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Plasma codeine and morphine concentrations after therapeutic oral doses of codeine-containing analgesics.

Plasma concentrations of codeine and morphine were determined by specific radioimmunoassays in healthy human subjects at various times following oral administration of analgesic preparations containing therapeutic doses of codeine phosphate. Following administration of codeine phosphate (60 mg) in combination with aspirin (650 mg) or acetaminophen (600 mg) to two separate groups, mean peak codeine plasma concentrations and beta-phase elimination half-lives were 159 ng/ml and 2.9 hr or 138 ng/ml and 2.4 hr, respectively. Mean maximum concentrations of metabolically produced morphine were 6.8 ng/ml (aspirin-codeine phosphate administration) and 7.4 ng/ml (acetaminophen-codeine phosphate). Following drug administration, the mean ratio of the areas under the respective plasma concentration-time curves for morphine and codeine was 0.095 for the aspirin-codeine phosphate study and 0.12 for the acetaminophen-codeine phosphate study. Thus, free morphine represented about 10% of the free codeine area in each case. These results support the hypothesis that metabolically produced morphine may influence or be responsible for the analgesic efficacy of codeine.

Acetaminophen

Ratios of total morphine to total codeine in urine of subjects consuming medicinal preparations containing morphine or codeine and in drug abusers.

Urinary total morphine: total codeine ratios were studied in two groups of people. Group A consisted of 76 subjects receiving three different medicinal preparations containing morphine or codeine, while Group B consisted of 33 drug abusers detected at urinary mass screening. Distinct differences in these ratios were observed. In Group A, total morphine: codeine ratios of 1:2.6 and below were obtained for subjects consuming either Tablet Codeine Co or Syrup Phensedyl. Subjects consuming Kaolin et Morphine mixture did not excrete any codeine in the urine. In Group B, total morphine: total codeine ratios of 1.9:1 and above were obtained. In addition all subjects in Group B excreted both morphine and codeine. The clear separation of the morphine: codeine ratios makes this a possible index to differentiate between these groups.

Codeine

Analgesic studies of codeine and oxycodone in patients with cancer. II. Comparisons of intramuscular oxycodone with intramuscular morphine and codeine.

The relative analgesic potency of single graded intramuscular doses of oxycodone and morphine was evaluated in a double-blind study in patients with chronic pain due to cancer. When both intensity and duration of analgesia are considered (total analgesic effect), oxycodone was 2/3 to 3/4 as potent as morphine, while in terms of peak analgesia, it was 8/10 to equipotent. In doses producing equivalent peak effect, oxycodone had a shorter duration of action than morphine. Intramuscular oxycodone was also compared to intramuscular codeine in a similar patient group. In terms of total analgesic effect, oxycodone was 10 times as potent as codeine, while in terms of peak analgesia it was 12 times as potent. These relative potency relationships of oxycodone, taken in conjunction with the oral/parenteral potency ratios of codeine and oxycodone established in the previous paper and several previous relative potency assays involving morphine, oxymorphone and codeine, demonstrate a highly consistent pattern of analgesic structure-activity relationships encompassing morphine, oxymorphone, codeine and oxycodone. The results of these studies do not appear to support the hypothesis that, in man, the analgesic activity of codeine is due to its O-demethylation to morphine.

Adult

Analgesic studies of codeine and oxycodone in patients with cancer. I. Comparisons of oral with intramuscular codeine and of oral with intramuscular oxycodone.

The relative analgesic potency of oral and intramuscular codeine was evaluated in a double-blind crossover comparison of graded single doses in patients with chronic pain due to cancer. When both duration and intensity of analgesia are considered (total effect), oral codeine was 6/10 as potent as the intramuscular form. This is a high oral/parenteral analgesic relative potency ratio compared with morphine, metopon and oxymorphone and correlates well with the results of recent studies which have determined the oral vs. intramuscular bioavailability of codeine in man. Oral and intramuscular oxycodone were also compared in a similar patient group. Like codeine, oxycodone retained at least 1/2 of its analgesic activity when administered orally. We hypothesize that the high oral/parenteral relative potency ratios of codeine and oxycodone relative to morphine and its congeners are not due to more efficient absorption after oral administration, but rather that methylation at position 3 in codeine and oxycodone protects these drugs from rapid first-pass metabolism.

Administration, Oral

Urinary excretion levels of morphine and codeine in subjects consuming medicinal preparations containing morphine or codeine and in drug abusers.

