Biopolym. Cell. 1999; 15(6):493-495.
Cell Biology
The active oxygen forms production and aggregation of human blood neutrophils under the action of recombinant interleukin-1β
1Semenkova G. N., 1Kovalenko E. I., 2Murzenok P. P., 1Cherenkevich S. N.
  1. Belarusian State University
    4, Fr. Scorina Minsk ave., Belarus, 220050
  2. Institute of Physiology, NAS of Belarus
    28, Academic Str, Minsk, Republic of Belarus, 220072

Abstract

The influence of recombinant inierleukin-lβ (rlL-1β) on human blood neutrophils aggregation has been studied. The sharp increase of the rate of spontaneous cell's aggregation under the rlL-1β influence has been established. The observed effect depends on rlL-1β concentration. It has been found that the process of rlL-1β induced aggregation of neutrophils is coupled with the process of active oxygen forms generation by the enzyme systems localized on the plasma membrane surface.

References

[1] Kozlov VA, Gromyhina I. D. Interleukin-1: role in immunity. Immunologiya. 1987. 4: 24-30.
[2] Dinarello CA. The biological properties of interleukin-1. Eur Cytokine Netw. 1994;5(6):517-31.
[3] Espat NJ, Rogy MA, Copeland EM, Moldawer LL. CMNSG Guest Lecture. Interleukin-1, interleukin-1 receptor, and interleukin-1 receptor antagonist. Proc Nutr Soc. 1994;53(2):393-400.
[4] Brooks JW, Mizel SB. Interleukin-1 signal transduction. Eur Cytokine Netw. 1994;5(6):547-61.
[5] Cotran RS. American Association of Pathologists president's address. New roles for the endothelium in inflammation and immunity. Am J Pathol. 1987;129(3):407-13.
[6] Semenkova G. H., Zakrevskaya YV, Cherenkevich SN, Murzenok P., Gurin VN Effect of recombinant human interleukin-1 on the generation of ROS by human blood neutrophils. Dokl. Akad nauk Belarus. 1993. 6: 22-26.
[7] Figari IS, Mori NA, Palladino MA Jr. Regulation of neutrophil migration and superoxide production by recombinant tumor necrosis factors-alpha and -beta: comparison to recombinant interferon-gamma and interleukin-1 alpha. Blood. 1987;70(4):979-84.
[8] Shieh J.H., Gordon M.S., Peterson R.H., Jakubowski A.A., Gabrilove J.V., Moore M.A.S. Modulation of cytokine receptors and superoxide production in neutrophils treated with IL-1 in vitro and in vivo. Blood, 1990; 76 (SUPPL.): 165.
[9] Smith R.J., Bowman B.J. IL-1 stimulates granule exocytosis from human neutrophils. The Physiologic. Metabolic and Immunologic Actions of Interleukin-1, 1985 4, pp. 31-43.
[10] Beyum A. Isolation of lymphocytes, granulocytes and macrophages lymphocytes: isolation, fractionation and characterization. M.: Medicine, 1980. 9-36.
[11] Tatarinov BA Tsvirko VA Cherenkevich With N. Kombk AI Application of small-angle scattering for the study of cells in the process of e structural rearrangements. Vestnik. BGU im. V. Y. Lenina, Ser 1. 1980. 1:30-33.
[12] Solari R, Smithers N, Kennard N, Ray K, Grenfell S. Receptor mediated endocytosis and intracellular fate of interleukin 1. Biochem Pharmacol. 1994;47(1):93-101.
[13] Metelitsa DI. oxygen activation enzyme systems. M. Nauka, 1982. 144 p.