University of Arizona Core Facilities Highlights: Analytical & Biological Mass Spectrometry Facility

University of Arizona Core Facilities Highlights: Analytical & Biological Mass Spectrometry Facility


Question: What do blood samples, historic mummies and moon mud have in widespread?

Answer: They have all been studied on the University of Arizona’s Analytical and Biological Mass Spectrometry Core Facility, the place scientists use cutting-edge devices to disclose the molecular composition of advanced pattern supplies.

When scientists create a brand new compound or examine an current one, they should perceive precisely what they’re working with. A chemical compound’s conduct, security or effectiveness will be tremendously influenced by even minor modifications, equivalent to incorrect formulation or unintentional byproducts. Mass spectrometry is a way that makes use of the mass-to-charge ratio of ionized molecules to allow scientists to measure even the tiniest portions of a compound. This permits them to find out constructions, determine molecular weights and detect impurities.

Krishna Parsawar and Robert Diaz, Scientific Analyst, reviewing knowledge from a mass spectrometry pattern.

Photo by Kris Hanning, U of A Office of Research and Partnerships


“This technology is incredibly versatile – an essential part of a researcher’s toolbox,” stated Krishna Parsawar, director of the core facility. “Every new sample presents a challenge for us to solve, and every molecule has a story to tell.”

Because of its excessive sensitivity and precision, pharmaceutical chemists use mass spectrometry to check the metabolism and efficacies of new medicine. Newborns are screened for metabolic problems from a single drop of blood. Forensic chemists in crime labs use it to check for hint chemical substances discovered at crime scenes. Planetary scientists have analyzed supplies present in area, together with mud particles introduced again from the moon. It is even used to check the chemical content material of historic artifacts to be taught extra concerning the previous.

In every case, the aim is identical: to precisely determine and describe the molecules so the scientist can perceive what the supplies do and the way they react.

The facility, positioned within the Thomas Keating Building on the BIO5 Institute, homes state-of-the-art instrumentation and employs a group of specialists who collaborate with scientists throughout campuses and across the nation, and throughout tutorial disciplines and industries.

Sample supplies for mass spectrometry evaluation.

Photo by Kris Hanning, U of A Office of Research and Partnerships


“For instance, we often work with researchers from the Cancer Center who are developing new ways to use drugs to target specific tumors or targets,” Parsawar stated. “A researcher might come to us and say, ‘I’ve got this drug, and I want to see if it binds to a particular molecule or protein or antibody. Can you help me figure that out?'”

Even when researchers submit samples just like these analyzed earlier than, Parsawar stated, the questions are not often the identical.

“I’ve been lucky enough to work with mummy samples twice,” Parsawar stated. “Once with a sample from a museum in London and once with a sample from a researcher at the University of Arizona. In one case we analyzed a dye used on the mummy, and in the other we examined hair samples. Working with 5,000-year-old material was incredibly exciting.”

Like many core services supported by the Office of Research and Partnerships, the lab operates below an open, fee-for-service mannequin that enables each tutorial researchers and outdoors shoppers to entry specialised tools and experience.

“I have never had a day when I wondered what I should work on,” Parsawar stated. “There is always an interesting research question waiting to be answered. Always a problem to solve.”

Researchers concerned with working with the Analytical & Biological Mass Spectrometry Facility can be taught extra athttps://cores.arizona.edu/facilities/massspec/about

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