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Biomedical subjects

A Serrie

Publications and source records attributed to A Serrie.

At least 19 recordsLinked to original sources

[Pain management: a priority for public health].

In France, the actual anti-pain triennial plan (1998-2000) combines: the listening and the follow-up of the patient, the reinforcement of the fight against pain in health structures and care networks, the permanent information of medical and paramedical staffs, the information of the public.

France↗

Acute decreases in cerebrospinal fluid glutathione levels after intracerebroventricular morphine for cancer pain.

UNLABELLED: Intracerebroventricular (ICV) morphine administration is effective for the management of refractory cancer pain. Recent preclinical observations of acute depletion of the major endogenous intracellular antioxidant glutathione (GSH) in brain and peripheral organs after ICV morphine in rodents led us to apply microchemical methods to profile the neurochemical effects of ICV morphine in three patients treated for intractable cancer pain. Assessment of morphine, morphine-6-glucuronide, and a panel of endogenous compounds and metabolites in ventricular and cisternal cerebrospinal fluid (CSF) demonstrated transient, postdose increases in morphine and morphine-6-glucuronide in ventricular and cistemal CSF, accompanied by acute decreases in CSF GSH levels. Significant changes were also observed in the CSF levels of 4-hydroxybenzoic acid, homovanillic acid, 5-hydroxyphenyllactic acid, and uric acid. These pilot clinical observations of acute central GSH depletion after ICV morphine suggest a novel mechanism for neuropsychiatric toxicity or preclinical findings, such as hyperalgesia or increased motoric activity observed in nonhuman species after central morphine administration. Because ICV morphine is a mainstay of treatment for refractory cancer pain, elucidation of a mechanism's (or mechanisms') mediating a potential pro-oxidant state in the central nervous system induced by ICV morphine is important. IMPLICATIONS: We observed acute decreases in glutathione levels in cerebrospinal fluid sampled from patients after intracerebroventricular doses of morphine for intractable cancer pain. Such doses may, by depleting the antioxidant glutathione, render the central nervous system vulnerable to damage from oxidative stress.

Chromatography, High Pressure Liquid↗

[Benign chronic pain].

Recent data indicate that 25 to 30% of the population in industrialized countries suffers from benign chronic pain. Among these patients, 50 to 75% are professionally incapable for varied lengths of time, from a few days to some weeks or months, or even definitively. The aetiology and clinical presentation of chronic benign pain are enormously varied because this definition includes such different pathologies as headache, pain of rheumatologic, postsurgical, organic, and post-zoster origin, lombalgia, radiculalgia, post-amputation pain, neuropathologic pain, causalgia, algoneurodystrophic pain, psychosomatic and idiopathic pain. Since these syndromes and causes of pain could not be discussed individually, they have been grouped according to their neurophysiology and pathophysiology.

Central Nervous System Diseases↗

Enhanced potency of intravenous, but not intrathecal, morphine and morphine-6-glucuronide after burn trauma.

We examined the analgesic effect of morphine (M) and its metabolite morphine-6-glucuronide (M6G) in a rat model of acute thermal trauma. M or M6G were given by intrathecal (IT) or intravenous (i.v.) routes after brief burn or sham burn delivered during inhalational anesthesia. In the sham group, M6G was significantly less potent than M when given i.v., yet tended to be more potent than M when given IT. For both drugs, thermal injury increased i.v. potency, yet decreased (for M) or displayed a trend to decrease (for M6G) It potency. The increased potency seen with i.v. but not IT opioid administration may reflect pharmacokinetic (e.g., diminished clearance) and/or pharmacodynamic responses (e.g., activation of peripheral opioid receptors) after thermal injury.

Analgesia↗

Cerebral vasodilation after the thermocoagulation of the trigeminal ganglion in humans.

The resulting changes in the regional cerebral blood flow of 18 patients suffering from idiopathic trigeminal neuralgia and treated by selective thermocoagulation of the trigeminal ganglion were measured by xenon-133 emission tomography. One hour after thermal stimulation, there was an asymmetric increase (P < 0.05) in cerebral blood flow, with a 14.7% mean increase in the ipsilateral cerebral hemisphere (P < 0.001) and a 12.7% mean increase in the contralateral side (P < 0.01). The increase in regional cerebral blood flow was not uniform but was most marked in the ipsilateral middle cerebral artery territory (P < 0.001). There was a slight decrease in cerebellar blood flow, but the reduction in the ipsilateral cerebellar lobe was less than that in the contralateral lobe (P < 0.01). The topography of the most significant changes coincided with that of the innervation of the cerebral vessels by the trigeminal nerve. Several mechanisms are involved in the increase in regional cerebral blood flow, including overall nonspecific activation of the central nervous system and local mechanisms associated with the trigeminal-vascular system.

