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BioMoon: a concept for a mission to advance space life sciences and astrobiology on the Moon

  • Charles S. Cockell* (Corresponding Author)
  • , David A. Green
  • , Nicol Caplin
  • , Jessica Grenouilleau
  • , Francesca E. McDonald
  • , Marco Calvaruso
  • , Daniela Billi
  • , David C. Cullen
  • , Matthew P. Davey
  • , Veronica De Micco
  • , Andreas Elsaesser
  • , Timothy Etheridge
  • , Christine Gläßer
  • , Christine E. Hellweg
  • , Crina S. Ilea
  • , Antoine Lecocq
  • , Natalie Leys
  • , Javier Martin-Torres
  • , Miracle Nazarious
  • , Claudia Pacelli
  • Cyrille Przybyla, Elke Rabbow, Kate Robson Brown, Alvaro Soria-Salinas, Nathaniel Szewczyk, Walter Tinganelli, Erin M. Tranfield, Jean Pierre de Vera, Cyprien Verseux
*Corresponding author for this work
  • University of Edinburgh
  • King's College London
  • University College London
  • KBR, Inc
  • European Space Agency - ESA
  • National Research Council of Italy
  • University of Rome Tor Vergata
  • Cranfield University
  • Scottish Association for Marine Science
  • University of Naples Federico II
  • Free University of Berlin
  • University of Exeter
  • CGI Deutschland B.V. & Co. KG
  • German Aerospace Center
  • Clara Venture Labs
  • University of Copenhagen
  • SCK CEN Belgian Nuclear Research Center
  • Italian Space Agency
  • Université de Montpellier
  • University College Dublin
  • University of Bristol
  • Ohio University
  • GSI Helmholtz Centre for Heavy Ion Research
  • Instituto Gulbenkian de Ciência
  • VIB-UGent Center for Inflammation Research
  • University of Bremen

Research output: Contribution to journalReview articlepeer-review

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Abstract

As humans advance their presence in space and seek to improve the quality of life on Earth, a variety of science questions in support of these two objectives can be answered using the Moon. In this paper, we present a concept for an integrated mission focused on answering fundamental and applied biological questions on the Moon: BioMoon. The mission was designed to investigate the effects of the lunar radiation, gravity, and regolith on biological systems ranging from biomolecules to systems with complex trophic interactions, spanning a range of model organisms. Using common analytical systems and data processing, BioMoon represents a systems-level integrated life sciences mission. It would provide fundamental insights into biological responses to the lunar environment, as well as applied knowledge for In-Situ Resource Utilisation (ISRU), closed-loop life support system development, planetary protection and human health care. The mission was conceived to test biotechnology and sensor technology for lunar and terrestrial application and provide education and outreach opportunities. Although BioMoon was considered in the context of the European Space Agency’s Argonaut (European Large Logistics Lander) concept, the mission design provides a template for any integrated life sciences experimental suite on the Moon and other celestial bodies, implemented either robotically or by human explorers.

Original languageEnglish
Article number5
Number of pages23
JournalDiscover Space
Volume128
Issue number1
Early online date28 Oct 2024
DOIs
Publication statusPublished - Dec 2024

Data Availability Statement

No datasets were generated or analysed during the current study.

Funding

CSC acknowledges support from the Science and Technology Facilities Council (Grants ST/V000586/1 and ST/Y001788/1).

FundersFunder number
Science and Technology Facilities CouncilST/V000586/1, ST/Y001788/1

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

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