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The role of cerebrospinal fluid hypocretin measurement in the diagnosis of narcolepsy and other hypersomnias.

CONTEXT: Narcolepsy, a neurological disorder affecting 1 in 2000 individuals, is associated with HLA-DQB1*0602 and low cerebrospinal fluid (CSF) hypocretin (orexin) levels. OBJECTIVES: To delineate the spectrum of the hypocretin deficiency syndrome and to establish CSF hypocretin-1 measurements as a diagnostic tool for narcolepsy. DESIGN: Diagnosis, HLA-DQ, clinical data, the multiple sleep latency test (MSLT), and CSF hypocretin-1 were studied in a case series of patients with sleep disorders from 1999 to 2002. Signal detection analysis was used to determine the CSF hypocretin-1 levels best predictive for International Classification of Sleep Disorders (ICSD)-defined narcolepsy (blinded criterion standard). Clinical and demographic features were compared in narcoleptic subjects with and without low CSF hypocretin-1 levels. SETTING: Sleep disorder and neurology clinics in the United States and Europe, with biological testing performed at Stanford University, Stanford, Calif. PARTICIPANTS: There were 274 patients with narcolepsy; hypersomnia; obstructive sleep apnea; restless legs syndrome; insomnia; and atypical hypersomnia cases such as familial cases, narcolepsy without cataplexy or without HLA-DQB1*0602, recurrent hypersomnias, and symptomatic cases (eg, Parkinson disease, depression, Prader-Willi syndrome, Niemann-Pick disease type C). The subject group also included 296 controls (healthy and with neurological disorders). INTERVENTION: Venopuncture for HLA typing, lumbar puncture for CSF analysis, primary diagnosis using the International Classification of Sleep Disorders, Stanford Sleep Inventory for evaluation of narcolepsy, and sleep recording studies. MAIN OUTCOME MEASURES: Diagnostic threshold for CSF hypocretin-1, HLA-DQB1*0602 positivity, and clinical and polysomnographic features. RESULTS: HLA-DQB1*0602 frequency was increased in narcolepsy with typical cataplexy (93% vs 17% in controls), narcolepsy without cataplexy (56%), and in essential hypersomnia (52%). Hypocretin-1 levels below 110 pg/mL were diagnostic for narcolepsy. Values above 200 pg/mL were considered normal. Most subjects with low levels were HLA-DQB1*0602-positive narcolepsy-cataplexy patients. These patients did not always have abnormal MSLT. Rare subjects without cataplexy, DQB1*0602, and/or with secondary narcolepsy had low levels. Ten subjects with hypersomnia had intermediate levels, 7 with narcolepsy (often HLA negative, of secondary nature, and/or with atypical cataplexy or no cataplexy), and 1 with periodic hypersomnia. Healthy controls and subjects with other sleep disorders all had normal levels. Neurological subjects had generally normal levels (n = 194). Intermediate (n = 30) and low (n = 3) levels were observed in various acute neuropathologic conditions. CONCLUSIONS: Narcolepsy-cataplexy with hypocretin deficiency is a genuine disease entity. Measuring CSF hypocretin-1 is a definitive diagnostic test, provided that it is interpreted within the clinical context. It may be most useful in cases with cataplexy and when the MSLT is difficult to interpret (ie, in subjects already treated with psychoactive drugs or with other concurrent sleep disorders).

Adult↗

Severity of narcolepsy among French of different ethnic origins (south of France and Martinique).

