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Biomedical subjects

J Steven Poceta

Publications and source records attributed to J Steven Poceta.

7 recordsLinked to original sources

Melatonin effects on luteinizing hormone in postmenopausal women: a pilot clinical trial NCT00288262.

BACKGROUND: In many mammals, the duration of the nocturnal melatonin elevation regulates seasonal changes in reproductive hormones such as luteinizing hormone (LH). Melatonin's effects on human reproductive endocrinology are uncertain. It is thought that the same hypothalamic pulse generator may both trigger the pulsatile release of GnRH and LH and also cause hot flashes. Thus, if melatonin suppressed this pulse generator in postmenopausal women, it might moderate hot flashes. This clinical trial tested the hypothesis that melatonin could suppress LH and relieve hot flashes. METHODS: Twenty postmenopausal women troubled by hot flashes underwent one week of baseline observation followed by 4 weeks of a randomized controlled trial of melatonin or matched placebo. The three randomized treatments were melatonin 0.5 mg 2.5-3 hours before bedtime, melatonin 0.5 mg upon morning awakening, or placebo capsules. Twelve of the women were admitted to the GCRC at baseline and at the end of randomized treatment for 24-hour sampling of blood for LH. Morning urine samples were collected twice weekly to measure LH excretion. Subjective responses measured throughout baseline and treatment included sleep and hot flash logs, the CESD and QIDS depression self-ratings, and the SAFTEE physical symptom inventory. RESULTS: Urinary LH tended to increase from baseline to the end of treatment. Contrasts among the 3 randomized groups were statistically marginal, but there was relative suppression combining the groups given melatonin as contrasted to the placebo group (p < 0.01 one-tailed, Mann-Whitney U = 14). Similar but not significant results were seen in blood LH. There were no significant contrasts among groups in hot flashes, sleep, depression, or side-effect measures and no significant adverse effects of any sort. CONCLUSION: The data are consistent with the hypothesis that melatonin suppresses LH in postmenopausal women. An effect related to the duration of nocturnal melatonin elevation is suggested. Effects of melatonin on reproductive endocrinology should be studied further in younger women and in men. Larger studies of melatonin effects on postmenopausal symptoms would be worthwhile.

Journal Article↗

Sleep and headache disorders: clinical recommendations for headache management.

Clinical practice points were drawn from a review of sleep and headache disorders published in the regular issue of Headache (released in tandem with this supplement). The recommendations include: (1) Sleep as well as psychiatric disorders tend to become prevalent in more complex and severe headache patterns and regulation of sleep and mood may favorably impact headache threshold; (2) Specific headache patterns, irrespective of headache diagnosis, are suggestive of a potential sleep disorder (eg, "awakening" or morning headache, chronic daily headache); (3) Sleep disorders most implicated with headache include obstructive sleep apnea, primary insomnia, and circadian phase abnormalities, and treatment of such sleep disorders may improve or resolve headache; (4) Inexpensive screening tools (eg, sleep history interview, headache/sleep diary, validated questionnaires, prediction equations) aid identification of patients warranting polysomnography; and (5) Pharmacologic and behavioral therapies are effective in the regulation of sleep and are compatible with usual headache care.

Headache Disorders↗

Headache and sleep disorders: review and clinical implications for headache management.

Review of epidemiological and clinical studies suggests that sleep disorders are disproportionately observed in specific headache diagnoses (eg, migraine, tension-type, cluster) and other nonspecific headache patterns (ie, chronic daily headache, "awakening" or morning headache). Interestingly, the sleep disorders associated with headache are of varied types, including obstructive sleep apnea (OSA), periodic limb movement disorder, circadian rhythm disorder, insomnia, and hypersomnia. Headache, particularly morning headache and chronic headache, may be consequent to, or aggravated by, a sleep disorder, and management of the sleep disorder may improve or resolve the headache. Sleep-disordered breathing is the best example of this relationship. Insomnia is the sleep disorder most often cited by clinical headache populations. Depression and anxiety are comorbid with both headache and sleep disorders (especially insomnia) and consideration of the full headache-sleep-affective symptom constellation may yield opportunities to maximize treatment. This paper reviews the comorbidity of headache and sleep disorders (including coexisting psychiatric symptoms where available). Clinical implications for headache evaluation are presented. Sleep screening strategies conducive to headache practice are described. Consideration of the spectrum of sleep-disordered breathing is encouraged in the headache population, including awareness of potential upper airway resistance syndrome in headache patients lacking traditional risk factors for OSA. Pharmacologic and behavioral sleep regulation strategies are offered that are also compatible with treatment of primary headache.

