Selective damage of trigeminal Adelta fibres in Raeder's syndrome following dissection of the ICA detected by a nociceptive blink reflex.
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Biomedical subjects
Publications and source records attributed to V Limmroth.
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BACKGROUND: Complete withdrawal from headache medication is the treatment of choice for medication-overuse headache. Discontinuation of the overused headache medication, however, results in the development of withdrawal headache, often associated with nausea, vomiting, and sleep disturbances. METHOD: In a prospective study of 95 patients, the authors investigated the duration and severity of withdrawal headache after overuse of various headache drugs, including single and combination analgesics, ergots, and triptans. All patients underwent standard inpatient withdrawal therapy for 14 days. RESULTS: The duration of withdrawal headache was shorter in patients overusing triptans (4.1 days) than in patients overusing ergots (6.7 days) or analgesics (9.5 days; p < 0.002). The mean headache intensity on the first day of withdrawal did not differ between the groups (p = 0.821). By day 14, however, it was lower in patients overusing triptans (0.08) than in patients overusing ergots (0.4) or analgesics (0.9; p < 0.005). Rescue medication was requested less by patients undergoing triptan withdrawal (0.25 requests) than by patients undergoing ergot withdrawal (1.25) or analgesic withdrawal (1.85; p < 0.05). Similar to findings in the entire patient population, withdrawal headache was shorter and less severe in migraineurs overusing triptans than in those overusing ergots or analgesics. Because only patients with migraine, but no patient with tension-type headache, overused triptans, withdrawal headache was shorter in the group of patients with migraine alone (6.7 days versus 9.6 days for patients with tension-type headache and 8.5 days for patients with combination headache, p < 0.02). CONCLUSION: The duration and severity of withdrawal clearly depend on the type of overused headache drug only.
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Calcitonin gene related peptide (CGRP) released from the C-fibers projecting from the trigeminal ganglion to the meninges has been suggested to play a crucial role in the pathophysiology of headache, particularly migraine. In humans it has been shown that CGRP is released during migraine-attacks, and this is attenuated by the administration of typical anti-migraine drugs such as dihydroergotamine or sumatriptan. We describe a new rat model which allows the study of CGRP release from the meninges into venous blood following activation of the trigeminal vascular system. The effects of classical and new anti-migraine drugs such as acetylsalicylic acid (ASA), sumatriptan and the new high efficacy 5-HT1B/1D agonist donitriptan (4-[4-[2-(2-aminoethyl)-1H-indol-5-yloxyl]acetyl]piperazinyl-1-yl]benzonitrile) were evaluated in comparison with the established model of neurogenic inflammation in the meninges. Sumatriptan and donitriptan inhibited CGRP release as well as neurogenic inflammation. ASA, however, attenuated neurogenic inflammation, but not CGRP release, confirming the concept of prejunctional inhibition of CGRP release by 5-HT1B/1D receptors. This new model allows the further study of prejunctional pharmacology and mechanisms of neuropeptide release in the trigeminal vascular system, which might be crucial for the further development of potent, more effective anti-migraine drugs.
Migraine is one of the most frequent neurological disorders affecting up to 15% of the general population. Many patients require not only management of individual migraine episodes but also prophylactic treatment. beta-adrenoceptor blockers, flunarizine and valproic acid have been established as first-line agents for the prophylaxis of migraine attacks. Among the beta-adrenoceptor blockers propranolol and metoprolol are best documented and hence deserve preferential use. On the other hand, it appears that other beta-adrenoceptor blockers, perhaps with the exception of those with intrinsic sympathomimetic activity, can be equally effective. Uncertainties regarding the relative merits of various treatment modalities are largely caused by lack of adherence to specific requirements for clinical trials on migraine prophylaxis. Therefore, this article reviews internationally recommended conditions for reliable studies on migraine prophylaxis and appraises individual agents in the light of these criteria.
