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November 25, 2024

This week's space station science: Leads on cancer drugs, satellite sustainability, glass from magnesium silicates

Japan Aerospace Exploration Agency astronaut Soichi Noguchi works on the PCG experiment aboard the International Space Station. Credit: NASA
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Japan Aerospace Exploration Agency astronaut Soichi Noguchi works on the PCG experiment aboard the International Space Station. Credit: NASA

Recent findings from the International Space Station address

Space-grown crystals could lead to targeted cancer drugs

Researchers used space-grown protein crystals to the structure of a helix-loop-helix (HLH) peptide (one with a and connecting loop) in a complex with -A (VEGF). VEGF prompts the formation of new blood vessels and inhibiting it can stop tumor growth. This finding suggests that HLH peptides could be used to create drugs to target disease-related proteins like VEGF.

JAXA PCG, an investigation from JAXA (Japan Aerospace Exploration Agency), grew protein crystals in microgravity and returned them to Earth for detailed analysis of their structures. Microgravity enables production of high-quality crystals, and examining their structures supports the design of new drugs and other types of research.

Different types of wood to be tested in space as a building material for satellites. Credit: Kyoto University
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Different types of wood to be tested in space as a building material for satellites. Credit: Kyoto University

Wood could make satellites more sustainable

Wood exposed to space for approximately 10 months no change in weight and no erosion due to atomic oxygen. This finding could inform selection of the appropriate species and thickness of wood for use in building satellites.

Metal satellites reentering Earth's atmosphere can generate particles and aerosols that may harm the ozone layer. Wood becomes water and on reentry, does not contribute to atmospheric pollution, and could provide a more sustainable option for future space exploration. JAXA's Exposure of Wood to Outer Space evaluated how atomic oxygen, , and in space affect the mechanical properties of wood.

NASA astronaut Scott Kelly works on the Electrostatic Levitation Furnace aboard the International Space Station. Credit: NASA
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NASA astronaut Scott Kelly works on the Electrostatic Levitation Furnace aboard the International Space Station. Credit: NASA

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Analyzing glass-forming ability of magnesium silicates

Researchers detailed structural and atomic information for glassy and liquid magnesium silicates, which are important in glass science and geoscience. The results suggest that does not play an important role in determining glass-forming ability, but atomic structure does.

JAXA's Fragility measured thermophysical properties such as density and viscosity of oxidized molten metals using the International Space Station's Electrostatic Levitation Furnace (ELF) to gain insight into glass formation and the design of novel materials. The ELF makes it possible to observe the behavior of materials without the use of a container, providing information crucial for examining glass formation.

Provided by NASA

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