Acta Vet. Brno 2011, 80: 119-124
https://doi.org/10.2754/avb201180010119
The effects of simulated microgravity on skeletal muscle of Japanese quail: transmission electron microscopic study
References
1. E, Standara S 1980: Effect of the deutectomy, fasting and environmental temperature on free fatty acid concentration in the blood plasma of chickens in the first week after hatching. Acta Vet Brno 49: 187-192
<https://doi.org/10.2754/avb198049030187>
2. K 1993: The function of the heterotropic efficiency organism as link of the food chain of the closed ecosystem in microgravity conditions. Acta Vet Brno 62: 69-71
3. F 1977: Time course of muscular atrophy during immobilization of hindlimbs in rats. J Appl Physiol 43: 656-661
<https://doi.org/10.1152/jappl.1977.43.4.656>
4. R, Carvalho-Alves P, Vercesi A, Ferreira S 1997: Oxidative damage to sarcoplasmic reticulum calcium pump induced by Fe2+ /H2O2/ascorbate is not mediated by lipid peroxidation or thiol oxidation and leads to protein fragmentation. Mol Cell Biochem 159: 105-114
<https://doi.org/10.1007/BF00420912>
5. V, Lenhardt Ľ, Zibrín M, Kočišová J, Tomalková E, Komorová T, Sabo V, Boďa K, Dadasheva OA, Gureyeva TS 2001: Morphological changes in the small intestine of Japanese quail chicks hatched under the conditions of microgravitation. Folia Vet 45: 27-31
6. H, Kohzuki H, Takeda I, Kiyooka T, Miyasaka T, Mohri S, Shimizu J, Kajiya F 2005: Regression of capillary network in atrophied soleus muscle induced by hindlimb unweighting. J Appl Physiol 98:1407-1413
<https://doi.org/10.1152/japplphysiol.00961.2004>
7. TS, Dadasheva OA, Meleshko GI, Shepelev Y, Boďa K, Sabo V 1993: The quail embryonic development under conditions of weightlessness. Acta Vet Brno 62 (Suppl. 6): S25-S30
<https://doi.org/10.2754/avb199362suppl60025>
8. H, Fluck M 2003: Plasticity of skeletal muscle mitochondria: structure and function. Med Sci Sports Exerc 35: 95-104
<https://doi.org/10.1097/00005768-200301000-00016>
9. NJ, Franklin CR 2002: Maintaining muscle mass during extended disuse: aestivating frogs as a model species. J Exp Biology 205: 2297-2303
10. M, Boďa K, Výboh P, Zeman M, Lamošová D, Somogyiová E, Košťál Ľ, Baumgartner J 1991: An endocrine response to short-term hypodynamy in Japanese quail selected for resistence to hypodynamy. Physiologist 34: S129-S131
11. J, Sabo V, Tomajková E, Boďa K 1996: Effect of hypodynamia on striated muscle of Japanese quails. Vet Medecína 41: 267-272
12. H, Nakagaki I, Sasaki S, Hori S, Itokawa Y 1993: Mechanism of oxidative stress in skeletal muscle atrophied by immobilization. Am J Physiol 265: 839-844
13. L, Juráni M, Boďa K, Shepelev YE YA, Guryeva TS, Sabo V, Dadasheva OA, 1993: Behaviour of Japanese quail in microgravity on the Mir orbital station. Acta Vet Brno 62: 65-67
14. JM, Song W, Demaree SR 2003: Hindlimb unloading increases oxidative stress and disrupts antioxidant capacity in skeletal muscle. Free Rad Biol and Med 35: 9-16
<https://doi.org/10.1016/S0891-5849(03)00186-2>
15. ZN, Mednikova EI, Guryeva TS, Dadasheva O, Tresvatskaya NA, Kaliuzhnaya MV 1998: Effect of hypodynamia on the organism of Japanese quail. Folia Vet 42: 53-56
16. KS, Tarakin PP, Fokina NM, Istomina VE, Larina IM, Shenkman BS 2007: Reloading of ret soleus after hindlimb unloading and serum insulijn-like growth factor 1. Ross Fyziol Zh Im I M Sechenova 93:1143-1155
17. IT, Mirsa HP, Weglicki WB 1983: Temporal relationship of free radical-induced lipid peroxidation and loss of latent enzyme activity in highly enriched lysosomes. J Biol Chem 258: 13733-13737
18. DJ, Smith MA, Oita RC, Lim FL, White AJ, Reid MB 2008: Muscle unloading-induced metabolic remodeling is associated with acute alterations in PPARdelta and UCP-3 expression. Physiol Genomics 34: 149-161
<https://doi.org/10.1152/physiolgenomics.00281.2007>
19. S, Desaki J, Matsuda Y, Okumara H, Shibata T 1995: Capillaries with fenestrae in the rat soleus muscle after experimental limb immobilization. J Electron Microsc 44: 307-310
20. GA, Reed DJ 1989: Cell calcium, vitamin E, and the thiol redox system in cytotoxicity. Free Radic Biol Med 6: 209-224
<https://doi.org/10.1016/0891-5849(89)90118-4>
21. M 1996: Reactive oxygen species and nitric oxid in skeletal muscle. News Physiol Sci 11: 114-119
22. A, Volpin G, Ben-Air H, Silbemann M, Stein, H 1995: Biochemical and morphological studies on rat skeletal muscle following prolonged immobilisation of the knee point by external fixation and plaster cast: a comparative study. Eur J Musculoskel Res 4: 69-76
23. DA, Bain JL, Romatowski JG, Fitts RH 2005: Skeletal muscle fiber atrophy: altered thin filament density changes slow fiber force and shortening velocity. Am J Physiol Cell Physiol 288: 360-365
<https://doi.org/10.1152/ajpcell.00386.2004>
24. PM, Pistilli EE, Always SE 2008: Age-dependent increase in oxidative stress in gastrocnemius muscle with unloading. J Appl Physiol 105: 1695-1705
25. P, Hrbatá M, Baranovská M, Juráni M 2004: Growth of Japanese quail chicks in simulated weightlessness. Acta Vet Brno 73: 157-164
<https://doi.org/10.2754/avb200473020157>
26. P, Baranovská M, Juráni M, Šárniková M 2005: Influence of simulated microgravity on the leg bone development in Japanese quail chicks. Acta Vet Brno 74: 475-481
<https://doi.org/10.2754/avb200574040475>
27. P, Baranovská M, Šárniková M, Juráni M 2007: Effect of simulated microgravity on metabolite concentrations in the muscles and liver of developing Japanese quail chicks. Acta Vet Brno 76: 9-16
<https://doi.org/10.2754/avb200776010009>
28. PA, von Walden F, Gustafsson T, Linnehan RM, Trappe TA 2008: Skeletal muscle proteolysis in response to short-term unloading in human. J Appl Physiol 105: 902-906
<https://doi.org/10.1152/japplphysiol.90558.2008>
29. M, Cigánková V, Kočišová J, Tomajková E, Komorová T, Lenhardt Ľ, Páleník L, Sabo V, Boďa K, Dadasheva OA, Guryeva, TS 2001: The structure of some tissues and organs of Japanese quail chicks hatched on the orbital space station “Mir”. Folia Vet 45: 17-22
30. T 2002: Megamitochondria formation – physiology and patology. J Cell Mol Med 6: 497-538
<https://doi.org/10.1111/j.1582-4934.2002.tb00452.x>
31. SD, Fan XL, Tang B, Chen MX 2002: Effect of simulated weightlessness on ultrastructure of soleus muscle spindle in rats. Spaces Med Med Eng (Beijing) 15: 32-35