STUDY OBJECTIVES: The aim of the study was to describe the clinical and polygraphical characteristics of narcoleptics, with and without cataplexy and to assess HLA predisposition across two different ethnic populations. DESIGN AND SETTING: Patients were 126 men and 58 women referred to the Montpellier Sleep Disorders Center (Mtp) and 12 men and 8 women referred to the Fort-de-France Sleep Disorders Center (FdF) (Martinique, a French West Indy island) with symptoms of narcolepsy. PARTICIPANTS: Narcoleptics were included if they had both excessive daytime sleepiness and clear-cut cataplexy (for the group with cataplexy), a mean sleep latency of less than 8 minutes and at least two sleep onset REM periods. INTERVENTIONS: N/A. MEASUREMENTS AND RESULTS: Narcolepsy without clear-cut cataplexy was rare (12/172) in the Mtp population whereas it was as frequent as full-blown narcolepsy (10/10) in the FdF population. Comparison between narcoleptics with cataplexy from the Mtp and FdF populations revealed a younger age of onset, a trend towards more severe sleepiness and lower frequency of cataplexy in Martinicans. Comparison between narcoleptics without cataplexy from the Mtp and FdF population revealed a higher frequency of hypnagogic hallucinations and sleep paralysis and a trend towards more severe sleepiness in Martinicans. 4.2% of the Mtp and 15% of the FdF patients were negative for HLA DR2. However all of them were positive for HLA DQ1. Moreover, a tight association with HLA DRB1*1503 was observed in Martinicans in contrast with DRB1*1501 in the Mtp population. Association with HLA DQB1*0602 was observed in 99.4% of narcoleptics with cataplexy and in 89.5% of those without cataplexy. CONCLUSIONS: Narcolepsy is a heterogeneous clinical syndrome, the more so as ethnic origins are considered. A modulating effect of HLA and non-HLA genes on symptoms disease may explain these differences.

Adult↗

Dopamine D2 mechanisms in canine narcolepsy.

Narcolepsy is a sleep disorder characterized by abnormal manifestations of rapid-eye-movement (REM) sleep and excessive daytime sleepiness. Using a canine model of the disease, we found that central D2 antagonists suppressed cataplexy, a form of REM-sleep atonia occurring in narcolepsy, whereas this symptom was aggravated by D2 agonists. The effect on cataplexy was stereospecific for the S(-) enantiomer of sulpiride (a D2 antagonist) and the R(+) enantiomer of 3-PPP (a D2 agonist). There was also a significant correlation between the in vivo pharmacological potency and in vitro drug affinity for D2 receptors (but not for D1 and alpha 2 receptors) among the seven central D2 antagonists tested. Selective D1 compounds were also tested; however, the results were inconsistent because both antagonists and agonists generally suppressed cataplexy. Our current results demonstrate that central D2-type receptors are critically involved in the control of cataplexy and REM sleep. Furthermore, the finding that small doses of D2 antagonists suppressed cataplexy and induced behavioral excitation, while small doses of D2 agonists aggravated cataplexy and induced sedation, suggests that this effect is mediated presynaptically. However, considering the fact that selective dopamine reuptake inhibitors did not modify cataplexy and that our previous pharmacological results demonstrated a preferential involvement of the noradrenergic system in the control of cataplexy, we believe that the effect of D2 compounds on cataplexy is mediated secondarily via the noradrenergic systems.

Animals↗

Antidepressant drugs for narcolepsy.

BACKGROUND: Narcolepsy is a disorder of the central nervous system, the main symptoms of which are excessive daytime sleepiness (EDS) and cataplexy (an abrupt and reversible decrease in or loss of muscle tone, affecting the limbs and/or trunk, elicited by emotional stimuli). Narcolepsy has an adverse impact on people's quality of life. Together with stimulant drugs (used to control EDS), antidepressants are usually recommended to counteract cataplexy. In addition, some antidepressants are also reported to improve EDS. OBJECTIVES: To evaluate the effects of antidepressant drugs on EDS, cataplexy, quality of life, and their side effects in people with narcolepsy. SEARCH STRATEGY: We searched the Cochrane Central Register of Controlled Trials (The Cochrane Library Issue 3, 2003), MEDLINE (1966 to 2003), EMBASE (1980 to 2003), PsycINFO (1872 to 2003), and CINAHL (1981 to 2003). Bibliographies of identified articles were reviewed to find additional references. Unpublished randomised trials were searched for by consulting governmental and non-governmental clinical trial registers, disease-specific websites, investigators and experts in the field, pharmaceutical companies/manufacturers. SELECTION CRITERIA: Parallel or cross-over randomised or quasi-randomised controlled trials testing the treatment of narcolepsy with any type of antidepressant drug versus no treatment, placebo, or another antidepressant drug. DATA COLLECTION AND ANALYSIS: Two reviewers independently selected trials for inclusion and extracted data. Outcomes were: (a) elimination of EDS; (b) mean reduction of EDS; (c) elimination of cataplexy; (d) 50% or greater reduction in cataplexy frequency; (e) mean reduction of cataplexy; (f) mean improvement in quality of life; (g) adverse events; (h) withdrawal from treatment. MAIN RESULTS: Two cross-over trials were included. The methodological quality of both studies was unclear and so the influence of common biases was impossible to define. As the trials tested two different comparisons (one femoxetine versus placebo, the other fluvoxamine versus clomipramine) meta-analysis was not performed. In the first trial (10 participants) femoxetine had no significant effect in eliminating or reducing EDS; a significant reduction of cataplexy was in favour of femoxetine. Mild and transient side effects were reported in the femoxetine treatment period by two participants. In the second trial the authors inappropriately treated the trial design as a parallel study and no conclusions can be reached in favour of either drug. AUTHORS' CONCLUSIONS: There was no good quality evidence that antidepressants are effective for narcolepsy or improve quality of life. Despite the clinical consensus recommending antidepressants for cataplexy there is scarce evidence that antidepressants have a positive effect on this symptom. There is a clear need for well-designed randomised controlled trials to assess the effect of antidepressants on narcolepsy.