Depressive Disorder↗

Sleep-related headache syndromes.

An association between headache and sleep is long recognized in the medical literature and deemed highly clinically relevant for at least a portion of headache sufferers. Sleep-related headaches are not well understood, but recent advances in the neurophysiology of sleep and headache shed light on common biological processes potentiating their association. Respective diagnostic nosologies for headache and sleep disorders offer limited guidance but are evolving to better represent the known associations. A rational approach based on the available empiricism can assist the clinician in the assessment and treatment of headache. Each headache evaluation should include at least a brief sleep history. Headaches that occur during or after sleep, so called morning headache, may be secondary to a sleep disorder and call for a specific treatment. This case is best established for sleep-related breathing disorders, and treatment of apnea often leads to resolution of the headache. Although pure sleep-related headaches, such as hypoxemia-related headache and hypnic headache, are less prevalent and more easily recognized, primary headaches are often impacted to some degree by sleep. Additionally, common headache medications and comorbid conditions alter sleep architecture. Management of primary headache may be facilitated by attention to sleep complaints.

Headache Disorders↗

Ropinirole decreases periodic leg movements and improves sleep parameters in patients with restless legs syndrome.

STUDY OBJECTIVES: Polysomnographic study evaluating the efficacy of ropinirole for the treatment of patients with restless legs syndrome (RLS) suffering from periodic leg movements in sleep (PLMS). DESIGN: Double-blinded, placebo-controlled, parallel-group study. SETTING: 15 tertiary referral centers in the USA. PARTICIPANTS: 65 patients with RLS and PLMS. INTERVENTIONS: Ropinirole (0.25-4.0 mg per day) or placebo for 12 weeks. MEASUREMENTS AND RESULTS: Data from 59 patients were included in the primary endpoint analysis. PLMS per hour decreased more with ropinirole (48.5 to 11.8), compared with placebo (35.7 to 34.2; adjusted treatment difference: -27.2; 95% confidence interval [CI]: -39.1, -15.4; P < .0001). Periodic limb movements with arousal per hour decreased from 7.0 to 2.5 with ropinirole but increased from 4.2 to 6.0 with placebo (adjusted treatment difference: -4.3, 95% CI: -7.6, -1.1; P = .0096). Periodic limb movements while awake per hour decreased from 56.5 to 23.6 with ropinirole but increased from 46.6 to 56.1 with placebo (adjusted treatment difference: -39.5; 95% CI: -56.9, -22.1; P < .0001). Ropinirole treatment significantly improved patients' ability to initiate sleep (P < .05) and the amount of Stage 2 sleep compared with placebo (P < .001). There were also non-significant trends toward increases in total sleep time and sleep efficiency. Sleep adequacy (measured on the subjective Medical Outcomes Study sleep scale) was significantly improved with ropinirole treatment (adjusted treatment difference: 12.1; 95% CI: 1.1, 23.1; P = .0316). In contrast, the placebo group showed a greater increase in Stage 3/4 sleep (P < .01). No serious adverse events occurred in either group. CONCLUSIONS: Ropinirole is effective in the treatment of both the sleep and waking symptoms of RLS.

Antiparkinson Agents↗

Zolpidem for postanoxic spasticity.

A 28-year-old male sustained anoxic brain damage following aborted cardiac arrest, and subsequently developed severe muscular rigidity and spasticity involving all extremities. The spasticity was refractory to the standard regimens used for spastic hypertonia. Zolpidem dramatically inhibited muscular rigidity, spasticity, and dystonic posturing in a dose-dependent manner, resulting in a sustained improvement of his global performance over four years. The authors postulate a central mechanism of action by selective inhibition of GABAergic inhibitory neurons, and suggest a controlled clinical study to investigate the potential efficacy of zolpidem in relieving spasticity related to postanoxic brain injury.

Adult↗

Sleep-related headache syndromes.

The relationship between sleep and sleep disorders and headache remains unclear. Clinical experience and numerous studies document some sort of relationship, but the exact nature remains understudied and complex. Changes in sleep duration and sleep quality appear to be capable of affecting headaches of different types. Obstructive sleep apnea can cause or exacerbate headaches in a susceptible person. Obstructive sleep apnea also may cause a specific headache when awakening, which is different from migraine or tension headache and disappears after treatment of the sleep and breathing disturbance. Hypnic headache is another type of sleep-exclusive headache that has been proposed. Hypnic headaches are brief, moderately severe, and affect the elderly primarily.

Adult↗