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Operation Everest II: Alterations in the immune system at high altitudes

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Abstract

We investigated the effects on immune function after progressive hypobaric hypoxia simulating an ascent to 25,000 ft (7620 m) over 4 weeks. Multiple simultaneousin vitro andin vivo immunologic variables were obtained from subjects at sea level, 7500 ft (2286 m), and 25,000 ft during a decompression chamber exposure. Phytohemag-glutinin-stimulated thymidine uptake and protein synthesis in mononuclear cells were reduced at extreme altitudes. Mononuclear-cell subset analysis by flow cytometry disclosed an increase in monocytes without changes in B cells or T-cell subsets. Plasma IgM and IgA but not IgG levels were increased at altitudes, whereas pokeweed mitogen-stimulatedin vitro IgG, IgA, and IgM secretion was unchanged. During exposure to 25,000 ft,in vitro phytohemagglutinin-stimulated interferon production and natural killer-cell cytotoxicity did not change statistically, but larger intersubject differences occurred. IgA and lysozyme levels (nasal wash) and serum antibodies to nuclear antigens were not influenced by altitude exposure. These results suggest that T-cell activation is blunted during exposure to severe hypoxemia, whereas B-cell function and mucosal immunity are not. Although the mechanism of alteredin vitro immune responsiveness after exposure to various environmental stressors has not been elucidated in humans, hypoxia may induce alterations in immune regulation as suggested byin vitro immune assays of effector-cell function.

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References

  1. Krupina TN, Korotaev MM, Pukhova II, Tsyganova NI, Reutova MB: Characteristics of the human immunologic state during hypoxic hypoxia. Kosm Biol Aviakosm Med 8:56–60, 1976 (in Russian)

    Google Scholar 

  2. Krupina TN, Korotaev MM, Pukhova YI, Tsyganova NI, Likhacheva NP, Reutova MB: Comparative evaluation of studies of different levels of hypoxia on the human immunobiological status. Kosm Biol Aviakosm Med 11:38–43, 1975 (in Russian)

    Google Scholar 

  3. Mirrakhimov MM, Kitaev MI: Basic trends of immunologic studies of high altitude adaptation. Zdravookhr Kirg 6:3–7, 1978 (in Russian)

    Google Scholar 

  4. Mirrakhimov MM, Kitaev MI: Problems and prospects of high-altitude immunology. Vestn Akad Med Nauk SSSR 4:64–69, 1979 (cmin Russian)

    Google Scholar 

  5. Kitaev MI, Tokhtabayev AG: T and B lymphocytes as related to adaptation to high altitudes. Kosm Biol Aviakosm Med 15:87–89, 1981 (cmin Russian)

    Google Scholar 

  6. Mirrakhimov MM, Kitaev MI, Khamzamulin RO, Tokhtabaev AG, Pogrebitskii SM: T and B components in acute altitude sickness. Kosm Biol Aviakosm Med 20:53–56, 1986

    Google Scholar 

  7. Meehan RT, Zavala DC: The pathophysiology of acute high altitude illness. Am J Med 73:393–403, 1982

    Google Scholar 

  8. Singh I, Chohan IS, Lal M, Khanna PK, Srivastava MC, Nanda RB, Lamba JS, Malhotra MS: Effects of high altitude stay on the incidence of common diseases in man. Int J Biometeorol 21:93–122, 1977

    Google Scholar 

  9. Chohan IS, Sing I, Balakrishnan K, Talwar GP: Immune responses in human subjects at high altitude. Int J Biometeorol 19:137–143, 1975

    Google Scholar 

  10. Clegg EJ, Harrison GA, Baker PT: The impact of high altitude on human populations. Hum Biol 42:486–518, 1970

    Google Scholar 

  11. Houston CS, Sutton JR, Cymerman A, Reeves JT: Operation Everest II: Man at extreme altitude. J Appl Physiol 53:877–882, 1987

    Google Scholar 

  12. Taylor GT, Dardano JR: Human cellular immune responsiveness following space flight. Aviat Space Environ Med 54:S55-S59, 1983

    Google Scholar 

  13. Meehan RT, Ashman RF: Early protein synthesis in activated human peripheral blood mononuclear cells. Mol Immunol 22:1893–1898, 1985

    Google Scholar 

  14. Campbell JB, Grunberger T, Kochman MA, White SL: A microplaque reduction assay for human gamma interferon. Can J Microbiol 21:1247–1253, 1975

