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Latest NRI News

Choline Biomarker Study Wins Federal Support

Choline Biomarker Study Wins Federal Support

February 7, 2018 – UNC Nutrition Research Institute director Steven H. Zeisel, MD, PhD has been awarded a four-year, $2.6 million grant from the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), one of the National Institutes of Health, to develop and validate a panel of laboratory tests that can assess choline status in humans.

Study of first-graders shows fetal alcohol spectrum disorders prevalent in US communities

Study of first-graders shows fetal alcohol spectrum disorders prevalent in US communities

February 6, 2018 – Philip A. May, PhD, research professor at the UNC Nutrition Research Institute, led NIH-funded research that examined over 6,000 children to determine prevalence of FASD ranged from 1.1 to 5 percent.
A new study of more than 6,000 first-graders across four U.S. communities has found that a significant number of the children examined, as many as 5 percent in one community sample, may have fetal alcohol spectrum disorders (FASD). Funded by the National Institute on Alcohol Abuse and Alcoholism (NIAAA), part of the National Institutes of Health, the new findings may represent more accurate prevalence estimates of FASD among general U.S. communities than prior research. Previous FASD estimates were based on smaller study populations and do not reflect the overall U.S. population.

Why a Fly?

Why a Fly?

January 29, 2018 – The genome of a fruit fly is strikingly similar to that of a human — so much so that scientists have been studying these tiny insects for over 100 years, in search of treatments for diseases like spinal muscular atrophy and neurological disorders. UNC geneticist and director of the Integrative Program for Biological and Genome Sciences Bob Duronio, PhD is one of those scientists. “It begins with curiosity. Curiosity about a process. And then a question about that process. And then a hypothesis that will lead to an experiment that will provide results and data to interpret. What I love about this process is that my hypotheses are often wrong. And that’s really exciting — because no human being is smart enough to understand biology at a level of molecular detail where their hypotheses are always right.”