The kidney, volume homeostasis and osmoregulation in space: current perspective and knowledge gaps

Author:

Olde Engberink Rik H. G.ORCID,van Oosten Paula J.,Weber Tobias,Tabury KevinORCID,Baatout SarahORCID,Siew Keith,Walsh Stephen B.,Valenti Giovanna,Chouker AlexanderORCID,Boutouyrie Pierre,Heer Martina,Jordan JensORCID,Goswami NanduORCID

Abstract

AbstractAlthough we have sent humans into space for more than 50 years crucial questions regarding kidney physiology, volume regulation and osmoregulation remain unanswered. The complex interactions between the renin-angiotensin-aldosterone system, the sympathetic nervous system, osmoregulatory responses, glomerular function, tubular function, and environmental factors such as sodium and water intake, motion sickness and ambient temperature make it difficult to establish the exact effect of microgravity and the subsequent fluid shifts and muscle mass loss on these parameters. Unfortunately, not all responses to actual microgravity can be reproduced with head-down tilt bed rest studies, which complicates research on Earth. Better understanding of the effects of microgravity on kidney function, volume regulation and osmoregulation are needed with the advent of long-term deep space missions and planetary surface explorations during which orthostatic intolerance complaints or kidney stone formation can be life-threatening for astronauts. Galactic cosmic radiation may be a new threat to kidney function. In this review, we summarise and highlight the current understandings of the effects of microgravity on kidney function, volume regulation and osmoregulation and discuss knowledge gaps that future studies should address.

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Physics and Astronomy (miscellaneous),Agricultural and Biological Sciences (miscellaneous),Biochemistry, Genetics and Molecular Biology (miscellaneous),Materials Science (miscellaneous),Medicine (miscellaneous)

Reference98 articles.

1. Dietlein, L. F. & Harris, E. F. Experiment M-5, bioassays of body fluids. NTRS - Nasa Technical Reports Server (Document ID: 19670006697). https://ntrs.nasa.gov/citations/19670006697 (1966).

2. Moore, T. P. & Thornton, W. E. Space shuttle inflight and postflight fluid shifts measured by leg volume changes. Aviat. Space Environ. Med. 58, A91–A96 (1987).

3. Goswami, N., van Loon, J., Roessler, A., Blaber, A. P. & White, O. Editorial: Gravitational Physiology, Aging and Medicine. Front Physiol. 10, 1338 (2019).

4. Goswami, N. et al. Human physiology adaptation to altered gravity environments. Acta Astronautica 189, 216–221 (2021).

5. Drummer, C., Norsk, P. & Heer, M. Water and sodium balance in space. Am. J. Kidney Dis. 38, 684–690 (2001).

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