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Effects of chronic hypoxia and endurance training on muscle capillarity in rats

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Abstract

Skeletal muscle capillarity expressed as capillary density (CD), and number of capillaries per fibre (C/F), as well as the mean fibre cross-sectional area (FCSA), were determined in the extensor digitorum longus (EDL), plantaris (PLA) and soleus (SOL) muscles of four groups of eight rodents trained on a swimming exercise programme (T) or maintained sedentary (S), at sea level (SL) or at simulated altitude (HA), barometric pressure 61.7 kPa (463 torr) for 12 weeks. It was shown that both HA exposure and endurance training decreased body and skeletal muscles weights (P<0.001). However, neither HA exposure nor endurance training induce any variation in relative importance in the skeletal muscle mass. Altitude exposure and endurance training had increasing effects on CD in all muscles studied (P<0.001). This study confirms the fact that altitude exposure has no direct effect on capillary development. On the other hand, the capillary supply of the several slow- and fast- twitch skeletal muscles studied is increased by endurance training. This real enhancement in capillary network is ascertained by an increase in the C/F ratio (+7%, +26%, +16%, in PLA, EDL, and SOL muscles, respectively at sea level, and +19.5%, +30%, and +14% respectively at HA). These results indicate that the effects of chronic exercise on skeletal muscle capillarity estimated by the C/F ratio, are greater in an hypobaric environment than in a SL environment.

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References

  1. Adolfson J, Ljungqvist A, Tornling G, Unge G (1981) Capillary increase in the skeletal muscle of trained young and adult rats. J Physiol (Lond) 310:529–532

    Google Scholar 

  2. Andersen P (1975) Capillary density in skeletal muscle of man. Acta Physiol Scand 95:203–205

    Google Scholar 

  3. Appel HJ (1980) Morphological studies on skeletal muscle capillaries under conditions of high altitude training. Int J Sports Med 1:103–109

    Google Scholar 

  4. Banchero N (1975) Capillary density of skeletal muscle in dogs exposed to simulated altitude. Proc Soc Exp Biol Med 148:435–439

    Google Scholar 

  5. Banchero N (1987) Cardiovascular responses to chronic hypoxia. Annu Rev Physiol 49:465–476

    Google Scholar 

  6. Boutellier U, Howald H, di Prampero PE, Giezen-Danner D, Ceretelli P (1983) Human muscle adaptations to chronic hypoxia. In: Boutellier U, Howald H, Di Prampero PE, Giezendanner D, Ceretelli P (eds) Hypoxia, exercise and altitude. Proceedings of the Third Banff International Hypoxia Symposium. Alan R. Liss, New York pp 273–281

    Google Scholar 

  7. Brooke MH, Kaiser KK (1970) Muscle fiber types: how many and what kind? Arch Neurol 23:369–379

    Google Scholar 

  8. Cassin S, Gilbert RD, Bunnell CE, Johnson EM (1971) Capillary development during exposure to chronic hypoxia. Am J Physiol 220:448–451

    Google Scholar 

  9. Dohm L, Beecher GR, Stephenson TP, Womack M (1977) Adaptations to endurance training at three intensities of exercise. J Appl Physiol 42:753–757

    Google Scholar 

  10. Eby SH, Banchero N (1976) Capillary density of skeletal muscle in andean dogs. Proc Soc Exp Biol Med 151:795–798

    Google Scholar 

  11. Flaim SF, Minteer WJ, Clark P, Zelis R (1979) Cardiovascular response to acute aquatic and treadmill exercise in the untrained rat. J Appl Physiol 46:302–308

    Google Scholar 

  12. Gollnick PD, Struck PJ, Bogyo T (1967) Lactic dehydrogenase activities of rat heart and skeletal muscle after exercise and training. J Appl Physiol 22:623–627

    Google Scholar 

  13. Guezennec CY, Nadaud JF, Satabin P, Leger F, Lafargue P (1989) Influence of polyunsatured fatty acid diet on the hemorrheological response to physical exercise in hypoxia. Int J Sports Med 10:286–291

    Google Scholar 

  14. Harrison DK, Birkenhake S, Hagen N, Knauf S, Kessler M (1989) Regulation of capillary blood flow: a new concept. In: Oxygen transport to tissue (XI). Adv Exp Med Biol 248:583–589

    Google Scholar 

  15. Hoppeler H, Howald H, Conley K, Lindstedt SL, Claasen H, Vock P, Weibel ER (1985) Endurance training in humans: aerobic capacity and structure of skeletal muscle. J Appl Physiol 59:320–327

    Google Scholar 

  16. Hoppeler H, Kleinert E, Schlegel C, Claasen H, Howald H, Kayar SR, Ceretelli P (1990) Morphological adaptations of human skeletal muscle to chronic hypoxia. Int J Sports Med 11:S3-S9

    Google Scholar 

  17. Hudlicka O (1988) Capillary growth: role of mechanical factors. News Physiol Sci 3:117–120

    Google Scholar 

  18. Ingjer F (1979) Effects of endurance training on muscle fibre ATPase activity, capillary supply and mitochondrial content in man. J Physiol (Lond) 294:419–432

    Google Scholar 

  19. Maxwell LC, Withe TP, Faulkner JA (1980) Oxidative capacity, blood flow, and capillarity of skeletal muscle. J Appl Physiol 49:627–633

    Google Scholar 

  20. Ripoll E, Sillau AH, Banchero N (1979) Changes in the capillarity of skeletal muscle in the growing rat. Pflügers Arch 380:153–158

    Google Scholar 

  21. Sillau AH, Banchero N (1977) Effects of hypoxia on capillarity density and fibre composition in rat skeletal muscle. Pflügers Arch 370:227–232

    Google Scholar 

  22. Sillau AH, Aquin L, Bui MV, Banchero N (1980) Chronic hypoxia does not affect guinea pig skeletal muscle capillarity. Pflügers Arch 386:39–45

    Google Scholar 

  23. Snyder GK, Wilcox EE, Burnham EW (1985) Effects of hypoxia on muscle capillarity in rats. Respir Physiol 62:135–140

    Google Scholar 

  24. Terrados N, Melichna J, Sylven C, Jansson E, Kaijser L (1988) Effects of training at simulated altitude on performance and muscle metabolic capacity in competitive road cyclists. Eur J Appl Physiol 57:203–209

    Google Scholar 

  25. Valdivia E (1958) Total capillary bed in striated muscle of guinea pigs native to the peruvian mountains. Am J Physiol 194:585–589

    Google Scholar 

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Bigard, A.X., Brunet, A., Guezennec, CY. et al. Effects of chronic hypoxia and endurance training on muscle capillarity in rats. Pflügers Arch. 419, 225–229 (1991). https://doi.org/10.1007/BF00371099

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  • DOI: https://doi.org/10.1007/BF00371099

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