Urinary levels of morphine and codeine were studied in two groups of people: Group A--urine samples of 76 subjects receiving three different medicinal preparations containing morphine or codeine. Group B--urine samples of 67 drug abusers detected at urinary mass screening. Distinct differences in these levels were observed. In Group A, UPPER 99% Confidence limits of morphine concentrations of 2.56 microgram/ml, 2.40 microgram/ml and 2.29 microgram/ml were reached after consumption of prescribed doses of Syrup Phensedyl, Tablet Codeine Co and Kaolin et Morphine mixture respectively. In Group B, the LOWER 99% Confidence limit of morphine concentration was 3 microgram/ml. In contrast, the codeine levels obtained for both groups were similar. The clear separation of the ranges of morphine values for the two groups shows that the urinary morphine level forms a reliable index for the differentiation between these two groups.

Adolescent

The human urinary excretion pattern of morphine and codeine following the consumption of morphine, opium, codeine and heroin.

The urinary excretion patterns of morphine and codeine in a number of individuals following consumption of morphine-based narcotic drugs have been studied. From the data collected the relative amounts of codeine and morphine in urine specimens were compared and certain trends, consistencies and irregularities were revealed. To a certain extent, the ratio of the proportion of codeine to morphine excretion in urine may be used to determine the nature of the drugs consumed. This correlation is useful in the interpretation of the results of urine analysis which is the basis of effective control and rehabilitation of drug addiction.

Codeine

[The behaviour of codeine and codeine-6-glucuronide in hydrolysis with hydrochloric acid (author's transl)].

The behaviour of codeine and codeine-6-glucuronide with hydrochloric acid has been investigated. Three methods of hydrolysis were selected; they are often used in routine identification of drugs in urine. With method I (12--13% HCl; 30 min at 100 degrees C) about 53% of codeine-6-glucuronide were not hydrolized. The corresponding values: with method II (20% HCl; 6 min heated azeotrope in open vessel) about 8% and with method III (nearly 5% HCl; 30 min at 100 degrees C) about 83%.

Chemical Phenomena

Actions and metabolism of codeine (methylmorphine) administration by continuous intravenous infusion to humans.

Miosis produced by codeine is not antagonized by nalorphine until large oral doses are administered for several days. The present experiment was conducted in order to further study this characteristic of the codeine effect. Eight healthy male volunteers, who were former drug users, were divided into two groups. Subjects in the first group were given a continuous infusion of codeine, 30 mg/hr for 11-16 hr. No subjective effects were reported by the volunteers. In three of the individuals definite miosis antagonized by nalorphine was observed at 9.5 hr. The dose of codeine for the second group was 60 mg/hr for 11 hr. Mild but definite subjective effects were experienced by each of the participants in this group. Miosis appeared between 2 and 6 hr. Challenges at 4 and 6 hr were positive in two subjects and negative or equivocal in the other two. Codeine was excreted in the urine as free and conjugated codeine, morphine, and norcodeine. Maximum rates of excretion were similar for both groups, suggesting that the maximum amount of codeine that can be metabolized is equal or less than 30 mg/hr. Also codeine clearance, being greater than creatinine clearance, suggests that codeine might be excreted by glomerular filtration and tubular secretion. Blood levels of codeine in the 60 mg/hr group were about 10 times those reported as therapeutic. However, morphine or norcodeine were not detectable by the methods used.

Adult

Self-administration of codeine plus acetylsalicylic acid in rhesus monkeys with unlimited access to the drugs.

The reinforcing effects of codeine (5.0 mcg/kg/infusion), acetylsalicylic acid (ASA) (2500 mcg/kg/infusion) and those of combinations of codeine (50 mcg/kg/infusion) plus (2500 or 10,000 mcg/kg/infusion) were studied in four groups of drug naive rhesus monkeys. Responding was engendered and maintained by infusions of 50 mcg/kg of codeine; maximal number of daily infusions being 500 to 1000. Infusions of 2500 mcg/kg of ASA plus 50 mcg/kg of codeine per infusion initiated responding from the 9th to the 10th day of the drug period on. The number of self-administered infusions did not exceed 200 daily. Monkeys self administered codeine without signs of intoxication. All three monkeys self-administering the combination of 50 mcg/kg of codeine plus 2500 mcg/kg of ASA died during the experiment. They exhibited signs of severe intoxication. A combination of 50 mcg/kg of codeine and 10,000 mcg/kg of ASA was not self-administered until the 12th day of the drug period. Two out of three monkeys initiated responding for the combination during the drug period. The number of self-administered infusions did not exceed 50 per day. A third monkey did not initiate self-administration during the 14 day drug period. Both monkeys which engendered self-administration died on the 14th day of the experiment as a result of general intoxication. These experiments suggest that even toxic doses of ASA will not prevent monkeys from self-administration when offered together with a positive reinforcing drug such as codeine under a schedule of continuous self-administration.

Animals

Effect of codeine phosphate, Lomotil, and Isogel on iileostomy function.

