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Watch What You Eat, Scientifically

Did you know...?

  • Demand for college graduates educated in food safety are increasing due, in part, to outbreaks of diseases associated with food-borne infections.
  • Food Science deals with producing food from agricultural commodities. Nutrition deals with the effect of foods on food consumers. Dietetics deals with nutritional planning and food preparation.

Human digestion seems to be a pretty simple matter of intake and output, but there are many unsolved mysteries surrounding this vital system. How does our body break down, transport and absorb food?

To help answer some of the questions and eventually enable people to make more healthful food-related decisions, a swag外流 researcher has developed a tabletop 鈥渄igestion machine.鈥

鈥淭he body is a food-processing plant with a digestive system we know very little about,鈥 said the digestion machine鈥檚 inventor, Gail Bornhorst, an engineer and assistant professor in the departments of and .

Called the Human Gastric Simulator, the machine is composed of a network of gears, rollers, plastic bags and chains within a metal framework. The novel contraption was designed and built to mimic the human digestive system. Information gathered from studies using the machine may one day give people a better idea of when to eat, what to eat and how to prepare food to meet their own personal nutritional needs.

鈥淲e know a lot about the makeup of food as it goes in and comes out, but not much about what happens in between,鈥 Bornhorst said. 鈥淥ur goal is to quantitatively describe food breakdown, transport and absorption to optimize food quality and functionality.鈥

She noted that as human beings, we want something from our food. We may eat to feel full and energized or we may want certain nutrients or extra protein in our meals. We can evaluate the properties of the food we consume 鈥 or trust the marketing and ingredients listed on a label 鈥 but in many cases it鈥檚 unclear how our bodies absorb the nutrients, additives and molecules we ingest.

鈥淲e know how a tomato-processing plant works because we can stick sensors inside the tanks,鈥 Bornhorst said. 鈥淚t鈥檚 not so easy with human digestion.鈥

Researchers are starting to find noninvasive ways to study digestion in live animals and humans using techniques such as magnetic resonance imaging, but those methods are limited, costly and ethically controversial. The new digestion machine developed by Bornhorst and her research team provides an alternative research method by mimicking both the biochemical and physical conditions of a human digestive tract.

鈥淲e can add acids and enzymes to the 鈥榮tomach鈥 to simulate gastrointestinal fluids,鈥 Bornhorst said, pointing to a liquid-filled, plastic bag at the center of the device. With the flip of a switch, she turned on a network of slow-moving cranks and plastic rollers that compress the cavity of the bag, mimicking stomach contractions.

Her lab is testing a variety of fruits, vegetables and beverages to see how they move through the system. The researchers also are looking at how different cooking and processing methods such as boiling, steaming and frying influence the breakdown and transport of food.

鈥淭urns out, how you prepare your food influences digestion quite a bit,鈥 Bornhorst said. 鈥淲e鈥檙e even seeing digestive differences depending on which variety of raw apple you eat.鈥

At this point, she said, it鈥檚 too early for any sweeping conclusions, except maybe that digestion is very complex.

鈥淭here are a lot of moving parts and many variables, even person to person,鈥 she said.  鈥淲e鈥檙e working to quantify the fundamental transport processes to better understand things like nutrient release and absorption rates.鈥

Eventually the machine should provide the researchers with a more holistic understanding of human digestion, and that, in turn, should help people make more informed decisions about how to meet their nutritional needs.

Diane Nelson is a senior writer in the College of Agricultural and Environmental Sciences.

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