Antidepressive Agents↗

A study of the diagnostic utility of HLA typing, CSF hypocretin-1 measurements, and MSLT testing for the diagnosis of narcolepsy in 163 Korean patients with unexplained excessive daytime sleepiness.

STUDY OBJECTIVE: To study DQB1*0602 status and hypocretin-1 levels in the cerebrospinal fluid (CSF) in a cohort of patients with hypersomnolence and to test International Classification of Sleep Disorders-2 (ICSD-2) criteria for hypersomnia of central origin. DESIGN: Retrospective case series. PATIENTS AND SETTING: One hundred sixty-three consecutive patients with unexplained sleepiness and 282 controls recruited at St. Vincent's Hospital, Korea. The gold standard for diagnosis was ICSD-2 criteria. Patients and controls completed the Stanford Sleep Inventory, and agreed to HLA typing. Polysomnography (87%), Multiple Sleep Latency Test (MSLT) (96%), and CSF hypocretin-1 measurements (53%) were conducted in patients. MEASUREMENTS AND RESULTS: Most patients (80%) could be classified using the ICSD-2. The 33 patients who could not be classified were without cataplexy (4 with low CSF hypocretin-1). These could not be included because of sleep apnea (apnea-hypopnea index > or = 5/h, 84%) and/or because sleep prior to MSLT was less than 6 hours (27%). Narcolepsy with cataplexy cases were 92% HLA positive with low hypocretin-1. Cataplexy at interview was predicted by validated Stanford Sleep Inventory questions regarding cataplexy triggers. In contrast, cataplexy-like events were frequently reported in all groups, including controls. Cases with narcolepsy without cataplexy were frequently men (73%) and heterogeneous biologically (36% HLA positive, 40% with low CSF hypocretin-1). None of the controls had low CSF hypocretin-1, whereas 13% were HLA positive. CONCLUSION: The ICSD-2 was easily applicable in cases with typical cataplexy. In these cases, the MSLT and further evaluations were almost always positive and may thus not always be needed. Many patients without cataplexy were difficult to classify because of difficulties in interpreting the MSLT in the presence of sleep apnea or reduced sleep.

Adult↗

Treatment in the narcoleptic syndrome: self assessment of the action of dexamphetamine and clomipramine.