Patients suffering from migraine, tension-type headache (TTH), or combined headache (CH) are at risk of developing drug-induced headache (DIH) due to regular use of analgesics, ergot alkaloids, and triptans. The aim of our study was to determine (1) the clinical features of DIH, (2) the outcome of withdrawal therapy using high methodological standards, and (3) predictors which could explain the high relapse rate (more than 40%) after a previously successful withdrawal therapy. We retrospectively reviewed 103 patients with migraine or TTH who underwent withdrawal therapy between 1994 and 1998. The long-term follow-up (2-4 years after therapy) was conducted by phone and by specially trained psychologists using a structured interview which enclosed characteristics of headache and medication behavior as well as patients global assessment of success. Complete sets of data were available from 83 patients (38 migraine, 26 TTH, 19 CH). The most frequently abused drugs were caffeine-combined analgesics (24%), followed by caffeine-combined ergotamines (19%), pure ergot alkaloids (17%), and monoanalgesics (17%). 48.5% of the patients suffered an abuse relapse within 4 years and developed the complete features of DIH again. Analgesic and ergot alkaloid combinations with caffeine lead significantly more often to a relapse. A long-term successful therapy is connected with a significant reduction of the frequency of headache attacks. Under relapse conditions, the patients reached their former headache frequency level. The data show a higher relapse rate than previously assumed and that certain substance groups bear a higher relapse risk.
Analgesics such as acetaminophen (paracetamol), acetylsalicyclic acid and non-steroidal anti-inflammatory drugs are effective in the treatment of migraine attacks. Comparative studies indicate that their efficacy is similar or slightly inferior to sumattriptan, a specific antimigraine drug. Few data on the efficacy of opioid drugs in the treatment of migraine are available. They seem to be effective but carry the risk of dependency and may cause drug-induced headache.
Migraine is a paroxysmal disorder with attacks of headache, nausea, vomiting, photo- and phonophobia and malaise. This review summarises new treatment options both for the therapy of the acute attack as well as for migraine prophylaxis. Analgesics like aspirin or non-steroidal anti-inflammatory drugs (NSAIDs) are effective in treating migraine attacks. Few controlled trials were performed for the use of ergotamine or dihydroergotamine. These trials indicate inferior efficacy compared with serotonin (5-HT(1B/D)) agonists (triptans). The triptans (almotriptan, eletriptan, frovatriptan, naratriptan, rizatriptan, sumatriptan and zolmitriptan), are highly effective. They improve headache as well as nausea, photo- and phonophobia. The different triptans show only minor differences in efficacy, headache recurrence and adverse effects. The knowledge of their different pharmacological profile allows a more specific treatment of the individual migraine characteristics. Migraine prophylaxis is recommended, when more than three attacks occur per month, if attacks do not respond to acute treatment or if side effects of acute treatment are severe. Substances with proven efficacy include the beta-blockers metoprolol and propranolol, the calcium channel blocker flunarizine, several 5-HT antagonists and amitriptyline. Recently anti-epileptic drugs (valproic acid, gabapentin, topiramate) were evaluated for the prophylaxis of migraine. The use of botulinum toxin is under investigation.
Medication overuse headache (MOH, formerly known as drug-induced headache) is a well known disorder following the frequent use of analgesics or any other antiheadache drug including serotonin 5-HT(1B/D) agonists (triptans). Recent studies suggest clinical features of MOH depend on the substance class that has been overused. The delay between the frequent intake of any antiheadache drug and daily headache is shortest for triptans (mean 1.7 years), longer for ergot alkaloids (mean 2.7 years) and longest for analgesics (mean 4.9 years). Treatment includes withdrawal followed by structured acute therapy and initiation of specific prophylactic treatment for the underlying primary headache. The relapse rate within 6 months after successful withdrawal is about 30% and increases steadily up to 50% after 5 years.
