1. Use of Reduced Gravity Simulators for Plant Biological Studies
- Author
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Herranz, Raúl, Valbuena, Miguel A., Manzano, Aránzazu, Kamal, Khaled Y., Villacampa, Alicia, Ciska, Malgorzata, van Loon, Jack J.W.A., Medina, F. Javier, Blancaflor, Elison B., Blancaflor, Elison B., AMS - Ageing & Vitality, AMS - Musculoskeletal Health, Ministerio de Economía y Competitividad (España), Ministerio de Ciencia, Innovación y Universidades (España), European Space Agency, Herranz, Raúl [0000-0002-0246-9449], Valbuena, Miguel A. [0000-0002-0585-5636], Manzano, Aranzazu [0000-0002-0150-0803], Kamal, Khaled Y. [0000-0002-6909-8056], Villacampa, Alicia [0000-0002-7398-8545], Ciska, Malgorzata [0000-0002-6514-9493], van Loon, Jack JWA [0000-0001-9051-6016], Medina, F. Javier [0000-0002-0866-7710], Maxillofacial Surgery (AMC + VUmc), Herranz, Raúl, Valbuena, Miguel A., Manzano, Aranzazu, Kamal, Khaled Y., Villacampa, Alicia, Ciska, Malgorzata, van Loon, Jack JWA, and Medina, F. Javier
- Subjects
Large Diameter Centrifuge (LDC) ,Gravity (chemistry) ,Hypergravity ,Biological studies ,Reduced Gravity ,Computer science ,Microgravity Simulation ,Spaceflight ,Random positioning machine (RPM) ,law.invention ,Seedlings ,law ,Magnetic levitation ,Biochemical engineering ,Cell suspension cultures ,Space research ,Clinostat - Abstract
28 p.-7 fig.-3 tab., Simulated microgravity and partial gravity research on Earth is a necessary complement to space research in real microgravity due to limitations of access to spaceflight. However, the use of ground-based facilities for reduced gravity simulation is far from simple. Microgravity simulation usually results in the need to consider secondary effects that appear in the generation of altered gravity. These secondary effects may interfere with gravity alteration in the changes observed in the biological processes under study. In addition to micro- gravity simulation, ground-based facilities are also capable of generating hypergravity or fractional gravity conditions whose effects on biological systems are worth being tested and compared with the results of microgravity exposure. Multiple technologies (2D clinorotation, random positioning machines, magnetic levitators, or centrifuges) and experimental hardware (different containers and substrates for seedlings or cell cultures) are available for these studies. Experimental requirements should be collectively and carefully considered in defining the optimal experimental design, taking into account that some environmental parameters, or life-support conditions, could be difficult to be provided in certain facilities. Using simula- tion facilities will allow us to anticipate, modify, or redefine the findings provided by the scarce available spaceflight opportunities., Work performed in the authors’ laboratory was financially supported by the Spanish Plan Estatal de Investigación Científica y Desarrollo Tecnológico, Grants #ESP2015-64323-R and #RTI2018-099309-B-I00 (co-funded by EU-ERDF) to F.J.M. and a grant from European Space Agency contract# 4000107455/12/NL/PA awarded to J.J.W.A.v.L.
- Published
- 2021