Subjective evaluation of the effect of treatment of excessive daytime sleepiness (EDS) with dexamphetamine and of cataplexy with clomipramine was made in 124 subjects with the narcoleptic syndrome. Drug effects were evaluated by self-report of the propensity to EDS and cataplexy as determined by the Epworth Sleepiness Scale and a rating scale of anticipation-associated loss of postural motor tone during long-term therapy. The effects of dexamphetamine alone (60 subjects), clomipramine alone (16 subjects) and combined dexamphetamine-clomipramine treatment (48 subjects) were evaluated. Self-reports indicated that the propensity to EDS was reduced by approximately 20% by dexamphetamine (mean dosage 16 mg/24 h, range 5-60: mean treatment period 21 years, range 2-45). The propensity to cataplexy was reduced by 23% by clomipramine (mean dosage 64 mg/24 h, range 25-125: mean treatment period 14 years, range 1-24). Dexamphetamine alone, in addition to reducing the propensity to EDS also reduced the propensity to cataplexy. Clomipramine alone reduced cataplexy, but not EDS. Combined dexamphetamine-clomipramine treatment caused a reduction in the propensity to EDS and cataplexy of similar magnitude to that caused by dexamphetamine alone. Less than 10% of all subjects with the narcoleptic syndrome reported a daytime sleep propensity in the normal range whilst on dexamphetamine and no subject on clomipramine reported complete control of cataplexy. Long-term treatment with dexamphetamine was associated with weight increase more commonly than weight loss. Weight gain was reported by two-thirds of subjects taking clomipramine alone. Reports of weight loss were as common as reports of weight gain by subjects on combined dexamphetamine-clomipramine treatment. Constipation, dry mouth and impaired sexual function were reported by 25%, 38% and 19% (respectively) of subjects on clomipramine. This retrospective long-term self-report study investigated the propensity to, rather than the frequency of, episodes of EDS and cataplexy in subjects with the narcoleptic syndrome. This study suggests that long-term drug treatment in the narcoleptic syndrome results in only minor reduction in attack propensity, in contrast to the findings of many previous short term objective studies, which suggest 50-80% reduction in attack frequency. Major factors limiting response to dexamphetamine in the narcoleptic syndrome include physician prescription of sub-optimal drug dosages, and a low index between the limited therapeutic efficacy and frequent side-effects of this drug.

Journal Article↗

EFNS guidelines on management of narcolepsy.

Management of narcolepsy with or without cataplexy relies on several classes of drugs, namely stimulants for excessive daytime sleepiness and irresistible episodes of sleep, antidepressants for cataplexy and hypnosedative drugs for disturbed nocturnal sleep. In addition, behavioral measures can be of notable value. Guidelines on the management of narcolepsy have already been published. However contemporary guidelines are necessary given the growing use of modafinil to treat excessive daytime sleepiness in Europe within the last 5-10 years, and the decreasing need for amphetamines and amphetamine-like stimulants; the extensive use of new antidepressants in the treatment of cataplexy, apart from consistent randomized placebo-controlled clinical trials; and the present re-emergence of gamma-hydroxybutyrate under the name sodium oxybate, as a treatment of all major symptoms of narcolepsy. A task force composed of the leading specialists of narcolepsy in Europe has been appointed. This task force conducted an extensive review of pharmacological and behavioral trials available in the literature. All trials were analyzed according to their class evidence. Recommendations concerning the treatment of each single symptom of narcolepsy as well as general recommendations were made. Modafinil is the first-line pharmacological treatment of excessive daytime sleepiness and irresistible episodes of sleep in association with behavioral measures. However, based on several large randomized controlled trials showing the activity of sodium oxybate, not only on cataplexy but also on excessive daytime sleepiness and irresistible episodes of sleep, there is a growing practice in the USA to use it for the later indications. Given the availability of modafinil and methylphenidate, and the forseen registration of sodium oxybate for narcolepsy (including excessive daytime sleepiness, cataplexy, disturbed nocturnal sleep) in Europe, the place of other compounds will become fairly limited. Since its recent registration cataplexy sodium oxybate has now become the first-line treatment of cataplexy. Second-line treatments are antidepressants, either tricyclics or newer antidepressants, the later being increasingly used these past years despite few or no randomized placebo-controlled clinical trials. As for disturbed nocturnal sleep the best option is still hypnotics until sodium oxybate is registered for narcolepsy. The treatments used for narcolepsy, either pharmacological or behavioral, are diverse. However the quality of the published clinical evidences supporting them varies widely and studies comparing the efficacy of different substances are lacking. Several treatments are used on an empirical basis, specially antidepressants for cataplexy, due to the fact that these medications are already used widely in depressed patients, leaving little motivation from the manufacturers to investigate efficacy in relatively rare indications. Others, in particular the more recently developed substances, such as modafinil or sodium oxybate, are evaluated in large randomized placebo-controlled trials. Our objective was to reinforce the use of those drugs evaluated in randomized placebo-controlled trials and to reach a consensus, as much as possible, on the use of other available medications.

