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result(s) for
"Morphine Derivatives - administration "
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Serum concentrations of opioids when comparing two switching strategies to methadone for cancer pain
by
Kaasa, Stein
,
Rosland, Jan Henrik
,
Moksnes, Kristin
in
Analgesics, Opioid - administration & dosage
,
Analgesics, Opioid - adverse effects
,
Analgesics, Opioid - blood
2012
Purpose
Our aim was to compare pharmacological aspects of two switching strategies from morphine/oxycodone to methadone; the stop and go (SAG) strategy in which methadone is started directly after the initial opioid has been stopped, and the 3-days switch (3DS), in which morphine/oxycodone is gradually changed to methadone by cross-tapering over 3 days.
Methods
Forty-two cancer patients with pain and/or opioid side effects were assessed in this randomised trial. Trough serum concentrations of methadone, morphine, morphine-6-glucuronide (M6G), and oxycodone were measured on days 1, 2, 3, 4, 7, and 14. Primary outcome was number of patients with methadone concentrations in apparent C
SS
on day 4. Secondary outcomes were exposure to opioids during the first 3 days, interindividual variation of opioid concentrations, and correlation between methadone concentrations and pain intensity (PI) day 3.
Results
Thirty-five patients received methadone (16 in the SAG group, 19 in the 3DS group). The median preswitch morphine equivalent doses were 620 (range 350–2000) mg/day in the SAG group and 800 (range 90–3600) mg/day in the 3DS group (
p
= 0.43);42% reached C
SS
for methadone in the SAG group on day 4 compared with 22% in the 3DS group (
p
= 0.42). The SAG group was significantly less exposed to morphine/M6G/oxycodone and significantly more exposed to methadone in the first 3 days. Methadone showed a low correlation with PI. More patients dropped out after intervention in the SAG group than in the 3DS group (38% vs. 5%;
p
= 0.032). One SAG patient suffered from respiratory depression on day 5.
Conclusion
The SAG group was initially more exposed to methadone and less to the replaced opioids but without observed clinical benefit and with a higher dropout rate. Patients switched to methadone should be followed closely for the first 5 days, regardless of switching strategy.
Journal Article
Pharmacokinetics of morphine-6-glucuronide following oral administration in healthy volunteers
by
Jensen, Niels-Henrik
,
Skram, Ulrik
,
Kristensen, Kim
in
Absorption
,
Administration, Oral
,
Adolescent
2007
After oral administration, morphine-6-glucuronide (M6G) displays an atypical absorption profile with two peak plasma concentrations. A proposed explanation is that M6G is hydrolysed to morphine in the colon, which is then absorbed and subsequently undergoes metabolism in the liver to morphine-3-glucuronide (M3G) and M6G. The aims of this study were to confirm and elucidate the biphasic absorption profile as well as clarify the conversion of M6G to morphine after a single oral administration of M6G in healthy volunteers.
The study was conducted accordingly to a nonblinded, randomised, balanced three-way crossover design in eight healthy male subjects. The subjects received 200 mg oral M6G, 50 mg oral M6G and 30 mg oral morphine. Blood samples were collected until 72 h after M6G administration and until 9 h after morphine administration. Paracetamol and sulfasalazine were coadministered with M6G as markers for the gut contents reaching the duodenum and colon, respectively.
The plasma concentration peaks of M6G were seen at 4.0 (2.0-6.0) and 18 (12.0-24.0) h after 200 mg M6G and at 3.5 (2.0-6.0) and 21.3 (10.0-23.3) h after 50 mg M6G, which was in agreement with previously published results. The K(M6G_abs)/K(M6G_M6G) ratio was found to be 10.
The pharmacokinetic profile of M6G after oral administration was confirmed and with the presence of M3G and morphine in plasma after oral administration of M6G, proof seems to be found of the constant and prolonged absorption of M6G. The K(M6G_abs)/K(M6G_M6G) ratio of 10 indicates that the second absorption peak of M6G consists of approximately 10 times more absorbed M6G than reglucuronidated M6G. However, further studies are required to determine the precise kinetics of the second absorption peak.