Adult↗

Levels of morphine and metabolites in CSF during respiratory depression after intraventricular morphine injection.

We report a case of respiratory depression after intracerebroventricular morphine administration of a dose inadvertently 10 times greater than the typical daily dose. At the time of the respiratory dysfunction, the concentrations of morphine and its metabolites in cerebrospinal fluid (CSF) and plasma samples were determined. On comparison of these results with previous clinical studies in which there was no respiratory depression, no relationship was found between the occurrence of respiratory depression and the concentration of morphine or its metabolites in the CSF. The occurrence and characteristics of respiratory depression may be related to the concentrations of morphine and its metabolites in bulbar tissue.

Adenocarcinoma↗

Morphine pharmacokinetics and pain assessment after intracerebroventricular administration in patients with terminal cancer.

Morphine pharmacokinetics and pain relief were evaluated after intracerebroventricular administration of morphine (0.4 +/- 0.11 mg) in seven patients with cancer suffering from intractable pain. Ventricular cerebrospinal fluid (CSF), lumbar CSF, and plasma morphine concentrations were analyzed by a specific morphine radioimmunoassay. A two-compartment model was sufficient to describe the kinetics of morphine in ventricular CSF. Morphine diffuses to the lumbar level, and the mean maximum concentration was 192 +/- 105 ng/ml at 4.5 +/- 1.3 hours. Ventricular and lumbar CSF morphine kinetics showed a similar decline during the elimination phase, with terminal half-lives of 3.8 +/- 0.6 hours and 4.2 +/- 1.6 hours, respectively. Pain relief was evaluated by a visual analog scale: the test showed a rapid onset of analgesia (less than 10 minutes). Analgesic effectiveness reached a maximum between 6 and 10 hours. The relationship between pharmacologic effect and morphine concentrations in ventricular CSF resulted in an anticlockwise hysteresis curve. The presence of morphine in lumbar CSF suggested an additive spinal action of morphine, which probably plays a role in the duration of analgesia.

Adult↗

Presence of morphine metabolites in human cerebrospinal fluid after intracerebroventricular administration of morphine.

After intracerebroventricular administration of morphine in four cancer patients, cerebrospinal fluid (CSF) was analyzed by two morphine radioimmunoassays (RIA), liquid chromatography (LC) and radioreceptor assay (RRA) to evaluate the presence of morphine metabolites. Immunoreactive morphine-like substances were detected by differential RIA's. The maximum concentrations of these compounds were achieved 3 hours after drug administration. These concentrations, according to the specificity of the antiserum, represent a mixture of several metabolites in which only morphine 3-glucuronide(M 3-G) and morphine 6-glucuronide (M 6-G) were identified by LC, and M 6-G by LC-RRA. These results confirm that brain is able to metabolize morphine to inactive (M 3-G) or more potent (M 6-G) derivatives.

Chromatography, Liquid↗

[Treatment of intractable pain in ORL cancer].

Numerous effective treatments are available to relieve the intractable pain of terminal E.N.T. cancers when aetiological therapies are no longer of any use. These treatments must be prescribed as a progressive therapeutic scale ranging from analgesics, and notably morphine which remains the basic drug, to the classical or stereotactic surgical operations. To these must now be added other routes of administration of morphine (e.g. intraventricularly) which in some cases give unexpected results.

Humans↗

[Effects of delayed-action tetracosactide on chronic pain].

Beta 1-24 corticotrophin was the object of an open trial in the "acute" treatment of chronic pain in 22 patients. The analgesic effect of the drug was assessed before and after two weeks of treatment by means of 3 subjective tests: visual analogue scale, numeric scale and Mac Gill pain questionnaire. The results were statistically significant (P less than 0.01). They confirmed that slow-release tetracosactide exerts a beneficial effect on the sensory-discriminative and affective-emotional components of pain. The drug may be prescribed for short periods (1 to 2 weeks) to patients with chronic pain refractory to the usual treatments. Its analgesic effect is immediate and enables a conventional treatment to be instituted.

Chronic Disease↗