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Monday, September 28, 2026 · UTC
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OSIRIS-REx Bennu samples contain amino acids, show shared cosmic origin

Analysis of returned asteroid material confirms building blocks of life, links Bennu to other known solar system bodies.

Science and Earth
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Asteroid samples reveal building blocks of life
Asteroid samples reveal building blocks of life AI illustrationhow this picture was made
Samples returned to Earth by NASA's OSIRIS-REx mission from asteroid Bennu have been found to contain amino acids, the molecular building blocks of life.[1] The probe collected the material from Bennu's surface in 2023. The sample capsule landed in the Utah desert on 23 September carrying approximately 120 grams of asteroid material.[2] [5] ETH researchers analysed isotopes of iron, titanium and chromium for the study. This analysis found Bennu shares a similar isotopic fingerprint with asteroid Ryugu and CI meteorites, indicating all three formed from the same original reservoir of cosmic dust.[3] [4] [6] Professor Maria Schönbächler stated Bennu is a hybrid asteroid, carrying characteristics of both the inner and outer solar system regions.[7]
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  1. NASA's OSIRIS-REx mission returned samples from asteroid Bennu which contained amino acids, the building blocks of life. · Daily ExpressUnited Kingdom
  2. NASA's OSIRIS-REx probe collected samples from the surface of the asteroid Bennu in a 2023 operation, which were returned to Earth and landed in the Utah desert on 23 September. · Astrobiology
  3. The study reveals that Bennu, the asteroid Ryugu, and CI meteorites share a similar isotopic fingerprint, indicating they formed from the same reservoir of cosmic dust. · Astrobiology
  4. The ETH researchers analyzed isotopes of iron, titanium, and chromium to determine the origin and age of the asteroid. · Astrobiology
  5. The OSIRIS-REx probe collected samples from the surface of the asteroid Bennu in 2023, with the container landing in the Utah desert on September 23, 2023, carrying around 120 grams of material. · Phys.org
  6. Isotopic analysis of iron, titanium, and chromium reveals that Bennu shares a similar fingerprint with the asteroid Ryugu and CI meteorites, indicating they formed from the same reservoir of cosmic dust. · Phys.org
  7. Professor Maria Schönbächler stated that Bennu is a hybrid asteroid bearing characteristics of both the inner and outer solar system regions. · Phys.org
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