Advisory Committees↗

The positive diagnosis of narcolepsy and narcolepsy's borderland.

We studied the validity of cataplexy and number of sleep-onset rapid-eye-movement periods (SOREMPs) during one Multiple Sleep Latency Test (MSLT) as determinants of narcolepsy in 306 subjects with excessive daytime sleepiness not related to obstructive sleep apnea or other known syndromes. The subgroup defined by a history of cataplexy was the most homogeneous in clinical and polygraphic variables. However, only 83% of these subjects had two or more SOREMPs in one MSLT. The subgroup defined by two or more SOREMPs included many patients without cataplexy. A disproportionate number of these subjects were older women whose chances of developing cataplexy are remote. This group of older women had a higher number of periodic leg movements during sleep than the other groups. Patients with both cataplexy and two or more SOREMPs have the greatest chance of being DR2 DQw1 positive. Thus, the combination of history of cataplexy and two or more SOREMPs is the best clinical determinant of narcolepsy. However, two or more SOREMPs is a poorer discriminant of narcolepsy than history of cataplexy.

Adolescent↗

Effects of central alpha-2 adrenergic compounds on canine narcolepsy, a disorder of rapid eye movement sleep.

Recent experiments have demonstrated that pharmacological activation of central noradrenergic systems by monoaminergic stimulators or uptake blockers or through the stimulation of alpha-1 adrenergic receptors improved cataplexy, a major symptom of narcolepsy. In order to further the understanding of the control of cataplexy by noradrenergic mechanisms, the involvement of central alpha-2 adrenoceptors was examined in genetically narcoleptic Doberman pinschers using in vivo pharmacology. Yohimbine (1.5-96.0 micrograms/kg i.v.) and seven other selective and centrally acting alpha-2 adrenoceptor antagonists (rauwolscine: 1.5-96 micrograms/kg i.v.; atipemazole: 1.5-96 micrograms/kg i.v.; Wy-25309: 1.5-386 micrograms/kg i.v.; CGS-7525A: 1.5-386 micrograms/kg i.v.; idazoxan, 6-1536 micrograms/kg i.v.; piperoxan, 6-1536 micrograms/kg i.v.; and mianserin, 6-1536 micrograms/kg i.v.) significantly suppressed cataplexy. The alpha-2 mediation of this effect was demonstrated by a close correlation between drug affinities (Ki) toward the alpha-2 site (defined using [3H]yohimbine in canine cortex) and the ability of these drugs to reduce cataplexy [ED50 in nanomoles per kilogram i.v.) (r2 = 0.71, n = 8, P less than .01). The effects of six centrally acting alpha-2 agonists on canine cataplexy were also examined and two groups of compounds were distinguished on the basis of their pharmacological profile. Classical alpha-2 agonists such as clonidine (0.0625-4.0 micrograms/kg i.v.), p-aminoclonidine (0.0625-4.0 micrograms/kg i.v.) and guanfacine (0.0625-4.0 micrograms/kg i.v.) had no effect on cataplexy whereas BHT-920 (0.01875-3.0 micrograms/kg i.v.), BHT-933 (16.0-258 micrograms/kg i.v.) and xylazine (16.0-258 micrograms/kg i.v.) dramatically aggravated cataplexy.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Agonists↗

CSF hypocretin-1 levels in narcolepsy, Kleine-Levin syndrome, and other hypersomnias and neurological conditions.