Journal Article
A Conjugate Vaccine Attenuates Morphine- and Heroin-Induced Behavior in Rats
by
Sun, Hong-Qiang
,
Chen, Na
,
Deng, Jia-Hui
in
Analgesics, Opioid - administration & dosage
,
Analgesics, Opioid - adverse effects
,
Animals
2015
Background:Currently approved medications for opioid addiction have shown clinical efficacy, but undesired side effects, dependence induced by the medications themselves, and low treatment compliance necessitate the need for novel therapies.Methods:A novel morphine-keyhole limpet hemocyanin conjugate vaccine was synthesized with 6-glutarylmorphine as the hapten and a lengthened linker of 6 carbon atoms. The titer and specificity of the triggered antibody were assessed by enzyme-linked immunosorbent assay. The effects of the vaccine on the morphine-induced elevation of dopamine levels in the nucleus accumbens were determined by high-performance liquid chromatography. The effects of the vaccine on morphine-induced locomotor sensitization and heroin-primed reinstatement of heroin self-administration were also assessed.Results:After subcutaneous administration in rats, the vaccine triggered a high antibody titer, with comparable specificity for morphine, 6-acetylmorphine, and heroin, but no interaction with dissimilar therapeutic opioid compounds, including buprenorphine, naloxone, and nalorphine, was observed. The vaccine significantly prevented the elevation of dopamine levels in the nucleus accumbens induced by a single morphine challenge. Moreover, the vaccine prevented the expression of morphine-induced locomotor sensitization and heroin-primed reinstatement of heroin seeking, suggesting its potential for preventing relapse.Conclusion:These results demonstrate that active immunization with the present vaccine induces a robust morphine/heroin-specific antibody response in rats and attenuates the behavioral effects of morphine and heroin.
Journal Article
Role of 6-monoacetylmorphine in the acute release of striatal dopamine induced by intravenous heroin
by
Øiestad, E. L.
,
Gottås, A.
,
Mørland, J.
in
Analgesics, Opioid - administration & dosage
,
Animals
,
Area Under Curve
2014
After injection, heroin is rapidly metabolized to 6-monoacetylmorphine (6-MAM) and further to morphine. As morphine has been shown to increase striatal dopamine, whereas 6-MAM has not been studied in this respect, we gave i.v. injections of 3 μmol 6-MAM, morphine or heroin to rats. Opioids were measured in blood, and dopamine and opioids in microdialysate from brain striatal extracellular fluid (ECF), by UPLC-MS/MS. After 6-MAM injection, 6-MAM ECF concentrations increased rapidly, and reached C
max of 4.4 μ
m after 8 min. After heroin injection, 6-MAM increased rapidly in blood and reached C
max of 6.4 μ
m in ECF after 8 min, while ECF C
max for heroin was 1.2 μ
m after 2 min. T
max for morphine in ECF was 29 and 24 min following 6-MAM and heroin administration, respectively, with corresponding C
max levels of 1 and 2 μ
m. Dopamine levels peaked after 8 and 14 min following 6-MAM and heroin administration, respectively. The dopamine responses were equal, indicating no dopamine release by heroin per se. Furthermore, 6-MAM, and not morphine, appeared to mediate the early dopamine response, whereas morphine administration, giving rise to morphine ECF concentrations similar to those observed shortly after 6-MAM injection, did not increase ECF dopamine. 6-MAM appeared accordingly to be the substance responsible for the early increase in dopamine observed after heroin injection. As 6-MAM was formed rapidly from heroin in blood, and was the major substance reaching the brain after heroin administration, this also indicates that factors influencing blood 6-MAM concentrations might change the behavioural effects of heroin.
Journal Article
Morphine Induces Hyperalgesia without Involvement of µ-Opioid Receptor or Morphine-3-glucuronide
by
Swartjes, Maarten
,
Waxman, Amanda R.
,
den Hartigh, Jan
in
Animals
,
Biomedical and Life Sciences
,
Biomedicine
2012
Opioid-induced hyperalgesia (OIH) is a paradoxical increase in pain perception that may manifest during opioid treatment. For morphine, the metabolite morphine-3-glucuronide (M3G) is commonly believed to underlie this phenomenon. Here, in three separate studies, we empirically assess the role of M3G in morphine-induced hyperalgesia. In the first study, CD-1 mice injected with morphine (15 mg/kg subcutaneously) after pretreatment with the opioid receptor antagonist naltrexone (NTX) (15 mg/kg) showed tail withdrawal latency reductions indicative of hyperalgesia (2.5 ± 0.1 s at
t
= 30 min,
P
< 0.001 versus baseline). In these mice, the morphine/M3G concentration ratios versus effect showed a negative correlation (
r
p
= −0.65,
P
< 0.001), indicating that higher morphine relative to M3G concentrations are associated with increased OIH. In the second study, similar hyperalgesic responses were observed in mice lacking the multidrug resistance protein 3 (MRP3) transporter protein (
Mrp3
−/−
mice) in the liver and their wild-type controls (FVB mice; latency reductions: 3.1 ± 0.2 s at
t
= 30 min,
P
< 0.001 versus within-strain baseline). In the final study, the pharmacokinetics of morphine and M3G were measured in
Mrp3
−/−
and FVB mice.
