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Fatty acid metabolism in fasting elephant seal pups

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Summary

The turnover of two plasma free fatty acids (FFA) were measured in 5 northern elephant seal pups (Mirounga angustirostris) after approximately 2 months of post-weaning fasting. Turnover was determined using simultaneous bolus injections of14C-palmitate,3H-oleate and Evans blue (EB) administered via an indwelling extradural intravertebral catheter. At this time in their natural fast, the seals exhibited plasma FFA levels and turnover values higher than reported for other marine mammals and most terrestrial carnivores. There was no consistent difference between plasma FFA turnover measured by palmitate or oleate tracers. The results imply that FFA metabolism is the primary source of energy during fasting. This is interesting in light of previous observations of minimal ketoacid accumulation and low levels of glucose and protein energy production during fasting in these juvenile seals.

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References

  • Bergmann SR, Carlson E, Dannen E, Sobel BE (1980) An improved assay with 4-(2-thiazolylazo)-resorcinol for non-esterified fatty acids in biological fluids. Clin Chim Acta 104:53–63

    Google Scholar 

  • Cahill GF, Herrera MG, Morgan AP, Soldner JS, Steinke PL, Levy PL, Reichard GA, Kipnis DM (1966) Hormone-fuel interrelationships during fasting. J Clin Invest 45:1751–1769

    Google Scholar 

  • Castellini MA, Murphy BJ, Fedak M, Ronald K, Gofton N, Hochachka PW (1985) Potentially confilicting metabolic demands of diving and exercise in seals. J Appl Physiol 58:392–399

    Google Scholar 

  • Castellini MA, Costa DP, Huntley AC (1986) Hematocrit variation during sleep apnea in elephant seal pups. Am J Physiol 251:R429-R431

    Google Scholar 

  • Costa DP, Ortiz CL (1980) Water electrolyte and nitrogen balance in fasting weaned elephant seal pupsMirounga angustirostris. Physiol 23:4

    Google Scholar 

  • Costa DP, Ortiz CL (1982) Blood chemistry homeostasis during prolonged fasting in the northern elephant seal. Am J Physiol 242:R591–595

    Google Scholar 

  • Costa DP, Le Boeuf BJ, Huntley AC, Ortiz CL (1986) The energetics of lactation in the Northern elephant seal,Mirounga angustirostris. J Zool 209:21–33

    Google Scholar 

  • Davis RW (1983) Lactate and glucose metabolism in the resting and diving harbor seal (Phoca vitulina). J Comp Physiol 153:275–288

    Google Scholar 

  • Davis RW, Castellini MA, Kooyman GL, Maue R (1983) Renal glomerular filtration rate and hepatic blood flow during voluntary diving in Weddell seals. Am J Physiol 245:R743–748

    Google Scholar 

  • Davis RW, Castellini MA, Kooyman GL (1985) Lactate, glucose, and free-fatty acid metabolism in swimming harbor seals,Phoca vitulina. Abstracts, Sixth Biennial Conf Biol Mar Mammals

  • Fergusson JH, Folk GE (1971) Free fatty acid levels in several species of arctic carnivores. Comp Biochem Physiol 40B:309–312

    Google Scholar 

  • Grande F (1964) Man under caloric deficiency. In: Dill DB, Adolph EF, Wilber CG (eds) Handbook of Physiology Section 4: Adaptation to the environment. American Physiological Society, Washington DC, pp 911–937

    Google Scholar 

  • Guppy M, Hill RD, Schneider RC, Qvist J, Liggins GC, Zapol WM, Hochachka PW (1986) Microcomputer-assisted metabolic studies of voluntary diving of Weddell seals. Am J Physiol 250:R175–187

    Google Scholar 

  • Havel RJ, Carlson LA, Ekelund LG, Holmgren A (1964) Turnover rate and oxidation of different fatty acids in man during exercise. J Appl Physiol 19:613–618

    Google Scholar 

  • Hetenyi G, Perez G, Vranic M (1983) Turnover and precursorproduct relationships of nonlipid metabolites. Physiol Rev 63:606–667

    Google Scholar 

  • Hochachka PW (1981) Brain, lung, and heart functions during diving and recovery. Science 212:509–514

    Google Scholar 

  • Huntley A (1984) Relationships between metabolism, respiration, heart rate and arousal state in the northern elephant seal. PhD thesis, University of California, Santa Cruz

    Google Scholar 

  • John Tm, McKeown BA, George JC, Ronald K (1980) Plasma levels of growth hormone and free fatty acids in the harp seal. Comp Biochem Physiol 66B:159–162

    Google Scholar 

  • Keith EO (1984) Glucose metabolism in fasting northern elephant seal pups. PhD thesis, University of California, Santa Cruz

    Google Scholar 

  • Le Boeuf BJ, Whiting RJ, Gantt RF (1972) Perinatal behavior of northern elephant seal females and their young. Behaviorism 43:121–156

    Google Scholar 

  • Miles J, Glassock R, Aikens J, Gerich J, Haymond M (1983) A microfluorometric method for the determination of free fatty acids in plasma. J Lipid Res 24:96–99

    Google Scholar 

  • Nelson RA (1980) Protein and fat metabolism in hibernating bears. Fed Proc 39:2955–2958

    Google Scholar 

  • Ortiz CL, Costa DP, Le Boeuf BJ (1978) Water and energy flux in elephant seal pups fasting under natural conditions. Physiol Zool 51:166–178

    Google Scholar 

  • Pernia SD, Hill A, Ortiz CL (1980) Urea turnover during prolonged fasting in the northern elephant seal. Comp Biochem Physiol 65B:731–734

    Google Scholar 

  • Ramirez I (1984) A problem with enzymatic determination of free fatty acids in rat and mouse blood. J Lipid Res 25:92

    Google Scholar 

  • Reiter J, Stinson NJ, Le Bouef BJ (1978) Northern elephant seal development: The transition from weaning to nutritional dependence. Behav Ecol Sociobiol 3:337–367

    Google Scholar 

  • Shimizu S, Inoue K, Tani Y, Yamada H (1979) Enzymatic determination of serum free fatty acids. Anal Biochem 98:341–345

    Google Scholar 

  • Steele R, Winkler B, Rathgeb I, Bjerknes C, Altszuler N (1968) Plasma glucose and free fatty acid metabolism in normal and long fasted dogs. Am J Physiol 214:313–319

    Google Scholar 

  • Wolfe RR (1982) Stable isotope approaches for the study of energy substrate metabolism. Fed Proc 41:2692–2697

    Google Scholar 

  • Wolfe RR (1984) Tracers in Metabolic Research. Radioisotope and stable/mass spectrometry methods. Laboratory and Research Methods in Biology and Medicine, vol 9. Alan Liss, New York

    Google Scholar 

  • Wolfe RR, Durkot MJ (1985) Role of very low density lipoproteins in the energy metabolism of the rat. J Lipid Res 26:210–217

    Google Scholar 

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Castellini, M.A., Costa, D.P. & Huntley, A.C. Fatty acid metabolism in fasting elephant seal pups. J Comp Physiol B 157, 445–449 (1987). https://doi.org/10.1007/BF00691828

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