OBJECTIVE: To determine the role of CSF hypocretin-1 in narcolepsy with and without cataplexy, Kleine-Levin syndrome (KLS), idiopathic and other hypersomnias, and several neurological conditions. PATIENTS: 26 narcoleptic patients with cataplexy, 9 narcoleptic patients without cataplexy, 2 patients with abnormal REM-sleep-associated hypersomnia, 7 patients with idiopathic hypersomnia, 2 patients with post-traumatic hypersomnia, 4 patients with KLS, and 88 patients with other neurological disorders. RESULTS: 23 patients with narcolepsy-cataplexy had low CSF hypocretin-1 levels, while one patient had a normal hypocretin level (HLA-DQB1*0602 negative) and the other two had intermediate levels (familial forms). One narcoleptic patient without cataplexy had a low hypocretin level. One patient affected with post-traumatic hypersomnia had intermediate hypocretin levels. The KLS patients had normal hypocretin levels while asymptomatic, but one KLS patient (also affected with Prader-Willi syndrome) showed a twofold decrease in hypocretin levels during a symptomatic episode. Among the patients without hypersomnia, two patients with normal pressure hydrocephalus and one with unclear central vertigo had intermediate levels. CONCLUSION: Low CSF hypocretin-1 is highly specific (99.1%) and sensitive (88.5%) for narcolepsy with cataplexy. Hypocretin ligand deficiency appears not to be the major cause for other hypersomnias, with a possible continuum in the pathophysiology of narcolepsy without cataplexy and idiopathic hypersomnia. However, partial hypocretin lesions without low CSF hypocretin-1 consequences cannot be definitely excluded in those disorders. The existence of normal hypocretin levels in narcoleptic patients and intermediate levels in other rare aetiologies needs further investigation, especially for KLS, to establish the functional significance of hypocretin neurotransmission alterations.

Adolescent↗

Is narcolepsy a REM sleep disorder? Analysis of sleep abnormalities in narcoleptic Dobermans.

Narcolepsy is a chronic sleep disorder marked by excessive daytime sleepiness, cataplexy, sleep paralysis, and hypnagogic hallucinations. Since the discovery of sleep onset REM periods (SOREMPs) in narcoleptic patients, narcolepsy has often been regarded as a disorder of REM sleep generation: REM sleep intrudes in active wake or at sleep onset, resulting in cataplexy, sleep paralysis, or hypnagogic hallucinations. However, this hypothesis has not been experimentally verified. In the current study, we characterized the sleep abnormalities of genetically narcoleptic-cataplectic Dobermans, a naturally occurring animal model of narcolepsy, in order to verify this concept. Multiple sleep latency tests during the daytime revealed that narcoleptic Dobermans exhibit a shorter sleep latency and a higher frequency of SOREMPs, compared to control Dobermans. The total amount of time spent in wake and sleep during the daytime is not altered in narcoleptic dogs, but their wake and sleep patterns are fragmented, and state transitions into and from wake and other sleep stages are altered. A clear 30 min REM sleep cyclicity exists in both narcoleptic and control dogs, suggesting that generation of the ultradian rhythm of REM sleep is not altered in narcoleptics. In contrast, cataplexy displays no cyclicity and can be elicited in narcoleptic animals anytime with emotional stimulation and displays no cyclicity. Stimulation of a cholinoceptive site in the basal forebrain induces a long-lasting attack of cataplexy in narcoleptic dogs; however, bursts of rapid eye movements during this state still occur with a 30 min cyclicity. Sites and mechanisms for triggering cataplexy may therefore be different from those for REM sleep. Cataplexy and a dysfunction in the maintenance of vigilance states, but not abnormal REM sleep generation, may therefore be central to narcolepsy.

Animals↗

Effects of startle and laughter in cataplectic subjects: a neurophysiological study between attacks.

OBJECTIVES: Cataplexy, when unequivocally present together with excessive daytime sleepiness, is diagnostic for narcolepsy. Unfortunately, it is difficult to induce cataplexy during consultation. In this study we tried to assess presumed subclinical expressions of cataplexy using neurophysiological tests. METHODS: In this controlled explorative study, we studied 14 patients with a clear history of cataplexy and 12 matched controls using standard H-reflex, H/M ratios, audiospinal reflex, H-reflexes modulated by emotions and startle reflexes. RESULTS: H-reflexes were attenuated during laughter in patients as well as controls. Startle reflexes were increased in patients. Audiospinal reflexes were not influenced. CONCLUSIONS: The patterns found add relevant knowledge concerning pathophysiological mechanisms and involved brain areas in cataplexy, and may reflect subclinical expressions of cataplexy. The presumed specificity of the abolishment of H-reflexes during cataplectic attacks is questioned by our findings. The exaggerated startle reflex is in line with recent findings concerning involved brain areas in narcolepsy.