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The non-indole 5-HT receptor agonist, alniditan (R 91274), was tested and compared to sumatriptan in an in vivo model of neurogenic inflammation within the meninges of rats and in rat basilar artery in a Mulvany-Halpern chamber in vitro. Alniditan dose dependently attenuated the neurogenic inflammation and was more potent than sumatriptan. The alniditan response was blocked by the 5-HT(1B/D) receptor antagonist, GR 127935 (2'-methyl-4'-(5-methyl-[1,2, 4]oxadiazol-3-yl)-biphenyl-4-carboxylic acid [4-methoxy-3-(4-methyl-piperazin-1-yl)-phenyl]-amide), but not by ketanserin, indicating that the effect is mediated through 5-HT(1B/D) receptors. Alniditan did not attenuate substance P-induced inflammation, suggesting that the mediating receptors are located prejunctionally. In vitro alniditan exhibited less vasoconstrictive effects on the rat basilar artery than did sumatriptan, although at a very high concentration (1 mM), alniditan caused intensive constriction, most likely through a mechanism independent from 5-HT receptor activation.
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Migraine is a paroxysmal disorder characterized by attacks of headache, nausea, vomiting, photophobia, phonophobia, and malaise. This review summarizes new treatment options for therapy of the acute attack. Mild or moderate migraine attacks are treated with antiemetics followed by analgesics such as aspirin, paracetamol, nonsteroidal anti-inflammatory drugs, or antiemetics combined with ergotamine or dihydroergotamine. Sumatriptan, a specific serotonin (5-HT)1B/D agonist is used when attacks do not respond to ergotamine, or when intolerable side effects occur. The new migraine drugs zolmitriptan, naratriptan, rizatriptan, and eletriptan differ slightly in their pharmacological profiles, which translates into minor differences in efficacy, headache recurrence, and side effects. New drugs in migraine prophylaxis include cyclandelate, valproic acid and magnesium.
Acetylsalicylic acid (ASA) is used to treat a broad range of symptoms and disorders. Since its discovery in 1897, it has been used to treat fever and rheumatic pain, to inhibit the formation of thrombocytes, to prevent myocardial ischemia and strokes, and as preventive medication against neoplasms. ASA is best known, however, as a headache medication. For this function alone, ASA underwent an evolution: from powder to tablet to effervescent and chewable tablets. In addition to these oral formulations, an injectable form was developed in the 1970s for intravenous and intramuscular application. Furthermore, coated (slow-releasing) tablets are now used in the prophylactic treatment of migraine. The various forms of ASA used to treat headache are discussed and the controlled studies conducted to evaluate ASA's efficacy in headache treatment are summarized.
Migraine is a paroxysmal disorder characterized by attacks of headache, nausea, vomiting, photophobia and phonophobia, and malaise. This review summarizes new treatment options for the therapy of acute attacks. Sumatriptan was the first specific serotonin-1B/D agonist for the treatment of acute migraine attacks. Apart from the oral and subcutaneous formulation, it is also available as nasal spray and suppository. The other new migraine drugs zolmitriptan, naratriptan, rizatriptan and eletriptan differ in their pharmacological profiles, which translates into minor differences in efficacy, headache recurrence and side-effects. Importantly, in clinical practice individual patients may show a preference for one treatment over another. New drugs in migraine treatment include substance-P antagonists, nitric oxide synthetase inhibitors and calcitonin gene-related peptide antagonists.
Vasoconstrictive agents have been widely used in the treatment of migraine. These types of drugs have various side effects and are not suitable for many patients. Due to nausea or vomiting, nonoral treatment is often required, but only a few nonvasoconstrictive drugs exist in a parenteral form and are suitable for the treatment of acute migraine in the emergency setting. In a randomized, double-blind, crossover trial we evaluated the efficacy of 1,000 mg lysine-acetylsalicylic acid i.v. (LAS) compared to 0.5 mg ergotamine s.c. in 56 patients (112 attacks) with acute migraine. To gain further insight into the possible role of vasoconstriction, blood flow velocities (BFV) were measured in intra- and extracranial arteries using duplex sonography and transcranial Doppler sonography. Both agents were equally potent in relieving headache. Intravenous LAS resulted in a significantly faster relief and had fewer side effects. LAS had no effect on BFV. Ergotamine increased BFV in the middle cerebral artery only. No correlation was found between changes in BFV and the relief of headache. This is the first trial to compare the intravenous formulation of LAS in the treatment of migraine with another antimigraine medication and suggests that it is an effective and safe drug for the parenteral treatment of acute migraine attacks.