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The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons
Organic chemistry is ubiquitous in the Solar System, and both Mars and a number of icy satellites of the outer Solar System show substantial promise for having hosted or hosting life. Here, we propose a novel astrobiologically focused instrument suite that could be included as scientific payload in...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Mary Ann Liebert, Inc., publishers
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7116096/ https://www.ncbi.nlm.nih.gov/pubmed/32856927 http://dx.doi.org/10.1089/ast.2019.2167 |
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author | Fairén, Alberto G. Gómez-Elvira, Javier Briones, Carlos Prieto-Ballesteros, Olga Rodríguez-Manfredi, José Antonio López Heredero, Raquel Belenguer, Tomás Moral, Andoni G. Moreno-Paz, Mercedes Parro, Víctor |
author_facet | Fairén, Alberto G. Gómez-Elvira, Javier Briones, Carlos Prieto-Ballesteros, Olga Rodríguez-Manfredi, José Antonio López Heredero, Raquel Belenguer, Tomás Moral, Andoni G. Moreno-Paz, Mercedes Parro, Víctor |
author_sort | Fairén, Alberto G. |
collection | PubMed |
description | Organic chemistry is ubiquitous in the Solar System, and both Mars and a number of icy satellites of the outer Solar System show substantial promise for having hosted or hosting life. Here, we propose a novel astrobiologically focused instrument suite that could be included as scientific payload in future missions to Mars or the icy moons: the Complex Molecules Detector, or CMOLD. CMOLD is devoted to determining different levels of prebiotic/biotic chemical and structural targets following a chemically general approach (i.e., valid for both terrestrial and nonterrestrial life), as well as their compatibility with terrestrial life. CMOLD is based on a microfluidic block that distributes a liquid suspension sample to three instruments by using complementary technologies: (1) novel microscopic techniques for identifying ultrastructures and cell-like morphologies, (2) Raman spectroscopy for detecting universal intramolecular complexity that leads to biochemical functionality, and (3) bioaffinity-based systems (including antibodies and aptamers as capture probes) for finding life-related and nonlife-related molecular structures. We highlight our current developments to make this type of instruments flight-ready for upcoming Mars missions: the Raman spectrometer included in the science payload of the ESAs Rosalind Franklin rover (Raman Laser Spectrometer instrument) to be launched in 2022, and the biomarker detector that was included as payload in the NASA Icebreaker lander mission proposal (SOLID instrument). CMOLD is a robust solution that builds on the combination of three complementary, existing techniques to cover a wide spectrum of targets in the search for (bio)chemical complexity in the Solar System. |
format | Online Article Text |
id | pubmed-7116096 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Mary Ann Liebert, Inc., publishers |
record_format | MEDLINE/PubMed |
spelling | pubmed-71160962020-09-17 The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons Fairén, Alberto G. Gómez-Elvira, Javier Briones, Carlos Prieto-Ballesteros, Olga Rodríguez-Manfredi, José Antonio López Heredero, Raquel Belenguer, Tomás Moral, Andoni G. Moreno-Paz, Mercedes Parro, Víctor Astrobiology Special Collection Articles Organic chemistry is ubiquitous in the Solar System, and both Mars and a number of icy satellites of the outer Solar System show substantial promise for having hosted or hosting life. Here, we propose a novel astrobiologically focused instrument suite that could be included as scientific payload in future missions to Mars or the icy moons: the Complex Molecules Detector, or CMOLD. CMOLD is devoted to determining different levels of prebiotic/biotic chemical and structural targets following a chemically general approach (i.e., valid for both terrestrial and nonterrestrial life), as well as their compatibility with terrestrial life. CMOLD is based on a microfluidic block that distributes a liquid suspension sample to three instruments by using complementary technologies: (1) novel microscopic techniques for identifying ultrastructures and cell-like morphologies, (2) Raman spectroscopy for detecting universal intramolecular complexity that leads to biochemical functionality, and (3) bioaffinity-based systems (including antibodies and aptamers as capture probes) for finding life-related and nonlife-related molecular structures. We highlight our current developments to make this type of instruments flight-ready for upcoming Mars missions: the Raman spectrometer included in the science payload of the ESAs Rosalind Franklin rover (Raman Laser Spectrometer instrument) to be launched in 2022, and the biomarker detector that was included as payload in the NASA Icebreaker lander mission proposal (SOLID instrument). CMOLD is a robust solution that builds on the combination of three complementary, existing techniques to cover a wide spectrum of targets in the search for (bio)chemical complexity in the Solar System. Mary Ann Liebert, Inc., publishers 2020-09-01 2020-09-15 /pmc/articles/PMC7116096/ /pubmed/32856927 http://dx.doi.org/10.1089/ast.2019.2167 Text en © Alberto G. Fairén et al., 2020; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons Attribution Noncommercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited. |
spellingShingle | Special Collection Articles Fairén, Alberto G. Gómez-Elvira, Javier Briones, Carlos Prieto-Ballesteros, Olga Rodríguez-Manfredi, José Antonio López Heredero, Raquel Belenguer, Tomás Moral, Andoni G. Moreno-Paz, Mercedes Parro, Víctor The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons |
title | The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons |
title_full | The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons |
title_fullStr | The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons |
title_full_unstemmed | The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons |
title_short | The Complex Molecules Detector (CMOLD): A Fluidic-Based Instrument Suite to Search for (Bio)chemical Complexity on Mars and Icy Moons |
title_sort | complex molecules detector (cmold): a fluidic-based instrument suite to search for (bio)chemical complexity on mars and icy moons |
topic | Special Collection Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7116096/ https://www.ncbi.nlm.nih.gov/pubmed/32856927 http://dx.doi.org/10.1089/ast.2019.2167 |
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