Mrp3
−/−
mice displayed a significantly reduced capacity to export M3G into the systemic circulation, with plasma M3G concentrations just 7% of those observed in FVB controls. The data confirm previous literature that morphine causes hyperalgesia in the absence of opioid receptor activation but also indicate that this hyperalgesia may occur without a significant contribution of hepatic M3G. The relevance of these data to humans has yet to be demonstrated.
Journal Article
Perioperative Analgesic Efficacy of Yamamoto New Scalp Acupuncture for Canine Mastectomy Combined with Ovariohysterectomy: a Randomized, Controlled Clinical Trial
by
Peruchi, Luíza Guimarães
,
de Carvalho Bacarin, Carolina
,
Cassu, Renata Navarro
in
Acupuncture
,
Analgesics
,
Anesthesia
2022
BackgroundYamamoto New Scalp Acupuncture (YNSA) is a therapy based on the stimulation of points on the scalp and applied to treat different states of pain.ObjectivesTo investigate the analgesic efficacy of YNSA for dogs undergoing radical unilateral mastectomy with ovariohysterectomy.MethodsTwenty-four dogs were randomly distributed into two treatments (n = 12, per group): bilateral stimulation of basic B, D, and E points (YNSA group) and no application of acupuncture (control group). All dogs were sedated with morphine; anesthesia was induced with propofol and maintained with isoflurane. Fentanyl was intraoperatively administered to control cardiovascular responses to surgical stimulation. Postoperative pain was assessed using an interactive visual analog scale (IVAS) and the short-form of the Glasgow Composite Pain Scale (CMPS-SF). Morphine was administered as rescue analgesia. Data were analyzed using t-tests, Fisher’s exact test, Mann–Whitney U test, and Friedman test (p < 0.05).ResultsIntraoperatively, the number of dogs requiring supplemental analgesic and the number of doses of fentanyl were lower in the YNSA group than in the control group (p = 0.027-0.034). The IVAS pain scores recorded from 0.5 h to 1 h post-extubation in the YNSA group were lower than those in the control group (p = 0.021-0.023). Postoperative rescue analgesia and CMPS-SF pain scores did not differ between the groups.ConclusionYNSA decreases intraoperative fentanyl requirements and provides minimal postoperative analgesic benefits to dogs undergoing unilateral mastectomy with ovariohysterectomy.
Journal Article
Black Tar Heroin Skin Popping as a Cause of Wound Botulism
2017
Background
Botulism is a rare potentially fatal and treatable disorder caused by a bacteria-produced toxin that affects the presynaptic synaptic membrane resulting in a characteristic neuromuscular dysfunction. It is caused by either the ingestion of the toxin or the bacteria, inhalation, or wound infection. We present our observations with a descriptive case series of wound botulism secondary to black tar heroin (BTH) injection.
Methods
We report a retrospective single-center case series of 15 consecutive cases of wound botulism presenting to University Medical Center of El Paso. Medical records where reviewed to obtain demographic information, clinical presentation, treatment, and outcome.
Results
We identified fifteen patients with mean age of 47 years: twelve men, and three women. All had administered BTH through skin popping and had abscesses in the administration areas. By history, the most common symptoms were dysphagia (66%), proximal muscle weakness of upper and lower extremity (60%), neck flexor muscle weakness (33%), ophthalmoplegia (53%), bilateral ptosis (46%), dysarthria (53%), double vision (40%), blurred vision (33%), and dry mouth (20%). During the examination, the most common features noted were: proximal muscle weakness of upper and lower extremities (73%), ophthalmoplegia (53%), ptosis (46%). In patients with documented wound botulism, the pupils were reactive in 46%. All patients required mechanical ventilation and were treated with the trivalent antitoxin. Eleven patients (73.3%) were discharged home, two were transferred to a skill nursing facility, and two were transferred to long-term acute care facility.
