexole increased, to the extent that at the highest dose (1 mg/kg) the decrement in MAC was more than 85%. This reduction of MAC caused by azepexole could be completely prevented by pretreatment with idazoxan, while naloxone was without effect. Azepexole did not change mean arterial blood pressure, but caused heart rate and cardiac output to progressively decrease. The MAC-reducing effect of azepexole appears to be mediated by alpha 2 adrenoreceptors. Given the extent of the reduction of MAC, it is unlikely that inhibition of central noradrenergic neurotransmission through agonism of presynaptic alpha 2 adrenoreceptors is the sole explanation, since complete disruption of central noradrenergic tracts decreases MAC by only 40%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Agonists↗

The anesthetic efficacy of midazolam in the enflurane-anesthetized dog.

This study determined the anesthetic efficacy of midazolam (MID) in terms of its ability to reduce enflurane MAC (EMAC). Control EMAC was determined by the tail-clamp method in 15 mongrel dogs. Each animal then received at least three incremental infusion rates of MID from among the following: 0.48, 2.4, 9.6, 19.2, 28.8, 48, or 151.2 micrograms.kg-1.min-1. MAC was determined during each infusion rate following a 1-h observation period, during which time MID concentration in plasma [( MID]) stabilized. [MID] was measured every 15 min beginning 45 min from the start of each new infusion rate. There was a linear relationship between MID infusion rates and the resulting [MID] (r = 0.995). In the range of [MID] from 14 to 14,118 ng/ml, there was a linear relationship between the log [MID] and the percent EMAC reduction. The slope of the line was very shallow, and the [MID] required to reduce EMAC by more than 50% exceeded the [MID] likely to be employed clinically in humans (750 ng/ml). Also, the 73 +/- 4% (mean +/- SEM) EMAC reduction produced by [MID] = 9,763 +/- 1213 ng/ml was not significantly greater than the 60 +/- 3% EMAC reduction achieved by [MID] = 1,464 +/- 293 ng/ml, a finding which suggests a ceiling effect to the anesthetic efficacy of midazolam. The authors conclude that, within the dose range of MID likely to be employed in humans, MID produced a concentration-dependent reduction of enflurane MAC in the dog. In doses above those likely to be employed clinically, a ceiling effect to the anesthetic efficacy of MID may become evident.

Adjuvants, Anesthesia↗

Anesthetic pollution and waste anesthetic gas scavenging.

The significance of chronic exposure to anesthetic pollution for veterinarians and their associates is not well defined, but one cannot ignore the evidence that a potential occupational health hazard exists. Installation of a scavenging system can reduce anesthetic pollution and personnel exposure to waste gases significantly. However, it is important to realize that these systems are not a replacement for safe anesthetic practices and are only effective when used correctly and maintained properly.

Air Pollutants, Occupational↗

The anesthetic onset and duration of a new lidocaine/prilocaine gel intra-pocket anesthetic (Oraqix) for periodontal scaling/root planing.

BACKGROUND: A new non-injection anesthetic, lidocaine/prilocaine gel (Oraqix, AstraZeneca) in a reversible thermosetting system, has been developed to provide local anesthesia for scaling/root planing (SRP). The aim of this study was to determine the anesthetic onset and duration of the gel for SRP in patients with periodontitis. METHODS: 30 patients were randomized to either 30 s, 2 min, or 5 min of treatment with the gel prior to SRP of a tooth. The gel was applied to periodontal pockets with a blunt applicator. On completion of the SRP of each tooth (2-3 teeth treated/patient), the patients rated their pain on a 100-mm visual analogue scale (VAS). RESULTS: The median VAS pain score was 7.5 mm in the 30-s group, 28.5 mm in the 2-min group, and 15.5 mm in the 5-min group, with a significant difference between the 30-s and 2-min groups (p=0.03). In 2 patients in the 5-min group, but none in the other groups, the SRP was interrupted due to pain. The mean duration of anesthesia measured as pain on probing were 18.1, 17.3, and 19.9 min in the 30-s, 2-min, and 5-min groups, respectively. There were no reports of numbness of the tongue, lip, or cheek, neither were there any adverse local reactions in the oral mucosa. The gel was easy to apply and did not interfere with the SRP procedure. CONCLUSION: Oraqix provides anesthesia after an application time of 30 s, with a mean duration of action of about 17 to 20 min.

Administration, Topical↗

The role of molecular structure in the crystal polymorphism of local anesthetic drugs: crystal polymorphism of local anesthetic drugs, part X.

PURPOSE: This report is the résumé of a comprehensive investigation on the solid-state properties and the crystal polymorphism of the structurally homogenous class of local anesthetic drugs. The goal is to explore the relationship between crystal polymorphism and molecular structural features. METHODS: A salt form (mostly the hydrochloride) as well as the free base of 24 local anesthetics has been characterized by means of thermomicroscopy, differential scanning calorimetry, pycnometry, Fourier transform infrared, Fourier transform Raman, and solid-state NMR spectroscopies, as well as X-ray diffraction methods (single crystal, powder). RESULTS: Based on the thermochemical data, the relative thermodynamic stabilities of the different crystal forms of each polymorphic system were evaluated and visualized as semiquantitative energy/temperature diagrams. CONCLUSION: This study is the first step in recognizing relationships between the structure and the solid-state properties within this limited group of active substances with common structural elements. The results clearly show that there are certain relationships, but, to understand the phenomenological behavior in more detail on a molecular level, more structural information must be collected and analyzed by computational methods.

Adsorption↗