Deep space travel may damage astronaut's gut functions

IANS  |  New York 

Exposure to galactic cosmic during deep space travel, such as to Mars, might significantly damage gastrointestinal functions in astronauts, say researchers, led by one of an Indian-origin.

"Heavy ions such as iron and silicon are damaging because of their greater mass compared to no-mass photons such as x-rays and gamma (y)-rays prevalent on earth as well as low mass protons in outer space," said Kamal Datta, at the in the US.

"While short trips, like the times astronauts travelled to the Moon, may not expose them to this level of damage, the real concern is lasting from a long trip such as a Mars or other deep space missions which would be much longer," Datta added.

The gastrointestinal tract is a self-renewing tissue with continuous cell division/proliferation.

The mucosal (top) layer of cells is replaced every three to five days through coordinated migration of new cells from the bottom of a flask shaped structure called crypt towards the lumen of the gut.

"Any disturbance of this replacement mechanism leads to malfunctioning of physiologic processes such as nutrient absorption and starts pathologic processes such as cancer," said Albert Fornace Jr., Director at the varsity's (NSCOR).

For the study, published in the journal PNAS, the team used mouse's small intestine as a model system and exposed mice to a low dose of iron

They compared the group of mice that received heavy ions to mice exposed to gamma rays, which are comparable to X-rays, and to a third, unexposed control group.

The scientists found that intestinal cells in the heavy ion group did not adequately absorb nutrients and formed cancerous polyps.

Even though a very low dose was delivered over the equivalent of months-long period in deep space, the effects of heavy ion appeared to be permanent, Fornace said.

"It is important to understand these effects in advance so we can do everything we can to protect our future space travellers," Datta said.

--IANS

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First Published: Wed, October 03 2018. 14:10 IST