Conclusion
In our patients, BTH injection, involving the action of injecting under the skin acetylated morphine derivatives (mostly 6-monoacetylmorphine and 3-monoacetylmorphine), was associated with the development of botulism. The availability of BTH at the US–Mexican border is not surprising since it is frequently produced in Latin America. Its association with the development of botulism should be recognized early to allow a prompt diagnosis and treatment with the antitoxin. A clinical feature worth noting is the presence of normal pupillary light reflex in nearly half of patients. Therefore, the presence of a normal pupillary response does not exclude the presence of wound botulism.
Journal Article
14-methoxymetopon, a highly potent μ opioid agonist, biphasically affects ethanol intake in Sardinian alcohol-preferring rats
by
Cottone, Pietro
,
Schmidhammer, Helmut
,
Sabino, Valentina
in
Agonists
,
Alcohol
,
Alcohol Drinking - physiopathology
2007
Increased opioidergic activity is thought to increase the propensity to consume ethanol. However, the dose monotonicity and receptor subtype for this effect remain uncertain. 14-methoxymetopon is a centrally acting, selective micro opioid receptor agonist with greater systemic antinociceptive potency than morphine and a putatively improved therapeutic index.
To determine whether 14-methoxymetopon influenced voluntary ethanol intake in Sardinian alcohol-preferring (sP) rats.
Male sP rats with continuous 2-bottle choice access to ethanol (10% v/v) or water were subjects. The effects of systemic 14-methoxymetopon administration (2, 5, 12.25, 30 micro/kg, s.c.) on 4-h ethanol intake were determined. The ability of naltrexone (50 micro/kg, s.c.), an opioid antagonist, to block actions of 14-methoxymetopon (12.25, 30 micro/kg, s.c.) was examined as were the effects of 14-methoxymetopon (12.25 micro/kg, s.c.) on self-administered blood alcohol levels (BALs) and clearance of a passive ethanol bolus (1 g/kg). Finally, the effects of central 14-methoxymetopon administration (0.0003-100 ng, i.c.v.) on 4-h ethanol intake were evaluated.
Systemic 14-methoxymetopon very potently and dose-dependently suppressed ethanol and food intake for 30 min, followed by a greater, longer-lasting, and behaviorally specific increase in ethanol intake. The increased ethanol intake led to threefold higher BALs, was naltrexone-reversible, and not due to altered ethanol clearance. Intracerebroventricular 14-methoxymetopon administration rapidly altered ethanol intake per an inverted U-shaped dose-response function, increasing it at a 10 pg dose, while suppressing it at a 10,000-fold higher dose.
The novel mu analgesic increases ethanol intake, a potential therapeutic liability, and results suggest a non-monotonic influence of brain mu opioid receptor stimulation on ethanol intake.
Journal Article
Different distribution of morphine and morphine‐6β‐glucuronide after intracerebroventricular injection in rats
by
Kimura, Ryohei
,
Okura, Takashi
,
Nakanishi, Misato
in
Animals
,
Biological and medical sciences
,
Brain - drug effects
2003
We investigated the distribution of morphine and morphine‐6β‐glucuronide (M6G) in the brain and spinal cord after intracerebroventricular (i.c.v.) injection of each drug in rats. The cerebrospinal fluid (CSF) concentration of M6G was 5–37 times greater than that of morphine 10, 60 and 120 min after the i.c.v. injection. The apparent elimination clearance of M6G from the CSF was 10 times lower than that of morphine. The intrathecal CSF concentration of M6G measured by the microdialysis method was 29–79 times greater than that of morphine, and M6G was rapidly distributed into the intrathecal space after the i.c.v. injection. M6G was detected in the cerebrum, brainstem, cerebellum and spinal cord at concentrations 2–21 times higher than morphine after the i.c.v. injection of each drug. The distribution volume of M6G in rat brain slices was three times lower than that of morphine, and close to the extracellular fluid space in the brain regions corresponding to the vicinity of the opioid receptors. These brain distribution characteristics of M6G, namely, low clearance from the central nervous system, localization in the extracellular fluid and rapid distribution into the intrathecal space, may contribute to the potent analgesic effect of M6G after i.c.v. injection. British Journal of Pharmacology (2003) 140, 211–217. doi:10.1038/sj.bjp.0705418
Journal Article