    Google Scholar 

  15. Langford MP, Weigent DA, Stanton GJ, Barron S: Virus plaque reduction assay for interferon microplaque and regular microplaque reduction assays. Methods Immunol 78:339–346, 1981

    Google Scholar 

  16. Taylor GT, Neale LS, Dardano JR: Immunologic analysis of U.S. Space Shuttle crew members. Aviat Space Environ Med 57:213–217, 1986

    Google Scholar 

  17. Ramsey KN, Djew JY, Rook AH: Decrease circulating large granular lymphocytes associated with depressed natural killer cell activity in renal transplant recipients. Transplantation 38:345–351, 1984

    Google Scholar 

  18. Pross HF, Baines MG, Rubin P, Shragge P, Patterson MS: Spontaneous lymphocyte mediated cytotoxicity against tumor target cells. The quantitation of natural killer cell activity. J Clin Immunol 1:51–63, 1981

    Google Scholar 

  19. Chien MM, Ashman RF: Rapid separation of human monocytes and lymphocytes by Sephadex G-10. J Immunol Methods 71:25–36, 1984

    Google Scholar 

  20. Bradford M: A rapid and sensitive method for quantitation of microgram quantities of protein utilizing the principle of protein dye-binding. Anal Biochem 72:248–254, 1976

    Google Scholar 

  21. Rossen RD, Schade AL, Butler WT, Vannier WE, Douglas RG, Steinberg AG: The proteins in nasal secretion: A longitudinal study of the A-globulin, G-globulin, albumin, siderophilin and total protein concentrations in nasal washings from adult male volunteers. J Clin Invest 45:768–776, 1966

    Google Scholar 

  22. Osserman EF, Lawlor DP: Serum and urinary lysozyme (muramidase) in monocytic and monomyelocytic leukemia. J Exp Med 124:921–951, 1966

    Google Scholar 

  23. Meehan RT, Duncan U, Neale LS, Waligora J, Taylor GR: The use of decompression to simulate the effect of extravehicular activity on human lymphocyte transformation.In Proceedings of the 2nd International Conference on Space Physiology ESTEC, Noordwijk, The Netherlands. ESA SP-237:163–166, 1986

    Google Scholar 

  24. Muchmore HT, Parkinson AJ, Scott EN: Nasopharyngeal secretory immune and nonimmune substances in personnel at South Pole, 1978 winter-over period. Antarct J 16:181–183, 1981

    Google Scholar 

  25. Meehan RT: Human mononuclear cell in vitro activation in microgravity and post space flight.In Immunobiology of Proteins and Peptides IV, Atassi (ed). New York, Plenum (in press)

  26. Stein M, Keller SE, Shleifer SJ: Stress and immunomodulation, the role of depression and neuroendocrine function. J Immunol 135:827S-833S, 1985

    Google Scholar 

  27. Palmblad J: Stress and immunologic competence: Studies in man.In Psychoneuroimmunology, R Ader (ed). New York, Academic Press, 1981, pp 229–257

    Google Scholar 

  28. Pace N, Griswold RL, Grunbaum BW: Increase in urinary norepinephrine excretion during 14 days sojourn at 3,800 meters elevation. Fed Proc 23:251, 1964

    Google Scholar 

  29. Sutton JR, Viol GW, Gray GW, McFadden M, Keane PM: Renin, aldosterone, electrolyte and cortisol responses to hypoxic decompression. J Appl Physiol 43:421–424, 1977

    Google Scholar 

  30. Meehan RT: Immune suppression at high altitude. Ann Emerg Med 16:974–979, 1987

    Google Scholar 

  31. Faist E, Kupper TS, Baker CC, Chaudry IH, Dwyer J, Baue AE: Depression of cellular immunity after major injury. Arch Surg 121:1000–1005, 1986

    Google Scholar 

  32. O'Gorman RB, Feliciano DV, Mathews KS, Matthew R, Bitondo CG, Mattox KL, Jordan GL: Correlation of immunologic and nutritional states with infectious complications after major abdominal surgery. Surgery 99:549–555, 1986

    Google Scholar 

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Meehan, R., Duncan, U., Neale, L. et al. Operation Everest II: Alterations in the immune system at high altitudes. J Clin Immunol 8, 397–406 (1988). https://doi.org/10.1007/BF00917156

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