Toronto Star

Zebra fish could be key to opioid treatment research, study says

Species breeds prolifical­ly, which may help accelerate search for new therapies

- TRAVIS M. ANDREWS THE WASHINGTON POST

As the opioid epidemic sweeps North America, scientists are scrambling to understand its addictive power in hopes of developing new treatment methods.

In the process, they discovered that zebra fish can become opioid addicts. Researcher­s at the University of Utah hope their study of the addicted fish could be helpful in creating new treatments for humans.

They outlined their findings in a paper recently published in the journal Behavioral Brain Research.

The goal of the research is to find a new method of treating opioid addiction that doesn’t require other opioids. At present, treatment involves substituti­ng one drug, such as heroin, with another, such as methadone, in hopes that addicts’ usage will eventually taper off.

“There is still a compelling need for therapies that work in different ways, not just by replacing one opioid with another,” Randall Peterson, dean of the College of Pharmacy at the University of Utah, told National Geographic.

Zebra fish are a freshwater tropical fish that grow to about six centimetre­s in length and have a black and white pattern, much like zebras. Researcher­s observed their addictive behaviour in an environmen­t where the fish could self-administer opioids.

First, they set up a fish tank containing two platforms on opposite sides, one white and one yellow. The yellow platform contained a sensor. When the fish swam over the sensor, it released food while a green light flashed. Nothing happened when they swam over the white platform.

Then, once the zebra fish learned how the sensor worked, researcher­s replaced the food with hydrocodon­e,

“The fish can experience some of the same signs of addiction and withdrawal as people.” GABRIEL BOSSÉ STUDY AUTHOR

an opioid commonly known as Vicodin.

With each pass, the drug was released into the water and ingested by the fish. The water was continuous­ly flushed out of the tank and replenishe­d, so the fish had to repeatedly trigger the sensor to receive more of the drug.

The fish quickly reacted to the drug, flocking to the yellow opioid-dispensing platform at an astounding rate. They were placed in the tank for 50 minutes each day for five days. During each session, some of the fish visited the opioid platform nearly 2,000 times.

When the drug was removed, they visited it about 200 times on average and showed signs of agitation and anxiety, the study said.

And when the researcher­s raised the opioid platform so the water over it was shallow — a condition zebra fish naturally go to lengths to avoid — the fish continuous­ly swam up to the platform for more hydrocodon­e.

“What’s new here is that this is a self-administra­tion model where the fish have to perform an action to receive a drug, so that’s fundamenta­lly different in terms of the way the brain responds to the drug,” Peterson told National Geographic. “(This enables) us to measure motivation in drug-seeking in a more complete way.”

The study is important, because not only do zebra fish share 70 per cent of the same genes with humans, as science and tech news site Futurism reported, they also share a similar neurologic­al makeup — an ì-opioid receptor and two neurotrans­mitters — to humans, meaning they react to addiction in the same way.

“Drugs of abuse target the pathways of the pleasure centres very ef- fectively,” Gabriel Bossé, an author on the study, told Medical Xpress.

“These pathways are conserved in zebra fish, and the fish can experience some of the same signs of addiction and withdrawal as people.”

An estimated 2.6 million people in the United States are addicted to opioids, as the Post noted. In 2015 alone, more than 33,000 Americans died by overdosing on various opioids, be they prescripti­on pain relievers or heroin, according to the American Society of Addition Medicine.

Bringing new treatment methods to market is a slow process. Zebra fish could prove advantageo­us as test subjects and help accelerate the process because they are prolific breeders, the Utah researcher­s said. One female fish can produce 200 eggs each day, according to the Verge.

Not only could researcher­s study addiction on thousands of fish, they could also trace potential genetic mutations stemming from addiction, the researcher­s said.

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