Acoustic Stimulation↗

Diagnostic aspects of narcolepsy.

The diagnostic criteria for narcolepsy continue to evolve as more is learned about the features of this and other sleep disorders. A variety of symptoms have been said to distinguish narcolepsy from other sleep disorders, including cataplexy, character of daytime sleepiness, sleep paralysis, hypnagogic hallucinations, and automatic behavior. Other diagnostic assessments, such as determination of human leukocyte antigen (HLA) haplotype and findings of sleep laboratory assessments, also contribute to the differential diagnosis. As diagnostic and analytic techniques have become more sophisticated, however, it has become apparent that many of the characteristic features of narcolepsy--including the HLA-DR2 haplotype, sleep-onset REM sleep, and short sleep latency--may also be present in other sleep disorders. Although unambiguous cataplexy does not occur with other sleep disorders and is therefore a valuable symptom for diagnosis, it may occur with a few other neurologic disorders. Furthermore, the clinical assessment of cataplexy-like symptoms is not always straightforward. Current evidence suggests there is a fairly well-defined syndrome of narcolepsy-cataplexy that is highly associated with specific HLA markers and REM sleep abnormalities. On the other hand, there is substantial clinical overlap between narcolepsy without cataplexy and idiopathic hypersomnia. Patients with features of narcolepsy who do not have definite cataplexy and patients with features of idiopathic hypersomnia must be assessed thoroughly because of the possibility that other sleep disorders are the cause of the symptoms.

Biomarkers↗

Narcolepsy in Singapore: is it an elusive disease?

INTRODUCTION: The aims of the study were to determine the demographic, clinical, and polysomnographic characteristics of narcolepsy, and to address the difficulties in diagnosing narcolepsy and cataplexy, which is a cardinal symptom. We also ventured to investigate the differences between narcolepsy with and without cataplexy. MATERIALS AND METHODS: Data were collected retrospectively from patients diagnosed with narcolepsy at the Sleep Disorder Unit of Singapore General Hospital over 5 years. Each patient had had a detailed clinical evaluation and overnight polysomnography (PSG) followed by a multiple sleep latency test (MSLT). RESULTS: A total of 28 cases were studied. Males made up 85.7% of the total and females, 14.3%. The mean age was 30.9 years. All had excessive daytime sleepiness. Other manifestations were cataplexy (48.1%), sleep paralysis (51.9%), hypnogogic hallucinations (84%), disturbed night sleep (29.2%), automatisms (17.4%) and catnaps (95.8%). The mean duration of symptoms was 7.24 years. In the MSLT, the mean values for mean sleep latency and number of sleep onset rapid eye movement (REM) periods (SOREMP) were 4.3 minutes and 2.7, respectively. Narcolepsy was associated with obstructive sleep apnoea and periodic limb movement disorder (35.7%). All the variables were compared between those who had narcolepsy with cataplexy and without cataplexy. The duration of presenting complaint, REM latency, respiratory disturbance index, number of SOREMPs and the presence of sleep paralysis were significantly different in the 2 groups. CONCLUSIONS: Narcolepsy predominantly affects young males. Concurrence of other sleep disorders is not uncommon. Some differences are evident between those who have narcolepsy with and without cataplexy.

Adolescent↗

[Problems posed by spinal anesthesia in a patient with Gélineau disease].

A 44-year-old patient, with narcolepsy-cataplexy, underwent surgery for lumbar disk hernia under spinal anaesthesia. Our purpose was to prevent an interaction between the patient's disease and general anaesthetic agents with the risk of postoperative hypersomnia. During surgical procedure, two narcolepsy fits occurred, without clinical consequences. The postoperative course was uneventful. However, spinal anaesthesia cannot be considered as a technique of choice because of the risk of narcolepsy-cataplexy fits with loss of consciousness and atonia, during regional anaesthesia. General anaesthesia seems to be the best choice for these patients cholinergic agents and mainly the alpha1 adrenergic blocking drugs are contra-indicated as they increase the risk of narcolepsy-cataplexy fits. Anaesthetic sleep, narcolepsy, cataplexy and epilepsy are clinically rather similar. The EEG does not allow to differentiate between narcolepsy and anaesthetic-sleep, whereas cataplexy and epilepsy result in specific EEG patterns.

