Guest guest Posted April 8, 2004 Report Share Posted April 8, 2004 Zinc 'helps hyperactive children' Doctors have found evidence to suggest that hyperactive children may benefit from taking zinc supplements. Many parents whose children have attention deficit hyperactivity (ADHD)disorder give them extra zinc. However, doctors are split on whether it actually works and few actually advocate it. But a study in Iran on 44 children with the condition has found that those on zinc fared much better than those who were not given supplements. Vitamin deficiency Previous studies have shown that many children with ADHD have vitamin and mineral deficiencies. The 44 children in this study were divided into two groups. Those in the first group were given 55mg of zinc each day for six weeks. Those in the second group were given a dummy pill. All of the children were also given Ritalin, which is routinely prescribed to treat ADHD. [see 1 below] The researchers, who are based at Roozbeh Psychiatric Hospital in Tehran, said the behaviour of all of the children improved over the course of the study period. However, they said those who had taken zinc had shown a more marked improvement. The researchers suggested that zinc may play a role in regulating the production of dopamine in the brain. This chemical is associated with feelings of pleasure and reward and has been linked to ADHD by other scientists. The researchers said further study is needed to confirm the findings and examine if children with the condition should be given zinc. " This study demonstrated that zinc as a supplementary medication might be beneficial in the treatment of children with ADHD. " However, further investigations and different doses of zinc are required to replicate these findings in children with ADHD. " Professor Hill of the Royal College of Psychiatrists said much more research is needed. " I advised parents to give their children extra zinc in the 1970s. I don't do it now, " he told BBC News Online. " While it worked for some children, it did not work for others. " There is a danger that children could be given too much zinc. I wouldn't advise parents to start giving their children zinc now. " The study is published in BMC Psychiatry. Story from BBC NEWS: http://news.bbc.co.uk/go/pr/fr/-/2/hi/health/3608439.stm Published: 2004/04/08 07:10:05 GMT © BBC MMIV 1. A recent news release described Harvard researchers' findings: drugs like and including Ritalin induce depresssion-like traits and learned helplessness (A-. A. Attention Deficit Drugs May Have Long-Term Effects http://www.abcnews.go.com/wire/US/reuters20031208_12.html Dec. 8 -- WASHINGTON (Reuters) - Drugs given to children to treat attention deficit hyperactivity disorder could have long-term effects on their growing brains, studies on rats suggest. Several studies published on Monday show that rats given a popular ADHD drug were less likely to want to use cocaine later in life, but also often acted clinically depressed and behaved differently from rats give dummy injections. While rats are different from humans, the studies suggest that doctors should watch children for long-term effects, too. In the United States between 3 percent and 5 percent of children are diagnosed with attention deficit disorder, marked by reduced ability to concentrate, difficulty in organizing and impulsive behavior. Patients are commonly prescribed stimulants but the practice is sometimes controversial. Carlezon of McLean Hospital and Harvard Medical School in Boston and colleagues raised two groups of rats. One was given Ritalin, known generically as methylphenidate, during the rat equivalent of pre-adolescence, while the other was given a salt water injection. When they matured, the rats were tested for " learned helplessness " -- how quickly they gave up on behavioral tasks under stress. " Rats exposed to Ritalin as juveniles showed large increases in learned-helplessness behavior during adulthood, suggesting a tendency toward depression, " Carlezon said in a statement. But rats, which generally like cocaine, were less likely to eat it if they had been give Ritalin. Carlezon said he did not believe the effects were specific to Ritalin, made by Swiss drug giant Novartis. It could instead be a general effect of stimulant drugs, many of which act by increasing the activity of a key message-carrying chemical called dopamine. Higher dopamine levels could affect the way brain cells cement their connections during development, Carlezon wrote in the Dec. 15 issue of the journal Biological Psychiatry. A team at the University of Texas Southwestern Medical Center at Dallas found that adult rats were less responsive to rewarding stimuli and reacted more to stress if they had been given methylphenidate as youngsters. A third study done by a team at Finch University of Health Sciences/The Chicago Medical School found changes in how dopamine neurons responded to methylphenidate. " These three studies remind us how limited our knowledge is of the neurochemical and functional characteristics of the human brain during childhood and adolescence and on the effects of psychotropic drugs on brain development, " Dr. Insel, Director of the National Institute of Mental Health, wrote in a commentary. B. Biol Psychiatry. 2003 Dec 15;54(12):1330-7. Enduring behavioral effects of early exposure to methylphenidate in rats. Carlezon WA Jr, Mague SD, Andersen SL. Department of Psychiatry, Harvard Medical School, McLean Hospital, Belmont, Massachusetts 02478, USA. BACKGROUND: Methylphenidate (MPH) is a stimulant prescribed for the treatment of attention-deficit/hyperactivity disorder (ADHD). Stimulant drugs can cause enduring behavioral adaptations, including altered drug sensitivity, in laboratory animals. We examined how early developmental exposure to stimulants affects behavior in several rodent models. METHODS: Rats received MPH or cocaine during preadolescence (P20-35). Behavioral studies began during adulthood (P60). We compared how early exposure to MPH and cocaine affects sensitivity to the rewarding and aversive properties of cocaine using place conditioning. We also examined the effects of early exposure to MPH on depressive-like signs using the forced swim test, and habituation of spontaneous locomotion, within activity chambers. RESULTS: In place-conditioning tests, early exposure to MPH or cocaine each made moderate doses of cocaine aversive and high doses less rewarding. Early MPH exposure also caused depressive-like effects in the forced swim test, and it attenuated habituation to the activity chambers.CONCLUSIONS: Early exposure to MPH causes behavioral changes in rats that endure into adulthood. Some changes (reduced sensitivity to cocaine reward) may be beneficial, whereas others (increases in depressive-like signs, reduced habituation) may be detrimental... * The material in this post is distributed without profit to those who have expressed a prior interest in receiving the included information for research and educational purposes. For more information go to: http://www4.law.cornell.edu/uscode/17/107.html <http://oregon.uoregon.edu/%7Ecsundt/documents.htm> http://oregon.uoregon.edu/~csundt/documents.htm <http://oregon.uoregon.edu/%7Ecsundt/documents.htm> If you wish to use copyrighted material from this email for purposes that go beyond 'fair use', you must obtain permission from the copyright owner. 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