Certain stimulant drugs promote wakefulness over extended periods.
the verdict
SUPPORTED
the evidence backs this
refutedsupported
the weight of evidence
4 sources for · 0 against
Multiple scientific sources and clinical reviews establish that certain central nervous system stimulants reduce tiredness, increase alertness, and are used to combat excessive daytime sleepiness or promote wakefulness.
<h4>Objective</h4>Recent studies have provided variable information on the frequency and context of diversion and the use of nonprescribed and prescribed stimulant medications in adolescent and young adult populations. The purpose of this systematic review of the literature is to evaluate the extent and characteristics of stimulant misuse and diversion in attention-deficit/hyperactivity disorder (ADHD) and non-ADHD individuals.<h4>Method</h4>We conducted a systematic review of the literature of available studies looking at misuse and diversion of prescription ADHD medications using misuse, diversion, stimulants, illicit use, and ADHD medications as key words for the search.<h4>Results</h4>We identified 21 studies representing 113,104 subjects. The studies reported rates of past year nonprescribed stimulant use to range from 5% to 9% in grade school- and high school-age children and 5% to 35% in college-age individuals. Lifetime rates of diversion ranged from 16% to 29% of students with stimulant prescriptions asked to give, sell, or trade their medications. Recent work suggests that whites, members of fraternities and sororities, individuals with lower grade point averages, use of immediate-release compared to extended-release preparations, and individuals who report ADHD symptoms are at highest risk for misusing and diverting stimulants. Reported reasons for use, misuse, and diversion of stimulants include to concentrate, improve alertness, "get high," or to experiment.<h4>Conclusions</h4>The literature suggests that individuals both with and without ADHD misuse stimulant medications. Recent work has begun to document the context, motivation, and demographic profile of those most at risk for using, misusing, and diverting stimulants. The literature highlights the need to carefully monitor high-risk individuals for the use of nonprescribed stimulants and educate individuals with ADHD as to the pitfalls of the misuse and diversion of the stimulants.
BACKGROUND AND OBJECTIVES: Central nervous system (CNS) stimulants may be used to reduce tiredness and increase alertness, competitiveness, and aggression. They are more likely to be used in competition but may be used during training to increase the intensity of the training session. There are several potential dangers involving their misuse in contact sports. This paper reviews the three main CNS stimulants, ephedrine, amfetamine, and cocaine, in relation to misuse in sport. METHODS: Description of the pharmacology, actions, and side effects of amfetamine, cocaine, and ephedrine. RESULTS: CNS stimulants have psychotropic effects that may be perceived to be ergogenic. Some are prescription drugs, such as Ephedra alkaloids, and there are issues regarding their appropriate therapeutic use. Recently attention has been given to their widespread use by athletes, despite the lack of evidence regarding any ergogenic or real performance benefit, and their potentially serious side effects. Recreational drugs, some of which are illegal (cocaine, amfetamines), are commonly used by athletes and cause potential ergolytic effects. Overall, these drugs are important for their frequent use and mention in anti-doping laboratories statistics and the media, and their potentially serious adverse effects. CONCLUSIONS: Doping with CNS stimulants is a real public health problem and all sports authorities should participate in its prevention. Dissemination of information is essential to prevent doping in sport and to provide alternatives. Adequate training and education in this domain should be introduced.
Modafinil (MOD, 2-diphenyl-methyl-sulphinil-2-acetamide) is a stimulant-like medicine used to treat narcolepsy. Off-label uses include improving cognitive ability in the course of other diseases. This review aims to discuss findings demonstrating the memory and learningenhancing activity of MOD in experimental and clinical studies. We included behavioral evaluations alongside the effects of MOD at the cellular and molecular level. MOD in different animal disease models exerted beneficial effects on induced memory and learning impairment, which in some cases were accompanied by modulation of neurotransmitter pathways or neuroplastic capabilities, reducing oxidative stress, or expression of synaptic proteins. Individuals treated with MOD showed improved memory and learning skills in different conditions. These effects were associated with regulating brain activity in some participants, confirmed by functional magnetic resonance imaging. Presented herein, data support the use of MOD in treating memory and learning deficits in various disease conditions.
A stimulant (also called central nervous system stimulant, psychostimulant, or colloquially an upper) are a class of psychoactive drugs that increase
A stimulant (also called central nervous system stimulant, psychostimulant, or colloquially an upper) are a class of psychoactive drugs that increase alertness. They are used for various purposes, such as enhancing attention, motivation, cognition, mood, and physical activity. Some stimulants occur in nature while others are synthetic. Common stimulants include caffeine, nicotine, cocaine , amphet
Modafini…
Pitolisant is an inverse agonist (antagonist) of the histamine 3 (H3) autoreceptor. As such, pitolisant is an antihistamine medication that also belongs to the class of CNS stimulants. Pitolisant is also considered a…
Certain serotonergic psychedelics and related non-hallucinogenic drugs, acting as serotonin 5-HT2A receptor agonists, have been reported to have mild stimulant and/or "psychic energizing" (i.e., acute antidepressant) effects, both in animals and humans. These effects are often present at low or sub-hallucinogenic doses. Psychedelics are also known to promote wakefulness or cause insomnia.
Psychedelic and related drugs that have been reported to produce stimulant effects include the phenethylamines 2,5-DMA (DOH), DOM, DOET, DOPR, DON, MTFEM, Ariadne (4C-DOM; BL-3912; Dimoxamine), 2C-B, 2C-D, 2C-G-N, and ASR-2001 (2CB-5PrO), and the tryptamines 5-MeO-DiPT and 5-MeO-MiPT, among others. The lysergamide LSD has also been reported to have mild stimulant effects. Conversely, psilocybin does not seem to produce the same stimulant effects. The non-hallucinogenic Ariadne was under development as a potential pharmaceutical drug to take advantage of such effects in the treatment of conditions like depression in the 1970s, and reached phase 3 clinical trials for such indications, but was shelved reportedly for strategic economic reasons. ASR-2001, which is likewise non-hallucinogenic, is under development for use as a stimulant-like medication for treatment of psychiatric disorders.
Serotonin 5-HT2A receptor agonists have been found to increase dopamine levels in brain areas like the frontal cortex, striatum, and nucleus accumbens in animal studies. Relatedly, serotonin 5-HT2A receptor agonists are known to produce stimulant-like effects in animals such as hyperlocomotion (increased locomotor activity) and pro-motivational effects. The serotonin 5-HT2C receptor, which most psychedelics additionally activate to varying degrees, is known to have opposing effects on dopamine release and stimulant-related behavior, which may contribute to inverted U-shaped dose–response relationships as well as divergent stimulant-like effects between different psychedelics.
Everything we examined (5) — 4 independent sources
This check searched the claim as stated. It did not run a separate search for evidence against it.