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February 2, 2026npj Microgravity3 citationsOpen Access

Microbial biomining from asteroidal material onboard the international space station

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RSRosa SantomartinoGBGiovanny Rodriguez BlancoAGAlfred Gudgeon

Key Points

  • This research aims to explore the potential of microorganisms for extracting valuable elements from asteroids in microgravity.
  • Conducted BioAsteroid experiment on the International Space Station
  • Tested microorganisms (bacteria and fungi) for element extraction from L-chondrite material
  • Analyzed microbial metabolism changes using metabolomic techniques
  • Compared bioleaching efficacy under microgravity conditions to non-biological methods
  • Penicillium simplicissimum increased the release of palladium and platinum in microgravity
  • Non-biological leaching proved more effective for some elements in microgravity than on Earth
  • Metabolomic analysis revealed significant changes in microbial metabolism, especially increased carboxylic acid production

Abstract

Abstract Expanding human space exploration necessitates technologies for sustainable local resource acquisition, to overcome unviable resupply missions. Asteroids, some of which rich in metals like platinum group elements, are promising targets. The BioAsteroid experiment aboard the International Space Station tested the use of microorganisms (bacteria and fungi) to extract 44 elements from L-chondrite asteroidal material under microgravity. Penicillium simplicissimum enhanced the release of palladium, platinum and other elements in microgravity, compared to non-biological leaching. For many elements, non-biological leaching was more effective in microgravity than on Earth, while bioleaching remained stable. Metabolomic analysis revealed distinct changes in microbial metabolism in space, particularly for P. simplicissimum , with increased production of carboxylic acids, and molecules of potential biomining or pharmaceutical interest in microgravity. These results demonstrate the impact of microgravity on bioleaching, highlighting the need for optimal combination of microorganisms, rock substrate, and conditions for successful biomining, in space and Earth.

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Cite This Study

Santomartino et al. (2026) studied this question.

synapsesocial.com/papers/6980ffa4c1c9540dea81248fhttps://doi.org/10.1038/s41526-026-00567-3
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