Adrenergic alpha-Antagonists↗

The clinical spectrum of narcolepsy and idiopathic hypersomnia.

To better define the clinical spectra of narcolepsy and idiopathic hypersomnia, we retrospectively compared clinical and polygraphic findings and questionnaire results in groups of subjects with narcolepsy with or without cataplexy, idiopathic hypersomnia, insufficient sleep syndrome, mild sleep apnea, and excessive daytime sleepiness not otherwise specified. Sleep paralysis and sleep-related hallucinations were most frequent in narcolepsy-cataplexy, but their frequency did not differ between narcolepsy without cataplexy and idiopathic hypersomnia. Mean durations of nocturnal sleep, daytime naps, and morning grogginess were not increased in idiopathic hypersomnia compared with other groups. Among subjects without cataplexy, symptoms of sleep paralysis and sleep-related hallucinations were equally common in subjects with and without frequent sleep-onset REM periods. These findings suggest that the occurrence of these symptoms in subjects without classical narcolepsy-cataplexy is a function of factors other than a propensity for early onset of REM sleep and indicate a need to reevaluate diagnostic criteria for narcolepsy and idiopathic hypersomnia.

Adult↗

Narcolepsy in the older adult: epidemiology, diagnosis and management.

Narcolepsy is a disorder of impaired expression of wakefulness and rapid-eye-movement (REM) sleep. This manifests as excessive daytime sleepiness and expression of individual physiological correlates of REM sleep that include cataplexy and sleep paralysis (REM sleep atonia intruding into wakefulness), impaired maintenance of REM sleep atonia (e.g. REM sleep behaviour disorder [RBD]), and dream imagery intruding into wakefulness (e.g. hypnagogic and hypnopompic hallucinations). Excessive sleepiness typically begins in the second or third decade followed by expression of auxiliary symptoms. Only cataplexy exhibits a high specificity for diagnosis of narcolepsy. While the natural history is poorly defined, narcolepsy appears to be lifelong but not progressive. Mild disease severity, misdiagnoses or long delays in cataplexy expression often cause long intervals between symptom onset, presentation and diagnosis. Only 15-30% of narcoleptic individuals are ever diagnosed or treated, and nearly half first present for diagnosis after the age of 40 years. Attention to periodic leg movements (PLM), sleep apnoea and RBD is particularly important in the management of the older narcoleptic patient, in whom these conditions are more likely to occur. Diagnosis requires nocturnal polysomnography (NPSG) followed by multiple sleep latency testing (MSLT). The NPSG of a narcoleptic patient may be totally normal, or demonstrate the patient has a short nocturnal REM sleep latency, exhibits unexplained arousals or PLM. The MSLT diagnostic criteria for narcolepsy include short sleep latencies (<8 minutes) and at least two naps with sleep-onset REM sleep. Treatment includes counselling as to the chronic nature of narcolepsy, the potential for developing further symptoms reflective of REM sleep dyscontrol, and the hazards associated with driving and operating machinery. Elderly narcoleptic patients, despite age-related decrements in sleep quality, are generally less sleepy and less likely to evidence REM sleep dyscontrol. Nonpharmacological management also includes maintenance of a strict wake-sleep schedule, good sleep hygiene, the benefits of afternoon naps and a programme of regular exercise. Thereafter, treatment is highly individualised, depending on the severity of daytime sleepiness, cataplexy and sleep disruption. Wake-promoting agents include the traditional psychostimulants. More recently, treatment with the 'activating' antidepressants and the novel wake-promoting agent modafinil has been advocated. Cataplexy is especially responsive to antidepressants which enhance synaptic levels of noradrenaline (norepinephrine) and/or serotonin. Obstructive sleep apnoea and PLMs are more common in narcolepsy and should be suspected when previously well controlled older narcolepsy patients exhibit a worsening of symptoms. The discovery that narcolepsy/cataplexy results from the absence of neuroexcitatory properties of the hypothalamic hypocretin-peptidergic system will significantly advance understanding and treatment of the symptom complex in the future.

Adult↗