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The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model

Cancer is a disease exhibiting uncontrollable cell growth and spreading to other parts of the organism. It is a heavy, worldwide burden for mankind with high morbidity and mortality. Therefore, groundbreaking research and innovations are necessary. Research in space under microgravity (µg) condition...

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Autores principales: Grimm, Daniela, Schulz, Herbert, Krüger, Marcus, Cortés-Sánchez, José Luis, Egli, Marcel, Kraus, Armin, Sahana, Jayashree, Corydon, Thomas J., Hemmersbach, Ruth, Wise, Petra M., Infanger, Manfred, Wehland, Markus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953941/
https://www.ncbi.nlm.nih.gov/pubmed/35328492
http://dx.doi.org/10.3390/ijms23063073
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author Grimm, Daniela
Schulz, Herbert
Krüger, Marcus
Cortés-Sánchez, José Luis
Egli, Marcel
Kraus, Armin
Sahana, Jayashree
Corydon, Thomas J.
Hemmersbach, Ruth
Wise, Petra M.
Infanger, Manfred
Wehland, Markus
author_facet Grimm, Daniela
Schulz, Herbert
Krüger, Marcus
Cortés-Sánchez, José Luis
Egli, Marcel
Kraus, Armin
Sahana, Jayashree
Corydon, Thomas J.
Hemmersbach, Ruth
Wise, Petra M.
Infanger, Manfred
Wehland, Markus
author_sort Grimm, Daniela
collection PubMed
description Cancer is a disease exhibiting uncontrollable cell growth and spreading to other parts of the organism. It is a heavy, worldwide burden for mankind with high morbidity and mortality. Therefore, groundbreaking research and innovations are necessary. Research in space under microgravity (µg) conditions is a novel approach with the potential to fight cancer and develop future cancer therapies. Space travel is accompanied by adverse effects on our health, and there is a need to counteract these health problems. On the cellular level, studies have shown that real (r-) and simulated (s-) µg impact survival, apoptosis, proliferation, migration, and adhesion as well as the cytoskeleton, the extracellular matrix, focal adhesion, and growth factors in cancer cells. Moreover, the µg-environment induces in vitro 3D tumor models (multicellular spheroids and organoids) with a high potential for preclinical drug targeting, cancer drug development, and studying the processes of cancer progression and metastasis on a molecular level. This review focuses on the effects of r- and s-µg on different types of cells deriving from thyroid, breast, lung, skin, and prostate cancer, as well as tumors of the gastrointestinal tract. In addition, we summarize the current knowledge of the impact of µg on cancerous stem cells. The information demonstrates that µg has become an important new technology for increasing current knowledge of cancer biology.
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spelling pubmed-89539412022-03-26 The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model Grimm, Daniela Schulz, Herbert Krüger, Marcus Cortés-Sánchez, José Luis Egli, Marcel Kraus, Armin Sahana, Jayashree Corydon, Thomas J. Hemmersbach, Ruth Wise, Petra M. Infanger, Manfred Wehland, Markus Int J Mol Sci Review Cancer is a disease exhibiting uncontrollable cell growth and spreading to other parts of the organism. It is a heavy, worldwide burden for mankind with high morbidity and mortality. Therefore, groundbreaking research and innovations are necessary. Research in space under microgravity (µg) conditions is a novel approach with the potential to fight cancer and develop future cancer therapies. Space travel is accompanied by adverse effects on our health, and there is a need to counteract these health problems. On the cellular level, studies have shown that real (r-) and simulated (s-) µg impact survival, apoptosis, proliferation, migration, and adhesion as well as the cytoskeleton, the extracellular matrix, focal adhesion, and growth factors in cancer cells. Moreover, the µg-environment induces in vitro 3D tumor models (multicellular spheroids and organoids) with a high potential for preclinical drug targeting, cancer drug development, and studying the processes of cancer progression and metastasis on a molecular level. This review focuses on the effects of r- and s-µg on different types of cells deriving from thyroid, breast, lung, skin, and prostate cancer, as well as tumors of the gastrointestinal tract. In addition, we summarize the current knowledge of the impact of µg on cancerous stem cells. The information demonstrates that µg has become an important new technology for increasing current knowledge of cancer biology. MDPI 2022-03-12 /pmc/articles/PMC8953941/ /pubmed/35328492 http://dx.doi.org/10.3390/ijms23063073 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Grimm, Daniela
Schulz, Herbert
Krüger, Marcus
Cortés-Sánchez, José Luis
Egli, Marcel
Kraus, Armin
Sahana, Jayashree
Corydon, Thomas J.
Hemmersbach, Ruth
Wise, Petra M.
Infanger, Manfred
Wehland, Markus
The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model
title The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model
title_full The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model
title_fullStr The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model
title_full_unstemmed The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model
title_short The Fight against Cancer by Microgravity: The Multicellular Spheroid as a Metastasis Model
title_sort fight against cancer by microgravity: the multicellular spheroid as a metastasis model
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953941/
https://www.ncbi.nlm.nih.gov/pubmed/35328492
http://dx.doi.org/10.3390/ijms23063073
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