To test the effects of low levels of radiation from space on living organisms, we flew Xenopus laevis embryos at different stages of development on a stratospheric balloon (BI.R.BA mission). After recovery, different parameters were analyzed to assess the effects of flight, with particular regard to oxidative stress damage. Because of failed temperature control during flight, the flight shielded embryos (FC) could not be used for biochemical or morphological comparisons. In contrast, the incubation conditions (i.e. temperature, containers, volumes) for the flight embryos (F) were parallel to those for the ground controls. Mortality data show that younger embryos (16 h) flown on the balloon (F) are more sensitive to radiation exposure than older ones (40 h and 6 days). Exposure during flight lowered the antioxidant potential in all embryos, particularly older ones. These preliminary data demonstrate that flight on a stratospheric balloon might affect antioxidant metabolism, though it is not yet possible to correlate these results with low radiation exposure during flight

Antioxidant metabolism in Xenopus laevis embryos is affected by stratospheric balloon flight / A.M. Rizzo, Federica Rossi, Stefania Zava, Gigliola Montorfano, Laura Adorni, Vittorio Cotronei, Alba Zanini, Bruno Berra. - In: CELL BIOLOGY INTERNATIONAL. - ISSN 1065-6995. - 31:7(2007 Jul), pp. 716-723.

Antioxidant metabolism in Xenopus laevis embryos is affected by stratospheric balloon flight

A.M. Rizzo
Primo
;
Federica Rossi;Stefania Zava;Gigliola Montorfano;Laura Adorni;Bruno Berra
2007

Abstract

To test the effects of low levels of radiation from space on living organisms, we flew Xenopus laevis embryos at different stages of development on a stratospheric balloon (BI.R.BA mission). After recovery, different parameters were analyzed to assess the effects of flight, with particular regard to oxidative stress damage. Because of failed temperature control during flight, the flight shielded embryos (FC) could not be used for biochemical or morphological comparisons. In contrast, the incubation conditions (i.e. temperature, containers, volumes) for the flight embryos (F) were parallel to those for the ground controls. Mortality data show that younger embryos (16 h) flown on the balloon (F) are more sensitive to radiation exposure than older ones (40 h and 6 days). Exposure during flight lowered the antioxidant potential in all embryos, particularly older ones. These preliminary data demonstrate that flight on a stratospheric balloon might affect antioxidant metabolism, though it is not yet possible to correlate these results with low radiation exposure during flight
English
Space Radiation ; Xenopus laevis embryo ; Oxidative Stress ; Stratospheric Balloon
Settore BIO/10 - Biochimica
Articolo
Sì, ma tipo non specificato
lug-2007
Academic Press
31
7
716
723
Periodico con rilevanza internazionale
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6WCB-4MTK983-4&_user=1080510&_coverDate=07%2F31%2F2007&_alid=586611331&_rdoc=1&_fmt=full&_orig=search&_cdi=6734&_sort=d&_docanchor=&view=c&_ct=1&_acct=C000051355&_version=1&_urlVersion=0&_userid=1080510&md5=6c0ce0a186bc7dba54a92b29bbfb0dcb
info:eu-repo/semantics/article
Antioxidant metabolism in Xenopus laevis embryos is affected by stratospheric balloon flight / A.M. Rizzo, Federica Rossi, Stefania Zava, Gigliola Montorfano, Laura Adorni, Vittorio Cotronei, Alba Zanini, Bruno Berra. - In: CELL BIOLOGY INTERNATIONAL. - ISSN 1065-6995. - 31:7(2007 Jul), pp. 716-723.
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Prodotti della ricerca::01 - Articolo su periodico
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262
Article (author)
si
A.M. Rizzo, Federica Rossi, Stefania Zava, Gigliola Montorfano, Laura Adorni, Vittorio Cotronei, Alba Zanini, Bruno Berra
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/32341
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