The effect on ileostomy function of codeine phosphate, Lomotil, or Isogel was tested in 20 subjects at home living a normal life, studied over two three-day periods on and off treatment. Codeine phosphate 60 mg three times daily was associated with a reduction in the mean total weight of ileostomy output and the ileostomy outputs of water, sodium, and potassium (p < 0.05). The proportion of faecal solids increased on codeine and the effluent appeared thicker but the output of faecal solids remained unchanged. Mean faecal fat increased on codeine. The transit rate from mouth to stoma was slower in four of the five subjects on codeine and a further two subjects withdrew from the trial with temporary intestinal obstruction while on the drug. Lomotil two tablets three times daily was associated with a small and statistically not quite significant fall in the mean total weight of ileostomy output and the ileostomy output of water. Sodium and potassium outputs in the effluent fell on Lomotil (p < 0.05) but the other parameters remained unchanged. Isogel 15 ml three times daily was associated with an increase in the mean total weight of ileostomy output and the ileostomy outputs of water, sodium, potassium, and faecal solids (p < 0.01). Although the effluent looked more viscid on Isogel, the proportion of faecal solids was unchanged. These results suggest that codeine phosphate has a beneficial effect on ileostomy function, reducing the loss of water and electrolytes, while Lomotil has a similar but less effective action in the dosage tested. By contrast, Isogel increases the ileostomy loss of water and electrolytes and will aggravate their depletion in patients with excessive fluid effluents. The increase in faecal fat associated with taking codeine phosphate suggests that it should be stopped before collecting specimens for faecal fat estimations.

Adolescent

Comparison of the effects of acupuncture and codeine on postoperative dental pain.

The analgesic effects of acupuncture were compared with those of codeine in the treatment of postoperative dental pain in 40 healthy male volunteers 18 to 30 years old. Upon the patient's recovery from local anesthesia (lidocaine), he was asked by a trained observer to classify the intensity of his pain as none, mild, moderate, or severe. He then received one of the following treatments: 1. Placebo: lactose, plus acupuncture placebo 2. Codeine: codeine, plus acupuncture placebo 3. Acupuncture (Ho-Ku): lactose, plus 2 Ho-Ku points 4. Codeine-acupuncture: codeine, plus 2 Ho-Ku points. The pain intensity score was recorded by the observer at half-hour intervals for 3 hours. Patients in treatment groups 2, 3 and 4 showed significantly greater pain relief than those in treatment group 1. For the 1st half hour, there was more pain relief with Ho-Ku alone than with codeine plus Ho-Ko (p less than 0.01). However, for the 2, 2 1/2, and 3-hour periods, codeine plus Ho-Ku produced more pain relief than any of the other treatments.

Acupuncture Therapy

Asprin and codeine in two postpartum pain models.

Aspirin and codeine, standard reference analgesics, are frequently used as positive controls in clinical trials of new oral analgesics. In randomized parallel double-blind studies, single doses of aspirin and codeine were compared with placebo in episiotomy pain (99 patients) and in postpartum uterine pain (130 patients), common models in analgesic trials. With aspirin, 600 and 1,200 mg, in episiotomy pain, analgesia as measured by pain intensity difference (PID) scores began within 1 hr, peaked at the second hour (p less than 0.01), and continued to the fifth hour (p less than 0.01). In uterine pain, responses with aspirin, 650 mg, were observed to be equally good. With codeine, 60 mg, in episiotomy pain measurable analgesia was present by the second hour and was significant at the fourth hour (p less than 0.05); in uterine pain, responses were indistinguishable from placebo throughout an 8-hr time-course. Codeine seemed ineffective and therefore umacceptable as a positive control in uterine pain. These data imply that the two postpartum pain models are qualitatively different: episiotomy pain seems sensitive to both aspirin and codeine, while uterine pain appears sensitive to aspirin but not to codeine.

Adult

Tolerance and evidence of physical dependence to daily codeine injections in the rat.

Core temperatures, measured by telemetry, and acquisition of food pellets on a continuous reinforcement schedule were recorded every 30 min in unrestrained male rats given saline for 5 days before and 5 days after 10 daily SC injections of codeine phosphate (200 mg/kg) at 08:00 hr. After the first codeine injection rats were immobile, slightly catatonic, breathed shallowly and had elevated core temperatures, loss of body weight and inhibition of feeding activity. As injections of codeine were repeated, the initial depressant signs decreased and the period of inhibited feeding was replaced by prolonged (greater than 8 hr) post-injection bouts of feeding activity (stimulated feeding) during daylight hours. Core temperatures remained elevated during this phase of drug-induced feeding activity. Mean body weight and 24-hr food intake remained below control levels over the 10-day codeine period as diurnal feeding patterns became reversed. On the first withdrawal day core temperatures declined and feeding patterns changed from those responses on the last codeine day as the rats lost body weight and were hyperirritable. As withdrawal continued core temperature and feeding patterns began to resemble those of the saline control period, body weights increased and hyperirritability subsided. In this study, tolerance and evidence of physical dependence to daily injections of codeine could be demonstrated in rats by continuous monitoring of their diurnal feeding and temperature responses.

