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The University of Texas at Arlington
The University of Texas at Arlington
The University of Texas at Arlington is a growing research powerhouse committed to life-enhancing discovery, innovative instruction, and caring community engagement. An educational leader in the heart of the thriving North Texas region, UT Arlington nurtures minds within an environment that values excellence, ingenuity, and diversity. Whether providing an unparalleled education for its over 56,000 students or addressing important societal challenges, the University is in the business of improving the quality of life in Texas and beyond. Of UT Arlington's 200,000 alumni, about 65 percent live in North Texas and contribute to the University's annual economic impact of $12.8 billion in the region and $13.6 billion in the state.
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New technique measures psilocybin potency of mushrooms

Identifying dosages for psilocybin and psilocin key as medical uses grow.
<ul><li><strong>Photo:</strong> The University of Texas at Arlington: New technique measures psilocybin potency of mushrooms</li></ul>
  • Photo: The University of Texas at Arlington: New technique measures psilocybin potency of mushrooms

Since the 1970s, the federal government has listed the active ingredients in mushrooms—psilocybin and psilocin—as illegal and having no accepted medical use.

However, in recent years, medical professionals have found that these substances are safe and effective for treating stubborn conditions such as treatment-resistant depression and post-traumatic stress disorder. Some jurisdictions now allow for the medical use of mushrooms, while others are considering permitting or at least decriminalizing their recreational use.

Clinicians now find themselves needing to carefully measure the doses of mushrooms to ensure patients receive the proper amount during treatment. To solve this problem, University of Texas at Arlington researchers have created a method to determine the clinical potency of psilocybin and psilocin in the hallucinogenic mushroom species psilocybe cubensis.

“These legislative changes are expected to facilitate further research and potential clinical applications,” said Kevin Schug, the Shimadzu Distinguished Professor of Analytical Chemistry in the Department of Chemistry and Biochemistry.

The University Of Texas at Arlington: Kevin Schug.The University Of Texas at Arlington: Kevin Schug.

Using liquid chromatography with tandem mass spectrometry, Schug and colleagues were able to extract and measure the strength of the mushrooms, according to findings published in the February issue of Analytica Chimica Acta. Co-authors included colleagues at Scottsdale Research Institute in Phoenix; Shimadzu Scientific Instruments in Maryland; and Millipore-Sigma in Round Rock, Texas. The results were then compared with two separate labs to ensure accuracy.

“As medical professionals identify more safe and effective treatments using mushrooms, it will be important to ensure product safety, identify regulatory benchmarks and determine appropriate dosing,” Schug said. “Established and reliable analytical methods like the one we describe will be essential to these efforts to use mushrooms in clinical settings.”

The University of Texas at Arlington
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