Animals

Effects of response-contingent clock stimuli on behavior maintained by intravenous codeine in the rhesus monkey.

Response-contingent brief presentations of clock stimuli differentially correlated with food availability altered rates of codeine-maintained lever pressing. Rhesus monkeys performed under a two lever multiple schedule: Multiple fixed interval clock 5 min variable interval 2 min. Different colored lights were presented during successive 75 sec period of the fixed-interval clock component. Lever pressing under the FI Clock schedule was maintained by presentation of 1 g Noyes pellets, and lever pressing under the VI schedule by 0.05 mg/kg infusions of codeine PO4. Characteristic schedule-controlled performance developed in both schedule components. When the clock stimulus from the first or the final period of the FI Clock schedule was presented contingent upon completion of a short fixed ratio of responses during the variable-interval schedule component, the first clock stimulus decreased and the final clock stimulus increased rates of codeine-maintained lever pressing. Neither the first nor the final clock stimulus altered the frequency of codeine injection. The effect of each clock stimulus was accentuated by increasing the duration of stimulus presentation and by decreasing the response requirement for stimulus illumination. These rate-altering effects of the clock stimuli were most pronounced when different reinforcers were presented in the two components of the multiple schedule when either food or intravenous codeine injection was available under both components of the multiple schedule, response-contingent clock stimulus presentation did not alter response rates under the VI schedule.

Animals

Appraisal of codeine as an analgesic in older patients.

In an investigation of a new oral analgesic agent, codeine was chosen as the reference drug because of its established reputation as an effective agent for the relief of pain. Thirty-five patients with cancer pain were studied. Their average age was 58 years, During a 5-day hospital stay they received, on each of three days, either codeine (120 mg or 60 mg) or placebo. At hourly intervals after ingestion the nurse observer collected data on pain intensity and the degree of pain relief, and the patients independently charted the hourly intensity. Statistical analysis failed to show any significant superiority of either dose of codeine over placebo. Moreover, codeine is known to have a constipating effect. Re-appraisal of the value of codeine as an analgesic agent in elderly patients seems justified.

Adult

Simultaneous determination of codeine and morphine in biological samples by gas chromatography with electron capture detection.

A sensitive gas chromatographic method for the simultaneous determination of codeine and morphine in plasma and brain samples is described. The method involves solvent extraction of the compounds from plasma, derivatization with pentafluoropropionic anhydride and subsequent separation on a 3% OV-17 column. The quantification is performed with electron capture detection. The sensitivity of the method (0.75 ng of morphine and 7.5 ng of codeine in a sample) makes it especially useful for pharmacokinetic investigations. The method was successfully applied to determine the time course of codeine and its metabolite morphine after intravenous administration of codeine to the rat.

Animals

Double-blind oral analgesic study of butorphanol in musculoskeletal pain: a comparison with codeine and placebo.

Butorphanol tartrate (4 mg and 8 mg) was compared to codeine phosphate (60 mg) and placebo for oral analgesic activity and side-effects employing a double-blind design in ninety-three out-patients suffering from moderate to very severe musculoskeletal pain. The study duration was 72 hours with medication administered every 4 to 6 hours (four times daily) for a total of twelve doses per patient. The results demonstrate that both the 4 mg and 8 mg doses of butorphanol were significantly better (p less than 0.u5) than placebo. While codeine 60 mg also proved active, it appears to be less efficacious than the high dose of butorphanol. The peak effect appeared to be evident in 1 to 2 hours. Butorphanol may be at least seven times more potent than codeine on a milligram basis. Although no serious side-effects were observed, butorphanol appeared to present a greater incidence of side-effects than codeine and placebo in this study.

Adolescent

Potentiation of antitussive effect of codeine by some 1-dimethoxyphenyl-3-alkylaminobutanols in guinea pigs.

Newly synthesized 1-(2',5'-dimethoxyphenyl)-1-n-butyl-3-diethylaminobutanol (compd. 4) and its analogs enhanced the antitussive effect of codeine and morphine as tested on the cough induced by mechanical stimulation of the trachea in guinea pigs. This effect was illustrated to be a potentiation on the Gaddum's diagram. The following parameters were affected little or to a small extent: 1. analgesic effect of codeine and morphine in guinea pigs and mice, 2. duration of anesthesia induced by hexobarbital in mice, 3. respiratory depression caused by codeine in guinea pigs, and 4. LD50 of codeine in guinea pigs and mice. Explorations of the mechanism of potentiating action suggested some peripheral mechanism, but the exact one remained to be elucidated.

Amino Alcohols